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Monthly Archives: July 2016
Ayn Rand | American author | Britannica.com
Posted: July 8, 2016 at 7:56 am
Alternative title: Alissa Zinovievna Rosenbaum
Ayn Rand, original name Alissa Zinovievna Rosenbaum (born February 2, 1905, St. Petersburg, Russiadied March 6, 1982, New York, New York, U.S.) Russian-born American writer whose commercially successful novels promoting individualism and laissez-faire capitalism were influential among conservatives and libertarians and popular among generations of young people in the United States from the mid-20th century.
Her father, Zinovy Rosenbaum, was a prosperous pharmacist. After being tutored at home, Alissa Rosenbaum, the eldest of three children, was enrolled in a progressive school, where she excelled academically but was socially isolated. Following the Russian Revolution of 1917, her fathers shop was confiscated by communist authorities, an event she deeply resented. As a student at Leningrad State University, she studied history and became acquainted with the works of Plato and Aristotle. After graduating in 1924, she enrolled in the State Institute for Cinematography, hoping to become a screenwriter.
The arrival of a letter from cousins in Chicago gave her an opportunity to leave the country on the pretext of gaining expertise that she could apply in the Soviet film industry. Upon her arrival in the United States in 1926, she changed her name to Ayn Rand. (The first name, which rhymes with pine, was inspired by the name of a Finnish writer, whom she never identified, and the surname she described as an abbreviation of Rosenbaum.) After six months in Chicago she moved to Hollywood, where a fortuitous encounter with the producer Cecil B. DeMille led to work as a movie extra and eventually to a job as a screenwriter. In 1929 she married the actor Frank OConnor. Soon hired as a filing clerk in the wardrobe department of RKO Radio Pictures, Inc., she rose to head of the department within a year, meanwhile writing stories, plays, and film scenarios in her spare time. She became an American citizen in 1931.
Rands first successful play, Night of January 16th (1933; originally titled Penthouse Legend), was a paean to individualism in the form of a courtroom drama. In 1934 she and OConnor moved to New York City so that she could oversee the plays production on Broadway. That year she also wrote Ideal, about a self-centred film star on the run from the law, first as a novel and then as a play. However, she shelved both versions. The play was not produced until 1989, and the novel was not published until 2015. Her first published novel, We the Living (1936), was a romantic tragedy in which Soviet totalitarianism epitomized the inherent evils of collectivism, which she understood as the subordination of individual interests to those of the state. A subsequent novella, Anthem (1938), portrayed a future collectivist dystopia in which the concept of the self and even the word I have been lost.
Rand spent more than seven years working on her first major work, The Fountainhead (1943), the story of a handsome architectural genius whose individualism and integrity are evinced in his principled dedication to his own happiness. The hero, Howard Roark, blows up a public housing project he had designed after it is altered against his wishes by government bureaucrats. On trial for his crime, he delivers a lengthy speech in his own defense in which he argues for individualism over collectivism and egoism over altruism (the doctrine which demands that man live for others and place others above self). The jury votes unanimously to acquit him. Despite generally bad reviews, the book attracted readers through word of mouth and eventually became a best seller. Rand sold it to Warner Brothers studio and wrote the screenplay for the film, which was released in 1949.
Having returned to Los Angeles with OConnor to work on the script for The Fountainhead, Rand signed a contract to work six months a year as a screenwriter for the independent producer Hal Wallis. In 1945 she began sketches for her next novel, Atlas Shrugged (1957; film part 1, 2011, part 2, 2012, part 3, 2014), which is generally considered her masterpiece. The book depicts a future United States on the verge of economic collapse after years of collectivist misrule, under which productive and creative citizens (primarily industrialists, scientists, and artists) have been exploited to benefit an undeserving population of moochers and incompetents. The hero, John Galt, a handsome and supremely self-interested physicist and inventor, leads a band of elite producers and creators in a strike designed to deprive the economy of their leadership and thereby force the government to respect their economic freedom. From their redoubt in Colorado, Galts Gulch, they watch as the national economy and the collectivist social system are destroyed. As the elite emerge from the Gulch in the novels final scene, Galt raises his hand over the desolate earth andtrace[s] in space the sign of the dollar.
Atlas Shrugged was notable for making explicit the philosophical assumptions that underlay The Fountainhead, which Rand described as only an overture to the later work. In an appendix to Atlas Shrugged, Rand described her systematic philosophy, which she called objectivism, as in essencethe concept of man as a heroic being, with his own happiness as the moral purpose of his life, with productive achievement as his noblest activity, and reason as his only absolute.
Although the book was attacked by critics from across the political spectrum for its perceived immorality and misanthropy and its overt hostility to religion (Rand was an atheist), it was an instant best seller. It was especially well received by business leaders, many of whom were impressed by its moral justification of capitalism and delighted to think of their occupations as noble and virtuous. Like The Fountainhead, Atlas Shrugged also appealed widely to young people through its extreme romanticism, its accessible and comprehensive philosophy, its rejection of traditional authority and convention, and its implicit invitation to the reader to join the ranks of the elite by modeling himself on the storys hero.
In 1950 Rand agreed to meet a young admirer, Nathan Blumenthal, on the basis of his several articulate fan letters. The two established an immediate rapport, and Blumenthal and his girlfriend, Barbara Weidman, became Rands friends as well as her intellectual followers. In 1951 the couple moved to New York, and Rand and OConnor soon followed. There the Brandens, as Nathan and Barbara called themselves after their marriage in 1953, introduced Rand to their friends and relatives, some of whom later attended regular meetings at Rands apartment for discussion and to read newly written chapters of Atlas Shrugged. The group, which called itself the Class of 43 (a reference to the publication date of The Fountainhead) or (ironically) the Collective, included Alan Greenspan, an economics consultant who would later head the presidents Council of Economic Advisers (197477) and serve as chairman of the Federal Reserve (19872006). Among members of the Collective Nathan Branden was unquestionably Rands favourite. She openly acknowledged him as her intellectual heir and formally designated him as such in the afterword of Atlas Shrugged, which she co-dedicated to him and to OConnor.
In the late 1950s, with Rands permission, Branden established a business designed to teach the basic principles of objectivism to sympathetic readers of Rands novels. The Nathaniel Branden Institute (NBI), as it was later called, offered courses in objectivism in New York and distributed tape-recorded lectures by Branden to objectivist centers in various other cities. Despite its outward appearance as an educational institution, NBI did not permit its students to think critically about objectivism or to develop objectivist ideas in novel ways. Through the success of NBI, Branden would eventually become the public guardian of objectivist orthodoxy against innovation or unauthorized borrowing by objectivist sympathizers, especially among the growing student right. In 1962 Branden and Rand launched the monthly Objectivist Newsletter (renamed The Objectivist in 1966). Meanwhile, Rands fame grew apace with the brisk sales of her novels. She was invited to speak at numerous colleges and universities and was interviewed on television talk shows and on the news program 60 Minutes. Growing into her role as a public intellectual, she published her first work of nonfiction, For the New Intellectual, largely a collection of philosophical passages from her fiction, in 1961. The Virtue of Selfishness (1964) and Capitalism: The Unknown Ideal (1966) were drawn mostly from lectures and newsletter articles.
