What Makes You an Autotroph (What Makes You Beautiful Parody) – Video


What Makes You an Autotroph (What Makes You Beautiful Parody)
Our biology project, parody of #39;What Makes You Beautiful #39; by One Direction. We had a great time filming this! 🙂 Also, we aren #39;t 10 year old girls, we just felt like chimpunk-ifying this for no reason 😀 kthxbaiFrom:khusbuhartparamoreViews:10 1ratingsTime:02:45More inComedy

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What Makes You an Autotroph (What Makes You Beautiful Parody) - Video

myFoxLA: Study: Getting A Coupon Better Than A Kiss – Video


myFoxLA: Study: Getting A Coupon Better Than A Kiss
Neuroeconomic researchers at Claremont College studying the biology of couponing have discovered that in some people, couponing can be more relaxing than a trip to the spa -- and more enjoyable than kissing. Original link: http://www.myfoxla.comFrom:DrPaulJZakViews:0 0ratingsTime:03:41More inNews Politics

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myFoxLA: Study: Getting A Coupon Better Than A Kiss - Video

Khalil's Picks (23 November 2012)

After that long turkey-induced sleep, heres to some good science. This weeks picks includes an emotional piece about a dad, synthetic biology as the sci-fi extension of genetic engineering, astronomy in China and much much more (including one Thanksgiving-themed post).

Dig in!

Science is more than lab work and journals but we tend to forget this sometimes. Pete Etchells in his SciLogs.com blog, Counterbalanced, pens a wonderful wonderful piece about his father, who has been his inspiration to pursue a career in research. Petes blog post is moving and is a must-read because it showcases another aspect of science: humanity.

Why I hate neurons So why did my Dad also inspire an irrational hatred of neurons? Because fourteen years ago today, on a freezing, dark, miserable day in November, my Dad died, two years after being diagnosed with a form of Motor Neuron Disease (MND) called Progressive Muscular Atrophy.

In BuzzFeed this week, Allison McCann has a delightful feature about synthetic biology which she describes as the science fiction-like branch of genetic engineering. Allison goes on to give a good account of the field and the challenges synthetic biologists face as they go all mad scientists on us.

How To Code A Life Synthetic biology the science fiction-like branch of genetic engineering hopes to automate programs used to engineer organisms that could produce better drugs and cleaner fuels. But can open-source science really succeed? Synthetic biologists write code. But when their code is compiled, it doesnt become an app. It becomes, or at least changes, life.

Nadia Drake explores Chinas ambitions in the field of astronomy while on a visit to the country. Writing in the December issue of Science News, Nadia dwells a little bit into Chinas impressive beginnings in the field and how it suddenly all went bad. Now, China is playing catch up but with proper backing, it looks set to push the frontiers of astronomy even further relatively soon. An exceptional #longread.

Onward and Skyward High in Beijings sky, the August sun glows red by midafternoon, a star struggling to illuminate Chinas crowded capital from above the dust and pollution. Im in the city along with 3,200 astronomers for the International Astronomical Unions two-week General Assembly meeting. Its the first time the IAU has convened the assembly in China, an important milestone for a country attempting to reclaim its former astronomical significance.

Jon Tennant (interviewed this week on this blog), blogging in his European Geosciences Union blog, Green Tea and Velociraptor, has an excellent post about geoscience in the news. Jon dissects a recent paper which not only points out the negatives of the medias portrayal of geoscience but also suggests future actions that can be both journalists and researchers.

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Khalil's Picks (23 November 2012)

Elusive replication machinery of flu viruses revealed

Washington, November 23 (ANI): Using cutting-edge molecular biology and electron-microscopy techniques, scientists at The Scripps Research Institute (TSRI) have shed light on how flu viruses replicate within infected cells.

The images generated in the study show flu virus proteins in the act of self-replication, highlighting the virus's vulnerabilities that are sure to be of interest to drug developers.

The report focuses on influenza's ribonucleoprotein (RNP). RNPs contain the virus's genetic material plus the special enzyme that the virus needs to make copies of itself.