In 1968 Rand learned that Branden, with whom she had been having an intermittent affair (with their spouses knowledge) since 1954, was involved in a romantic relationship with a younger woman. Accusing him of betraying objectivist principles, she stripped him of his partnership in The Objectivist and demanded that he surrender control of NBI, which was soon dissolved. The closing of the institute freed various self-described objectivists to publicly develop their own interpretations of Rands philosophyall of which, however, she rejected as perversions or plagiarism of her ideas. She was especially incensed at the use of objectivist vocabulary by young libertarians, whom she accused of disregarding morality and flirting with anarchism. Meanwhile, Brandens status as Rands favourite disciple was assumed by Leonard Peikoff, an original member of the Collective whom she would eventually designate as her intellectual and legal heir.
In 1971 Rand ceased publication of The Objectivist and replaced it with the fortnightly Ayn Rand Letter, which appeared with increasing irregularity until 1976. In 1974 she underwent surgery for lung cancer. Although she recovered, she never again had the energy to pursue large-scale writing projects. In 1979 she published Introduction to Objectivist Epistemology, a collection of philosophical articles originally written in 1967. She was working on an adaptation of Atlas Shrugged for a television miniserieseventually unrealizedwhen she died.
Rand was continually frustrated by her failure to gain acceptance among academic philosophers, most of whom dismissed (or were simply unaware of) her work. This neglect, which she attributed to collectivist bias and incompetence, was partly due to the fictional form in which the best-known statements of her philosophy appeared, which necessarily rendered them imprecise by professional standards. Other factors were her idiosyncratic interpretation of the history of Western philosophy, her tendency to rely, even in her nonfiction works, on broad ad hominem attacks, and her general unwillingness to tolerate disagreement with her views among those with whom she associated.
In 1986 Barbara Branden published a memoir, The Passion of Ayn Rand, that disclosed Rands affair with Nathan and revealed unflattering details of her relations with members of the Collective and others. Despite the resulting damage to her reputation, her novels continued to enjoy large sales, and she retained a loyal following among conservatives and libertarians, including some high-ranking members of the Ronald Reagan administration (the most notable being Greenspan). In the 1990s and 2000s her works undoubtedly contributed to the increased popularity of libertarianism in the United States, and from 2009 she was an iconic figure in the antigovernment Tea Party movement. It is for these specifically political influences, rather than for her contributions to literature or philosophy, that she is likely to be remembered by future generations.
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Reason.com
Posted: at 7:55 am
Donald Trump's fans and foes face off when his travelling circus comes to town.
Taking the naked leap from the margins to the mainstream
Matt Welch
Prescription painkillers are not as deadly or as addictive as commonly claimed.
Jacob Sullum
To make America safer, we need to get military costs under control.
Veronique de Rugy
Too many rules are putting a major drag on economic growth.
Ronald Bailey
Donald Trump's fans and foes face off when his travelling circus comes to town.
Jesse Walker
Libertarian-leaning luminaries weigh in.
Jesse Walker
A little-known rule lets feds steal money from people who haven't been convictedor even accusedof a crime.
Robert Everett Johnson & Nick Sibilla
What Illinois got when law enforcement grabbed $72 million in property using asset forfeiture
C.J. Ciaramella
Planning a recovery is tough in a country where an awful lot of guys with guns aren't ready to admit that socialism has failed again.
Francisco Toro
The sad afterlife of abandoned stadiums.
Jim Pagels
The national security state steps out of bounds.
Brett Max Kaufman
A sweeping history aims to change the way we think about the origins of capitalism.
Jacob Levy
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Home – Libertarian Party of Texas
Posted: at 7:55 am
You are probably here because you got my email, saw one of our posts, or got a text message. First, I want to thank you for taking the time to come. Second, log in and update your profile. If you get an email from us, like our page, tweet us, or donate you probably already have a profile. Just log in with your email or social media profiles, click on settings, and update your info. If you're on mobile, the menu will be at the bottom of this page to log in and update your profile. If you're on adesktop, the menu will be on the right. Come on in and poke around this is a new experience for us all and we are excited to see how this journeygrows!
We are running the first annual, 4th of July, LPTexas Liberty Bomb. We are asking 1,776 Libertarians to give $17.76 to our cause.We areoffering all money collected to our Rail Road Commissioner and State Judicial Nominees. If you want to make a bigger difference to our candidates, give $177.60 or $1,776.00. You have the potential to make a difference in one of our most critical election cycles in over 12 years. The time is now and the political climate has never been better. Give today!
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Welcome – Reach Financial Independence
Posted: at 7:54 am
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Posted: at 7:54 am
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Space tourism – Wikipedia, the free encyclopedia
Posted: at 7:53 am
This article is about paying space travellers. For other commercial spacefarers, see Commercial astronaut.
Space tourism is space travel for recreational, leisure or business purposes. A number of startup companies have sprung up in recent years, such as Virgin Galactic and XCOR Aerospace, hoping to create a sub-orbital space tourism industry. Orbital space tourism opportunities have been limited and expensive, with only the Russian Space Agency providing transport to date.
The publicized price for flights brokered by Space Adventures to the International Space Station aboard a Russian Soyuz spacecraft have been US $2040 million, during the period 20012009 when 7 space tourists made 8 space flights. Some space tourists have signed contracts with third parties to conduct certain research activities while in orbit.
Russia halted orbital space tourism in 2010 due to the increase in the International Space Station crew size, using the seats for expedition crews that would have been sold to paying spaceflight participants.[1][2] Orbital tourist flights are planned to resume in 2015.[3]
As an alternative term to "tourism", some organizations such as the Commercial Spaceflight Federation use the term "personal spaceflight". The Citizens in Space project uses the term "citizen space exploration".[4]
As of September 2012[update], multiple companies are offering sales of orbital and suborbital flights, with varying durations and creature comforts.[5]
The Soviet space program was aggressive in broadening the pool of cosmonauts. The Soviet Intercosmos program included cosmonauts selected from Warsaw Pact members (from Czechoslovakia, Poland, East Germany, Bulgaria, Hungary, Romania) and later from allies of the USSR (Cuba, Mongolia, Vietnam) and non-aligned countries (India, Syria, Afghanistan). Most of these cosmonauts received full training for their missions and were treated as equals, but especially after the Mir program began, were generally given shorter flights than Soviet cosmonauts. The European Space Agency (ESA) took advantage of the program as well.
The U.S. space shuttle program included payload specialist positions which were usually filled by representatives of companies or institutions managing a specific payload on that mission. These payload specialists did not receive the same training as professional NASA astronauts and were not employed by NASA. In 1983, Ulf Merbold from ESA and Byron Lichtenberg from MIT (engineer and Air Force fighter pilot) were the first payload specialists to fly on the Space Shuttle, on mission STS-9.[6][7]
In 1984, Charles D. Walker became the first non-government astronaut to fly, with his employer McDonnell Douglas paying $40,000 for his flight.[8]:7475 NASA was also eager to prove its capability to Congressional sponsors. Senator Jake Garn was flown on the Shuttle in 1985,[9] followed by Representative Bill Nelson in 1986.[10]
During the 1970s, Shuttle prime contractor Rockwell International studied a $200300 million removable cabin that could fit into the Shuttle's cargo bay. The cabin could carry up to 74 passengers into orbit for up to three days. Space Habitation Design Associates proposed, in 1983, a cabin for 72 passengers in the bay. Passengers were located in six sections, each with windows and its own loading ramp, and with seats in different configurations for launch and landing. Another proposal was based on the Spacelab habitation modules, which provided 32 seats in the payload bay in addition to those in the cockpit area. A 1985 presentation to the National Space Society stated that although flying tourists in the cabin would cost $1 to 1.5 million per passenger without government subsidy, within 15 years 30,000 people a year would pay $25,000 each to fly in space on new spacecraft. The presentation also forecast flights to lunar orbit within 30 years and visits to the lunar surface within 50 years.[11]
As the shuttle program expanded in the early 1980s, NASA began a Space Flight Participant program to allow citizens without scientific or governmental roles to fly. Christa McAuliffe was chosen as the first Teacher in Space in July 1985 from 11,400 applicants. 1,700 applied for the Journalist in Space program, including Walter Cronkite, Tom Brokaw, Tom Wolfe, and Sam Donaldson. An Artist in Space program was considered, and NASA expected that after McAuliffe's flight two to three civilians a year would fly on the shuttle.[8] After McAuliffe was killed in the Challenger disaster in January 1986 the programs were canceled. McAuliffe's backup, Barbara Morgan, eventually got hired in 1998 as a professional astronaut and flew on STS-118 as a mission specialist.[8]:8485 A second journalist-in-space program, in which NASA green-lighted Miles O'Brien to fly on the space shuttle, was scheduled to be announced in 2003. That program was canceled in the wake of the Columbia disaster on STS-107 and subsequent emphasis on finishing the International Space Station before retiring the space shuttle.
With the realities of the post-Perestroika economy in Russia, its space industry was especially starved for cash. The Tokyo Broadcasting System (TBS) offered to pay for one of its reporters to fly on a mission. For $28 million, Toyohiro Akiyama was flown in 1990 to Mir with the eighth crew and returned a week later with the seventh crew. Akiyama gave a daily TV broadcast from orbit and also performed scientific experiments for Russian and Japanese companies. However, since the cost of the flight was paid by his employer, Akiyama could be considered a business traveler rather than a tourist.
In 1991, British chemist Helen Sharman was selected from a pool of 13,000 applicants to be the first Briton in space.[12] The program was known as Project Juno and was a cooperative arrangement between the Soviet Union and a group of British companies. The Project Juno consortium failed to raise the funds required, and the program was almost cancelled. Reportedly Mikhail Gorbachev ordered it to proceed under Soviet expense in the interests of international relations, but in the absence of Western underwriting, less expensive experiments were substituted for those in the original plans. Sharman flew aboard Soyuz TM-12 to Mir and returned aboard Soyuz TM-11.
At the end of the 1990s, MirCorp, a private venture that was by then in charge of the space station, began seeking potential space tourists to visit Mir in order to offset some of its maintenance costs. Dennis Tito, an American businessman and former JPL scientist, became their first candidate. When the decision to de-orbit Mir was made, Tito managed to switch his trip to the International Space Station (ISS) through a deal between MirCorp and U.S.-based Space Adventures, Ltd., despite strong opposition from senior figures at NASA; from the beginning of the ISS expeditions, NASA stated it wasn't interested in space guests.[13] Nonetheless, Dennis Tito visited the ISS on April 28, 2001, and stayed for seven days, becoming the first "fee-paying" space tourist. He was followed in 2002 by South African computer millionaire Mark Shuttleworth. The third was Gregory Olsen in 2005, who was trained as a scientist and whose company produced specialist high-sensitivity cameras. Olsen planned to use his time on the ISS to conduct a number of experiments, in part to test his company's products. Olsen had planned an earlier flight, but had to cancel for health reasons. The Subcommittee on Space and Aeronautics Committee On Science of the House of Representatives held on June 26, 2001 reveals the shifting attitude of NASA towards paying space tourists wanting to travel to the ISS. The hearing's purpose was to, "Review the issues and opportunities for flying nonprofessional astronauts in space, the appropriate government role for supporting the nascent space tourism industry, use of the Shuttle and Space Station for Tourism, safety and training criteria for space tourists, and the potential commercial market for space tourism".[14] The subcommittee report was interested in evaluating Dennis Tito's extensive training and his experience in space as a nonprofessional astronaut.
By 2007, space tourism was thought to be one of the earliest markets that would emerge for commercial spaceflight.[15]:11 However, as of 2014[update] this private exchange market has not emerged to any significant extent.
Space Adventures remains the only company to have sent paying passengers to space.[16][17] In conjunction with the Federal Space Agency of the Russian Federation and Rocket and Space Corporation Energia, Space Adventures facilitated the flights for all of the world's first private space explorers. The first three participants paid in excess of $20 million (USD) each for their 10-day visit to the ISS.
After the Columbia disaster, space tourism on the Russian Soyuz program was temporarily put on hold, because Soyuz vehicles became the only available transport to the ISS. On July 26, 2005, Space Shuttle Discovery (mission STS-114) marked the shuttle's return to space. Consequently, in 2006, space tourism was resumed. On September 18, 2006, an Iranian American named Anousheh Ansari became the fourth space tourist (Soyuz TMA-9).[18]) On April 7, 2007, Charles Simonyi, an American businessman of Hungarian descent, joined their ranks (Soyuz TMA-10). Simonyi became the first repeat space tourist, paying again to fly on Soyuz TMA-14 in MarchApril 2009. Canadian Guy Lalibert became the next space tourist in September, 2009 aboard Soyuz TMA-16.