"Structural studies in this area had stalled because of the technical obstacles involved, and so this is a welcome advance," said Ian A. Wilson, the Hansen Professor of Structural Biology at TSRI and senior author of the report with TSRI Professors of Cell Biology Bridget Carragher and Clint Potter.

"The data from this study give us a much clearer picture of the flu virus replication machinery," he stated.

At the core of any influenza virus lie eight RNPs, tiny molecular machines that are vital to the virus's ability to survive and spread in its hosts. Each RNP contains a segment-usually a single protein-coding gene-of the RNA-based viral genome. This viral RNA segment is coated with protective viral nucleoproteins and has a structure that resembles a twisted loop of chain.

The free ends of this twisted loop are held by a flu-virus polymerase enzyme, which handles the two central tasks of viral reproduction, making new viral genomic RNA, and making the RNA gene-transcripts that will become new viral proteins.

Aside from its importance in ordinary infections, the flu polymerase contains some of the key "species barriers" that keep, for example, avian flu viruses from infecting mammals. Mutations at key points on the enzyme have enabled the virus to infect new species in the past. Thus researchers are eager to know the precise details of how the flu polymerase and the rest of the RNP interact.

Getting those details has been a real challenge. One reason is that flu RNPs are complex assemblies that are hard to produce efficiently in the lab.

Until now, the only flu RNPs that have been reproduced in the laboratory are shortened versions whose structures aren't quite the same as those of native flu RNPs. Researchers also are limited in how much virus they can use for such studies.

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Elusive replication machinery of flu viruses revealed

Wickliffe High School biology teacher working toward flipped classroom

By Caitlin Fertal CFertal@News-Herald.com @NHCaitlin

Students in ninth- and 10th-grade biology classes at Wickliffe High School are getting a taste of a flipped classroom.

While the idea is still new, seven-year teacher Marlana Mucciarone has started to introduce lecture videos for her students to watch at home, allowing her more time for individualized instruction during class.

Subject mastery is important for each student to gain, Mucciarone said, noting that with traditional education, oftentimes students advance to the next subject in a class before they are truly ready.

The idea of moving some of the lecture to the home provides time for Mucciarone to work with students individually and help those who may be falling behind, without holding back students who are advancing.

She has done a good deal of research online, learning from other teachers who have already successfully flipped their classrooms, she said.

For now, Mucciarone is still teaching a traditional classroom and adding the video lectures online for students to watch at home. She said she hopes to implement a more solid program next year.

"It frees up more classroom time to focus on their strengths and weaknesses instead of yapping at them all day long with just pounding information down their throats," she said. "(It allows you) to have differentiated instruction within a classroom of 25 to 30 different learners and be able to meet all of their needs instead of shooting for the middle."

Student feedback has been positive so far.

Mucciarone's ninth-grade honors biology class has expressed interest in watching the videos, some multiple times, she said.

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Wickliffe High School biology teacher working toward flipped classroom

Lessons in human biology featured in Grossology exhibit at Oregon Museum of Science and Industry

Kai Jensen has a fascination with viruses and bacteria. Rotavirus, his favorite, causes severe diarrhea.

The 5-year-old's love of everything abhorrent came to life Saturday at the Oregon Museum of Science and Industry's featured Grossology exhibit.

Jensen, of Portland, climbed a zit-filled human skin wall, created fart noises, walked through a giant nose and slid his way through a 3-D model of the digestive system as he discovered the foul yet scientific happenings inside the human body.

Based on the children's book "Grossology" by Sylvia Branzei, the exhibit uses animatronics -- animated robots -- to explain runny noses, poop, body odor and other functions.

Museum senior educator Kristi Falkowski said the exhibit, being visited by several thousand visitors through Thanksgiving weekend, appeals most to children, especially because of its interactive features.

"It is using the gross things that our bodies do to teach more about general human biology; how our bodies work and why," she said. "It allows parents to talk to kids about uncomfortable subject matter."

But Jensen's dad Brett, a physician, said he enjoyed the educational adventure just as much as his son.

"You can totally see how an adult would gain as much from this experience as a kid," he said.