As reported by Reuters on March 3, 2010, Russia announced that the country would double the number of launches of three-man Soyuz ships to four that year, because "permanent crews of professional astronauts aboard the expanded [ISS] station are set to rise to six"; regarding space tourism, the head of the Russian Cosmonauts' Training Center said "for some time there will be a break in these journeys".[1]
On January 12, 2011, Space Adventures and the Russian Federal Space Agency announced that orbital space tourism would resume in 2013 with the increase of manned Soyuz launches to the ISS from four to five per year.[19] However, this has not materialized, and the current preferred option, instead of producing an additional Soyuz, would be to extend the duration of an ISS Expedition to one year, paving the way for the flight of new spaceflight participants. The British singer Sarah Brightman initiated plans (costing a reported $52 million) and participated in preliminary training in early 2015, expecting to then fly (and to perform while in orbit) in September 2015, but in May 2015 she postponed the plans indefinitely.[3][20][21]
Several plans have been proposed for using a space station as a hotel:
No suborbital space tourism has occurred yet, but since it is projected to be more affordable, many companies view it as a money-making proposition. Most are proposing vehicles that make suborbital flights peaking at an altitude of 100160km (6299mi).[38] Passengers would experience three to six minutes of weightlessness, a view of a twinkle-free starfield, and a vista of the curved Earth below. Projected costs are expected to be about $200,000 per passenger.[39]
Under the Outer Space Treaty signed in 1967, the launch operator's nationality and the launch site's location determine which country is responsible for any damages occurred from a launch.[53]
After valuable resources were detected on the Moon, private companies began to formulate methods to extract the resources. Article II of the Outer Space Treaty dictates that "outer space, including the Moon and other celestial bodies, is not subject to national appropriation by claim of sovereignty, by means of use or occupation, or by any other means".[54] However, countries have the right to freely explore the Moon and any resources collected are property of that country when they return.
In December 2005, the U.S. Government released a set of proposed rules for space tourism.[55] These included screening procedures and training for emergency situations, but not health requirements.
Under current US law, any company proposing to launch paying passengers from American soil on a suborbital rocket must receive a license from the Federal Aviation Administration's Office of Commercial Space Transportation (FAA/AST). The licensing process focuses on public safety and safety of property, and the details can be found in the Code of Federal Regulations, Title 14, Chapter III.[56] This is in accordance with the Commercial Space Launch Amendments Act passed by Congress in 2004.[57]
In March 2010, the New Mexico legislature passed the Spaceflight Informed Consent Act. The SICA gives legal protection to companies who provide private space flights in the case of accidental harm or death to individuals. Participants sign an Informed Consent waiver, dictating that spaceflight operators can not be held liable in the "death of a participant resulting from the inherent risks of space flight activities". Operators are however not covered in the case of gross negligence or willful misconduct.[58]
A 2010 study published in Geophysical Research Letters raised concerns that the growing commercial spaceflight industry could accelerate global warming. The study, funded by NASA and The Aerospace Corporation, simulated the impact of 1,000 suborbital launches of hybrid rockets from a single location, calculating that this would release a total of 600 tonnes of black carbon into the stratosphere. They found that the resultant layer of soot particles remained relatively localised, with only 20% of the carbon straying into the southern hemisphere, thus creating a strong hemispherical asymmetry.[59] This unbalance would cause the temperature to decrease by about 0.4C (0.72F) in the tropics and subtropics, whereas the temperature at the poles would increase by between 0.2 and 1C (0.36 and 1.80F). The ozone layer would also be affected, with the tropics losing up to 1.7% of ozone cover, and the polar regions gaining 56%.[60] The researchers stressed that these results should not be taken as "a precise forecast of the climate response to a specific launch rate of a specific rocket type", but as a demonstration of the sensitivity of the atmosphere to the large-scale disruption that commercial space tourism could bring.[59]
Several organizations have been formed to promote the space tourism industry, including the Space Tourism Society, Space Future, and HobbySpace. UniGalactic Space Travel Magazine is a bi-monthly educational publication covering space tourism and space exploration developments in companies like SpaceX, Orbital Sciences, Virgin Galactic and organizations like NASA.
Classes in space tourism are currently taught at the Rochester Institute of Technology in New York,[61] and Keio University in Japan.[62]
A web-based survey suggested that over 70% of those surveyed wanted less than or equal to 2 weeks in space; in addition, 88% wanted to spacewalk (only 14% of these would do it for a 50% premium), and 21% wanted a hotel or space station.[63]
The concept has met with some criticism from some, including politicians, notably Gnter Verheugen, vice-president of the European Commission, who said of the EADS Astrium Space Tourism Project: "It's only for the super rich, which is against my social convictions".[64]
As of October 2013, NBC News and Virgin Galactic have come together to create a new reality television show titled Space Race. The show "will follow contestants as they compete to win a flight into space aboard Virgin Galactic's SpaceShipTwo rocket plane. It is not to be confused with the Children's Space TV show called "Space Racers""[65]
Many private space travelers have objected to the term "space tourist", often pointing out that their role went beyond that of an observer, since they also carried out scientific experiments in the course of their journey. Richard Garriott additionally emphasized that his training was identical to the requirements of non-Russian Soyuz crew members, and that teachers and other non-professional astronauts chosen to fly with NASA are called astronauts. He has said that if the distinction has to be made, he would rather be called "private astronaut" than "tourist".[66] Dennis Tito has asked to be known as an "independent researcher",[citation needed] and Mark Shuttleworth described himself as a "pioneer of commercial space travel".[67] Gregory Olsen prefers "private researcher",[68] and Anousheh Ansari prefers the term "private space explorer".[18] Other space enthusiasts object to the term on similar grounds. Rick Tumlinson of the Space Frontier Foundation, for example, has said: "I hate the word tourist, and I always will ... 'Tourist' is somebody in a flowered shirt with three cameras around his neck."[69] Russian cosmonaut Maksim Surayev told the press in 2009 not to describe Guy Lalibert as a tourist: "It's become fashionable to speak of space tourists. He is not a tourist but a participant in the mission."[70]
"Spaceflight participant" is the official term used by NASA and the Russian Federal Space Agency to distinguish between private space travelers and career astronauts. Tito, Shuttleworth, Olsen, Ansari, and Simonyi were designated as such during their respective space flights. NASA also lists Christa McAuliffe as a spaceflight participant (although she did not pay a fee), apparently due to her non-technical duties aboard the STS-51-L flight.
The U.S. Federal Aviation Administration awards the title of "Commercial Astronaut" to trained crew members of privately funded spacecraft. The only people currently holding this title are Mike Melvill and Brian Binnie, the pilots of SpaceShipOne.
A 2010 report from the Federal Aviation Administration, titled "The Economic Impact of Commercial Space Transportation on the U. S Economy in 2009", cites studies done by Futron, an aerospace and technology-consulting firm, which predict that space tourism could become a billion-dollar market within 20 years.[71] In addition, in the decade since Dennis Tito journeyed to the International Space Station, eight private citizens have paid the $20 million fee to travel to space. Space Adventures suggests that this number could increase fifteen-fold by 2020.[72] These figures do not include other private space agencies such as Virgin Galactic, which as of 2014 has sold approximately 700 tickets priced at $200,000 or $250,000 dollars each and has accepted more than $80 million in deposits.[73]
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NeuroStar TMS Therapy Depression Treatment
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If you are suffering from depression, you are not alone.1
NeuroStar TMS Therapy may be able to help, with effective, non-drug treatment for depression that is bringing new hope to patients every day.
NeuroStar TMS Therapy is an FDA-cleared safe and effective treatment for adult patients with depression who have not benefited from prior antidepressant medication. It works by stimulating areas of the brain that are underactive in patients with severe depression.
Because it is not a depression drug, NeuroStar TMS Therapy is free from the side effects that patients often experience when they take antidepressant medication.2, 3, 4
NeuroStar TMS Therapy may not be right for everyone. Ask a NeuroStar physician if TMS Therapy may be right for you.
Learn More About NeuroStar TMS Therapy
NeuroStar TMS Therapy is indicated for the treatment of Major Depressive Disorder in adult patients who have failed to receive satisfactory improvement from prior antidepressant medication in the current episode.
NeuroStar TMS Therapy is only available by prescription. A doctor can help decide if NeuroStar TMS Therapy is right for you.
Click here for Full Safety and Prescribing Information.
The most common side effect is pain or discomfort at or near the treatment site. These events are transient; they occur during the TMS treatment course and do not occur for most patients after the first week of treatment. There is a rare risk of seizure associated with the use of NeuroStar TMS (<0.1% per patient).
NeuroStar TMS Therapy should not be used with patients who have non-removable conductive metal in or near the head.
NeuroStar TMS Therapy has not been studied in patients who have not received prior antidepressant treatment.
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Human cloning – Wikipedia, the free encyclopedia
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Human cloning is the creation of a genetically identical copy of a human. The term is generally used to refer to artificial human cloning, which is the reproduction of human cells and tissue. It does not refer to the natural conception and delivery of identical twins. The possibility of human cloning has raised controversies. These ethical concerns have prompted several nations to pass laws regarding human cloning and its legality.
Two commonly discussed types of theoretical human cloning are: therapeutic cloning and reproductive cloning. Therapeutic cloning would involve cloning cells from a human for use in medicine and transplants, and is an active area of research, but is not in medical practice anywhere in the world, as of July 2016[update]. Two common methods of therapeutic cloning that are being researched are somatic-cell nuclear transfer and, more recently, pluripotent stem cell induction. Reproductive cloning would involve making an entire cloned human, instead of just specific cells or tissues.
Although the possibility of cloning humans had been the subject of speculation for much of the 20th century, scientists and policy makers began to take the prospect seriously in the mid-1960s.
Nobel Prize-winning geneticist Joshua Lederberg advocated cloning and genetic engineering in an article in The American Naturalist in 1966 and again, the following year, in The Washington Post.[1] He sparked a debate with conservative bioethicist Leon Kass, who wrote at the time that "the programmed reproduction of man will, in fact, dehumanize him." Another Nobel Laureate, James D. Watson, publicized the potential and the perils of cloning in his Atlantic Monthly essay, "Moving Toward the Clonal Man", in 1971.[2]
With the cloning of a sheep known as Dolly in 1996 by somatic cell nuclear transfer (SCNT), the idea of human cloning became a hot debate topic.[3] Many nations outlawed it, while a few scientists promised to make a clone within the next few years. The first hybrid human clone was created in November 1998, by Advanced Cell Technology. It was created using SCNT - a nucleus was taken from a man's leg cell and inserted into a cow's egg from which the nucleus had been removed, and the hybrid cell was cultured, and developed into an embryo. The embryo was destroyed after 12 days.[4]
In 2004 and 2005, Hwang Woo-suk, a professor at Seoul National University, published two separate articles in the journal Science claiming to have successfully harvested pluripotent, embryonic stem cells from a cloned human blastocyst using somatic-cell nuclear transfer techniques. Hwang claimed to have created eleven different patent-specific stem cell lines. This would have been the first major breakthrough in human cloning.[5] However, in 2006 Science retracted both of his articles on clear evidence that much of his data from the experiments was fabricated.[6]
In January 2008, Dr. Andrew French and Samuel Wood of the biotechnology company Stemagen announced that they successfully created the first five mature human embryos using SCNT. In this case, each embryo was created by taking a nucleus from a skin cell (donated by Wood and a colleague) and inserting it into a human egg from which the nucleus had been removed. The embryos were developed only to the blastocyst stage, at which point they were studied in processes that destroyed them. Members of the lab said that their next set of experiments would aim to generate embryonic stem cell lines; these are the "holy grail" that would be useful for therapeutic or reproductive cloning.[7][8]
In 2011, scientists at the New York Stem Cell Foundation announced that they had succeeded in generating embyronic stem cell lines, but their process involved leaving the oocyte's nucleus in place, resulting in triploid cells, which would not be useful for cloning.[10][11]
In 2013, a group of scientists led by Shoukhrat Mitalipov published the first report of embryonic stem cells created using SCNT. In this experiment, the researchers developed a protocol for using SCNT in human cells, which differs slightly from the one used in other organisms. Four embryonic stem cell lines from human fetal somatic cells were derived from those blastocysts. All four lines were derived using oocytes from the same donor, ensuring that all mitochondrial DNA inherited was identical. A year later, a team led by Robert Lanza at Advanced Cell Technology reported that they had replicated Mitalipov's results and further demonstrated the effectiveness by cloning adult cells using SCNT.[3][12]
In somatic cell nuclear transfer ("SCNT"), the nucleus of a somatic cell is taken from a donor and transplanted into a host egg cell, which had its own genetic material removed previously, making it an enucleated egg. After the donor somatic cell genetic material is transferred into the host oocyte with a micropipette, the somatic cell genetic material is fused with the egg using an electric current. Once the two cells have fused, the new cell can be permitted to grow in a surrogate or artificially.[13] This is the process that was used to successfully clone Dolly the sheep (see section on History in this article).[3]
Creating induced pluripotent stem cells ("iPSCs") is a long and inefficient process. Pluripotency refers to a stem cell that has the potential to differentiate into any of the three germ layers: endoderm (interior stomach lining, gastrointestinal tract, the lungs), mesoderm (muscle, bone, blood, urogenital), or ectoderm (epidermal tissues and nervous system).[14] A specific set of genes, often called "reprogramming factors", are introduced into a specific adult cell type. These factors send signals in the mature cell that cause the cell to become a pluripotent stem cell. This process is highly studied and new techniques are being discovered frequently on how to better this induction process.