Heather Young, 42, is one such adult. Young, who came with five of her children and their friends, said the exhibit was hilarious and informative.

"The thing that made us laugh the most was the machine that makes vomit," she said. "Watching the kids smelling the different smells was hilarious, too."

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Lessons in human biology featured in Grossology exhibit at Oregon Museum of Science and Industry

Glycolipids. New Comprehensive Biochemistry, Volume 10. – Video


Glycolipids. New Comprehensive Biochemistry, Volume 10.
ll4.me Glycolipids. New Comprehensive Biochemistry, Volume 10. EAN/ISBN : 9780080860688 Publisher(s): Elsevier Science Technology Format: ePub/PDF Author(s): Wiegandt, H. EAN/ISBN : 9780080860688 Publisher(s): Elsevier Science Technology Format: ePub/PDF Author(s): Wiegandt, H.From:robertsaunders349Views:0 0ratingsTime:00:14More inPeople Blogs

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Glycolipids. New Comprehensive Biochemistry, Volume 10. - Video

Macromolecule – Wiki Article – Video


Macromolecule - Wiki Article
A macromolecule is a very large molecule commonly created by polymerization of smaller subunits. In biochemistry, the term is applied to the four conventional biopolymers (nucleic acids, proteins, ca... Macromolecule - Wiki Article - wikiplays.org Original @ http All Information Derived from Wikipedia using Creative Commons License: en.wikipedia.org Author: Unknown Image URL: en.wikipedia.org ( This work is in the Public Domain. ) Author: M stone Image URL: en.wikipedia.org ( Creative Commons ASA 3.0 )From:WikiPlaysViews:0 0ratingsTime:04:45More inEducation

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I love biochemistry: Pablo Izquierdo at TEDxYouth@Madrid – Video


I love biochemistry: Pablo Izquierdo at TEDxYouth@Madrid
Pablo loves science and he has a special passion for biochemistry. In this little class he teaches the audience how biochemistry explains the most interesting facts of life and responds to funny questions too.In thespirit of ideas worth spreading, TEDx is a program of local, self-organized events that bring people together to share a TED-like experience. At a TEDx event, TEDTalks video and live speakers combine to spark deep discussion and connection in a small group. These local, self-organized events are branded TEDx, where x = independently organized TED event. The TED Conference provides general guidance for the TEDx program, but individual TEDx events are self-organized.* (*Subject to certain rules and regulations)From:TEDxYouthViews:0 1ratingsTime:06:25More inEducation

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I love biochemistry: Pablo Izquierdo at TEDxYouth@Madrid - Video

The Instruction Manual for Kids – Testimonial – Video


The Instruction Manual for Kids - Testimonial
http://www.instructionmanual4kids.com http The Instruction Manual for Kids - Testimonial A testimonial to the new book -The Instruction Manual for Kids - written by Kerri Yarsley The Instruction Manual for Kids has been compiled from many years of personal experience, education, and trial and error gained in one of life #39;s most rewarding journeys. Kerri Yarsley has designed The Instruction Manual for Kids -- Parent #39;s Edition as a resource that can initially be read from start to finish allowing the reader to gain an appreciation of the over-arching strategy and philosophy of the guide. With clearly identified chapters on various stages of a child #39;s development and common challenges, the manual can then be used as quick reference guide for a reader #39;s current situation as the need arises. Kerri Yarsley was born in Melbourne, Australia back in the late 1950 prime;s and now resides in Queensland, Australia with her husband Frank and four children. Kerri and Frank wanted four children -- preferably boy, girl, boy, girl -- born close together so they would grow up sharing many of life #39;s experiences. Their wish was fulfilled with Sean, Amanda, Iain and Ella all born roughly two years apart and now aged from 18-24 years of age. Living with four incredibly different and wonderful kids under six years of age and raising them into independent and capable young adults has given Kerri a unique insight into the challenges and joys of balancing parenthood with the pursuit of one #39;s personal ambitions ...From:Kerri YarsleyViews:8 1ratingsTime:01:24More inEducation

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Step into Authenticity with Felicia Tomasko – Video