Depending on the method used, reprogramming of adult cells into iPSCs for implantation could have severe limitations in humans. If a virus is used as a reprogramming factor for the cell, cancer-causing genes called oncogenes may be activated. These cells would appear as rapidly dividing cancer cells that do not respond to the body's natural cell signaling process. However, in 2008 scientists discovered a technique that could remove the presence of these oncogenes after pluripotency induction, thereby increasing the potential use of iPSC in humans.[15]
Both the processes of SCNT and iPSCs have benefits and deficiencies. Historically, reprogramming methods were better studied than SCNT derived embryonic stem cells (ESCs). However, more recent studies have put more emphasis on developing new procedures for SCNT-ESCs. The major advantage of SCNT over iPSCs at this time is the speed with which cells can be produced. iPSCs derivation takes several months while SCNT would take a much shorter time, which could be important for medical applications. New studies are working to improve the process of iPSC in terms of both speed and efficiency with the discovery of new reprogramming factors in oocytes.[citation needed] Another advantage SCNT could have over iPSCs is its potential to treat mitochondrial disease, as it utilizes a donor oocyte. No other advantages are known at this time in using stem cells derived from one method over stem cells derived from the other.[16]
Work on cloning techniques has advanced our basic understanding of developmental biology in humans. Observing human pluripotent stem cells grown in culture provides great insight into human embryo development, which otherwise cannot be seen. Scientists are now able to better define steps of early human development. Studying signal transduction along with genetic manipulation within the early human embryo has the potential to provide answers to many developmental diseases and defects. Many human-specific signaling pathways have been discovered by studying human embryonic stem cells. Studying developmental pathways in humans has given developmental biologists more evidence toward the hypothesis that developmental pathways are conserved throughout species.[17]
iPSCs and cells created by SCNT are useful for research into the causes of disease, and as model systems used in drug discovery.[18][19]
Cells produced with SCNT, or iPSCs could eventually be used in stem cell therapy,[20] or to create organs to be used in transplantation, known as regenerative medicine. Stem cell therapy is the use of stem cells to treat or prevent a disease or condition. Bone marrow transplantation is a widely used form of stem cell therapy.[21] No other forms of stem cell therapy are in clinical use at this time. Research is underway to potentially use stem cell therapy to treat heart disease, diabetes, and spinal cord injuries.[22][23] Regenerative medicine is not in clinical practice, but is heavily researched for its potential uses. This type of medicine would allow for autologous transplantation, thus removing the risk of organ transplant rejection by the recipient.[24] For instance, a person with liver disease could potentially have a new liver grown using their same genetic material and transplanted to remove the damaged liver.[25] In current research, human pluripotent stem cells have been promised as a reliable source for generating human neurons, showing the potential for regenerative medicine in brain and neural injuries.[26]
In bioethics, the ethics of cloning refers to a variety of ethical positions regarding the practice and possibilities of cloning, especially human cloning. While many of these views are religious in origin, the questions raised by cloning are faced by secular perspectives as well. Human therapeutic and reproductive cloning are not commercially used; animals are currently cloned in laboratories and in livestock production.
Advocates support development of therapeutic cloning in order to generate tissues and whole organs to treat patients who otherwise cannot obtain transplants,[27] to avoid the need for immunosuppressive drugs,[28] and to stave off the effects of aging.[29] Advocates for reproductive cloning believe that parents who cannot otherwise procreate should have access to the technology.[30]
Opposition to therapeutic cloning mainly centers around the status of embyronic stem cells, which has connections with the abortion debate.[31]
Some opponents of reproductive cloning have concerns that technology is not yet developed enough to be safe - for example, the position of the American Association for the Advancement of Science as of 2014[update],[32] while others emphasize that reproductive cloning could be prone to abuse (leading to the generation of humans whose organs and tissues would be harvested),[33][34] and have concerns about how cloned individuals could integrate with families and with society at large.[35][36]
Religious groups are divided, with some[which?] opposing the technology as usurping God's (in monotheistic traditions) place and, to the extent embryos are used, destroying a human life; others support therapeutic cloning's potential life-saving benefits.[37][38]
In 2015 it was reported that about 70 countries had banned human cloning.[39]
Australia has prohibited human cloning,[40] though as of December 2006[update], a bill legalizing therapeutic cloning and the creation of human embryos for stem cell research passed the House of Representatives. Within certain regulatory limits, and subject to the effect of state legislation, therapeutic cloning is now legal in some parts of Australia.[41]
Canadian law prohibits the following: cloning humans, cloning stem cells, growing human embryos for research purposes, and buying or selling of embryos, sperm, eggs or other human reproductive material.[42] It also bans making changes to human DNA that would pass from one generation to the next, including use of animal DNA in humans. Surrogate mothers are legally allowed, as is donation of sperm or eggs for reproductive purposes. Human embryos and stem cells are also permitted to be donated for research.[citation needed]
There have been consistent calls in Canada to ban human reproductive cloning since the 1993 Report of the Royal Commission on New Reproductive Technologies. Polls have indicated that an overwhelming majority of Canadians oppose human reproductive cloning, though the regulation of human cloning continues to be a significant national and international policy issue. The notion of "human dignity" is commonly used to justify cloning laws. The basis for this justification is that reproductive human cloning necessarily infringes notions of human dignity.[43][44][45][46]
Human cloning is prohibited in Article 133 of the Colombian Penal Code.[47]
The European Convention on Human Rights and Biomedicine prohibits human cloning in one of its additional protocols, but this protocol has been ratified only by Greece, Spain and Portugal. The Charter of Fundamental Rights of the European Union explicitly prohibits reproductive human cloning. The charter is legally binding for the institutions of the European Union under the Treaty of Lisbon and for member states of the Union implementing EU law.[48][49]
India does not have specific law regarding cloning but has guidelines prohibiting whole human cloning or reproductive cloning. India allows therapeutic cloning and the use of embryonic stem cells for research proposes.[50][51]
Human cloning is explicitly prohibited in Article 24, "Right to Life" of the 2006 Constitution of Serbia.[52]
In terms of section 39A of the Human Tissue Act 65 of 1983, genetic manipulation of gametes or zygotes outside the human body is absolutely prohibited. A zygote is the cell resulting from the fusion of two gametes; thus the fertilised ovum. Section 39A thus prohibits human cloning.
On January 14, 2001 the British government passed The Human Fertilisation and Embryology (Research Purposes) Regulations 2001[53] to amend the Human Fertilisation and Embryology Act 1990 by extending allowable reasons for embryo research to permit research around stem cells and cell nuclear replacement, thus allowing therapeutic cloning. However, on November 15, 2001, a pro-life group won a High Court legal challenge, which struck down the regulation and effectively left all forms of cloning unregulated in the UK. Their hope was that Parliament would fill this gap by passing prohibitive legislation.[54][55] Parliament was quick to pass the Human Reproductive Cloning Act 2001 which explicitly prohibited reproductive cloning. The remaining gap with regard to therapeutic cloning was closed when the appeals courts reversed the previous decision of the High Court.[56]
The first license was granted on August 11, 2004 to researchers at the University of Newcastle to allow them to investigate treatments for diabetes, Parkinson's disease and Alzheimer's disease.[57] The Human Fertilisation and Embryology Act 2008, a major review of fertility legislation, repealed the 2001 Cloning Act by making amendments of similar effect to the 1990 Act. The 2008 Act also allows experiments on hybrid human-animal embryos.[58]
On December 13, 2001, the United Nations General Assembly began elaborating an international convention against the reproductive cloning of humans. A broad coalition of States, including Spain, Italy, the Philippines, the United States, Costa Rica and the Holy See sought to extend the debate to ban all forms of human cloning, noting that, in their view, therapeutic human cloning violates human dignity. Costa Rica proposed the adoption of an international convention to ban all forms of human cloning. Unable to reach a consensus on a binding convention, in March 2005 a non-binding United Nations Declaration on Human Cloning, calling for the ban of all forms of human cloning contrary to human dignity, was adopted.[59][60]
In 1998, 2001, 2004, 2005, and 2007, the United States House of Representatives voted whether to ban all human cloning, both reproductive and therapeutic. Each time, divisions in the Senate over therapeutic cloning prevented either competing proposal (a ban on both forms or reproductive cloning only) from passing. On March 10, 2010 a bill (HR 4808) was introduced with a section banning federal funding for human cloning.[61] Such a law, if passed, would not prevent research from occurring in private institutions (such as universities) that have both private and federal funding. There are currently no federal laws in the United States which ban cloning completely, and any such laws would raise difficult constitutional questions similar to the issues raised by abortion.[citation needed] Fifteen American states (Arkansas, California, Connecticut, Iowa, Indiana, Massachusetts, Maryland, Michigan, North Dakota, New Jersey, Rhode Island, South Dakota, Florida, Georgia, and Virginia) ban reproductive cloning and three states (Arizona, Maryland, and Missouri) prohibit use of public funds for such activities.[62]
Science fiction has used cloning, most commonly and specifically human cloning, due to the fact that it brings up controversial questions of identity.[63][64] In Aldous Huxleys Brave New World (1932), human cloning is a major plot device that not only drives the story but also makes the reader think critically about what identity means; this concept was re-examined fifty years later in C. J. Cherryhs novels Forty Thousand in Gehenna (1983) and Cyteen (1988). Kazuo Ishiguro's 2005 novel Never Let Me Go centers on human clones and considers the ethics of the practice.
The reduction in the value of the individual human life in a resource-optimized clone-based society is examined in the 1967 novel Logan's Run, and the later movie.
A recurring sub-theme of cloning fiction is the use of clones as a supply of organs for transplantation. The 2005 Kazuo Ishiguro novel Never Let Me Go and the 2010 film adaption[65] are set in an alternate history in which cloned humans are created for the sole purpose of providing organ donations to naturally born humans, despite the fact that they are fully sentient and self-aware. The 2005 film The Island[66] revolves around a similar plot, with the exception that the clones are unaware of the reason for their existence. In the futuristic novel The House of the Scorpion, clones are used to grow organs for their wealthy "owners", and the main character was a complete clone.
The use of human cloning for military purposes has also been explored in several works. Star Wars portrays human cloning in Clone Wars,[67]Star Wars: Episode II Attack of the Clones and Star Wars: Episode III Revenge of the Sith, in the form of the Grand Army of the Republic, an army of cloned soldiers.
Orphan Black, a sci-fi/drama television series explores the ethical issues, and biological advantages/disadvantages of human cloning through a fictional scientific study on the behavioral adaptation of clones in society.[68]
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Hedonism II | Top Clothing Optional Resorts In Negril, Jamaica
Posted: at 7:45 am
Select Departure City Albany, Ny [ALB] Albuquerque, Nm [ABQ] Allentown, Pa [ABE] Amarillo, Tx [AMA] Anchorage, Ak [ANC] Appleton, Mn [AQP] Arcata, Ca [ACV] Asheville, Nc [AVL] Aspen, Co [ASE] Atlanta, Ga [ATL] Atlantic City, Nj [ACY] Austin, Tx [AUS] Baltimore, Md [BWI] Bangor, Me [BGR] Beaumont, Tx [BPT] Bethel, Ak [BET] Billings, Mt [BIL] Binghamton, Ny [BGM] Birmingham, Al [BHM] Bismarck, Nd [BIS] Bloomington, Il [BMI] Boise, Id [BOI] Boston, Ma [BOS] Brownsville, Tx [BRO] Brunswick, Ga [BQK] Buffalo, Ny [BUF] Burbank, Ca [BUR] Burlington, Vt [BTV] Calgary [YYC] Cedar Rapids, Ia [CID] Charleston, Sc [CHS] Charleston, Wv [CRW] Charlotte, Nc [CLT] Charlottesville, Va [CHO] Chicago (Midway), Il [MDW] Chicago (O'Hare), Il [ORD] Cincinnati, Oh [CVG] Cleveland, Oh [CLE] College Station, Tx [CLL] Colorado Springs, Co [COS] Columbia, Mo [COU] Columbia, Sc [CAE] Columbus, Oh [CMH] Cordova, Ak [CDV] Corpus Christi, Tx [CRP] Dallas Love Field, Tx [DAL] Dallas/Fort Worth, Tx [DFW] Dayton, Oh [DAY] Denver, Co [DEN] Des Moines, Ia [DSM] Detroit, Mi [DTW] Duluth, Mn [DLH] Durango, Co [DRO] Edmonton Intntl [YEG] Eastern Iowa, Ia [CID] El Paso, Tx [ELP] Erie, Pa [ERI] Eugene, Or [EUG] Eureka, Ca [EKA] Fairbanks, Ak [FAI] Fargo, Nd [FAR] Flint, Mi [FNT] Fresno, Ca [FAT] Ft. Lauderdale, Fl [FLL] Ft. Myers, Fl [RSW] Ft. Walton/Okaloosa [VPS] Ft. Wayne, In [FWA] Gainesville, Fl [GNV] Grand Forks, Nd [GFK] Grand Rapids, Mi [GRR] Great Falls, Mt [GTF] Green Bay, Wi [GRB] Greensboro, Nc [GSO] Greenville, Sc [GSP] Gulfport, Ms [GPT] Halifax Intntl [YHZ] Harlingen [HRL] Harrisburg, Pa [MDT] Hartford, Ct [BDL] Helena, Mt [HLN] Hilo, Hi [ITO] Hilton Head, Sc [HHH] Honolulu, Hi [HNL] Houston Hobby, Tx [HOU] Houston Busch, Tx [IAH] Huntington, Wv [HTS] Huntsville Intl, Al [HSV] Idaho Falls, Id [IDA] Indianapolis, In [IND] Islip, Ny [ISP] Ithaca, Ny [ITH] Jackson Hole, Wy [JAC] Jackson Int'L, Ms [JAN] Jacksonville, Fl [JAX] Juneau, Ak [JNU] Kahului, Hi [OGG] Kansas City, Mo [MCI] Kapalua, Hi [JHM] Kauai, Hi [LIH] Key West, Fl [EYW] Knoxville, Tn [TYS] Kona, Hi [KOA] Lanai, Hi [LNY] Lansing, Mi [LAN] Las Vegas, Nv [LAS] Lexington, Ky [LEX] Lincoln, Ne [LNK] Little Rock, Ar [LIT] Long Beach, Ca [LGB] Los Angeles, Ca [LAX] Louisville, Ky [SDF] Lubbock, Tx [LBB] Lynchburg, Va [LYH] Montreal Mirabel [YMX] Montreal Trudeau [YUL] Madison, Wi [MSN] Manchester, Nh [MHT] Maui, Hi [OGG] Mcallen, Tx [MFE] Medford, Or [MFR] Melbourne, Fl [MLB] Memphis, Tn [MEM] Miami, Fl [MIA] Midland/Odessa, Tx [MAF] Milwaukee, Wi [MKE] Minneapolis/St. Paul [MSP] Missoula, Mt [MSO] Mobile Regional, Al [MOB] Molokai, Hi [MKK] Monterey, Ca [MRY] Montgomery, Al [MGM] Myrtle Beach, Sc [MYR] Naples, Fl [APF] Nashville, Tn [BNA] New Braunfels, Tx [BAZ] New Orleans, La [MSY] New York Kennedy, Ny [JFK] New York Laguardia [LGA] Newark, Nj [EWR] Norfolk, Va [ORF] Ottawa Mcdonald [YOW] Oakland, Ca [OAK] Oklahoma City, Ok [OKC] Omaha, Ne [OMA] Ontario, Ca [ONT] Orange County, Ca [SNA] Orlando, Fl [MCO] Palm Springs, Ca [PSP] Panama City, Fl [PFN] Pensacola, Fl [PNS] Peoria, Il [PIA] Philadelphia, Pa [PHL] Phoenix, Az [PHX] Pittsburgh, Pa [PIT] Port Angeles, Wa [CLM] Portland Intl, Or [PDX] Portland, Me [PWM] Providence, Ri [PVD] Quebec Intntl [YQB] Raleigh/Durham, Nc [RDU] Rapid City, Sd [RAP] Redmond, Or [RDM] Reno, Nv [RNO] Richmond, Va [RIC] Roanoke, Va [ROA] Rochester, Ny [ROC] Rockford, Il [RFD] Sacramento, Ca [SMF] Saginaw, Mi [MBS] Salem, Or [SLE] Salt Lake City, Ut [SLC] San Antonio, Tx [SAT] San Diego, Ca [SAN] San Francisco, Ca [SFO] San Jose, Ca [SJC] Santa Barbara, Ca [SBA] Santa Rosa, Ca [STS] Sarasota/Bradenton [SRQ] Savannah, Ga [SAV] Seattle/Tacoma, Wa [SEA] Shreveport, La [SHV] Sioux City, Ia [SUX] Sioux Falls, Sd [FSD] Spokane, Wa [GEG] Springfield, Il [SPI] Springfield, Mo [SGF] St. Louis, Mo [STL] St. Petersburg, Fl [PIE] Syracuse, Ny [SYR] Toronto Pearson [YYZ] Tallahassee, Fl [TLH] Tampa, Fl [TPA] Traverse City, Mi [TVC] Tucson, Az [TUS] Tulsa, Ok [TUL] Vancouver Intntl [YVR] Victoria Intntl [YYJ] Winnipeg Intntl [YWG] Washington Natl, Dc [DCA] Washington/Dulles, Dc [IAD] Wenatchee, Wa [EAT] West Palm Beach, Fl [PBI] White Plains, Ny [HPN] Wichita, Ks [ICT] Wilkes-Barre/Scranton [AVP]
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Hedonism II | Top Clothing Optional Resorts In Negril, Jamaica
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Human Genetics | University of Michigan, Ann Arbor
Posted: at 7:42 am
The Department of Human Genetics is dedicated to basic scientific research in human genetics and genetic disease, as well as the training of the next generation of scientists and health care providers.
Our faculty explore three broad areas of human genetics: molecular genetics, genetic disease, and statistical/population genetics. Within molecular genetics, research groups study DNA repair and recombination, genome instability, gene function and regulation, epigenetics, RNA modification and control, and genomic systems. Research in human genetic disease emphasizes the genetics of development, neurogenetics, stem cell biology, medical genetics, reproductive sciences, and the genetics of cancer. Evolutionary and population genetics research includes statistical tools for genetics, genetic epidemiology, and genetic mapping of complex traits and diseases.
We invite you to explore our faculty, students, graduate programs, courses, and events/seminars.
Wildschutte JH, Williams ZH, Montesion M, Subramanian RP, Kidd JM, Coffin JM. Discovery of unfixed endogenous retrovirus insertions in diverse human populations. Published online PNAS March 21, 2016 http://www.pnas.org/content/early/2016/03/16/1602336113
Iwase S, Brookes E, Agarwal S, Badeaux AI, Ito H, Vallianatos CN, Tomassy GS, Kasza T, Lin G, Thompson A, Gu L, Kwan KY, Chen C, Sartor MA, Egan B, Xu J, Shi Y. A mouse model of X-linked intellectual disability associated with impaired removal of histone methylation. Cell Rep. 2016 Feb 9;14(5):1000-9. [PubMed]
Lenk GM, Frei CM, Miller AC, Wallen RC, Mironova YA, Giger RJ, Meisler MH. Rescue of neurodegeneration in the Fig4 null mouse by a catalytically inactive FIG4 transgene. Hum Mol Genet. 2016 Jan 15;25(2):340-7. [PubMed]
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Human Genetics | University of Michigan, Ann Arbor
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