Step into Authenticity with Felicia Tomasko
Website: http://www.layogamagazine.com and http://www.ayurveda-caam.org Felicia Marie Tomasko is currently the editor in chief of LA YOGA Ayurveda and Health magazine, a position that combines her interests and passion in Ayurveda, Yoga, education and writing. She has been practicing yoga for over 20 years and teaching since 1997. It was yoga, and Deepak Chopra #39;s books that first introduced Felicia to Ayurveda, which she began studying in 1993. Her studies include the practitioner, pancha karma therapist, educator, yoga therapy and Ayurvedic mother and baby care programs at the Rocky Mountain Institute of Yoga and Ayurveda as well as at Alandi Ayurvedic Gurukula, both in Boulder, Colorado. She continues her studies with a number of different teachers and credits them for her implementation of the practice. Felicia #39;s additional background includes a degree in nursing and one in biology and work in integrative medicine, neuropsychology research, biochemistry research and journalism and writing. She is also on the board of directors of the National Ayurvedic Medical Association, the editorial board of Light on Ayurveda journal, and has a private yoga therapy and Ayurveda practice in Santa Monica and Santa Barbara, California. Get the whole series free at http://www.stepintoauthenticity.com Step into Authenticity without Alienating the World and Being Kicked off the Planet is an interview series by Alex Iglecia where mind body, conscious living and transformational experts and teachers give you ...From:Alex IgleciaViews:11 0ratingsTime:03:16More inHowto Style

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Insights into a Virus Proteome – Max Planck Scientists Identify Unknown Proteins of the Herpesviru

23.11.2012 - (idw) Max-Planck-Institut fr Biochemie

The genome encodes the complete information needed by an organism, including that required for protein production. Viruses, which are up to a thousand times smaller than human cells, have considerably smaller genomes. Using a type of herpesvirus as a model system, the scientists of the Max Planck Institute (MPI) of Biochemistry in Martinsried near Munich and their collaboration partners at the University of California in San Francisco have shown that the genome of this virus contains much more information than previously assumed. The researchers identified several hundred novel proteins, many of which were surprisingly small. The results of the study have now been published in Science. More than 80 percent of the worlds population is infected with the herpesvirus, which can cause severe diseases in newborns and in persons with weakened immune system. Researchers had already sequenced the herpesvirus genome 20 years ago, thinking they could then predict all proteins that the virus produces (virus proteome). Now scientists from the research department of Matthias Mann, director at the MPI of Biochemistry, and their American colleagues have analyzed the information content of the genome more precisely.

Small but highly complex

To carry out their study, the scientists infected cells with herpesvirus and observed which proteins the virus produced inside the cell over a period of 72 hours. In order for proteins to be produced at all, the cell machinery must first make copies of the genetic material as intermediate products (RNA). While investigating the intermediate products of the herpesvirus, the American collaborators discovered many novel RNA molecules which were in large part surprisingly short. They also found that the organization of information required for protein production in the virus genome was far more complex than previously assumed. Annette Michalski, a scientist in the Department of Proteomics and Signal Transduction at the MPI of Biochemistry, was subsequently able to confirm directly the predicted viral proteins in the infected cell using mass spectrometry. This method enables an overview of the complete proteome of the virus-infected cell.

The results of the American and German researchers provide detailed insight into the complex mechanisms used by the virus. We showed that its not enough merely to know the virus genome to understand the biology of the herpesvirus, Annette Michalski said. What is important is to look at the products actually produced from the genome. Even human genes may be much more complex than the genome sequence itself indicates, commented the researchers. Matthias Mann and his colleagues plan to investigate this question further in the coming years.

Contact: Prof. Dr. Matthias Mann Proteomics and Signal Transduction Max Planck Institute of Biochemistry Am Klopferspitz 18 82152 Martinsried Germany e-mail: mmann@biochem.mpg.de http://www.biochem.mpg.de/mann

Anja Konschak Public Relations Max Planck Institute of Biochemistry Am Klopferspitz 18 82152 Martinsried Germany Phone: +49 89 8578-2824 e-mail: konschak@biochem.mpg.de http://www.biochem.mpg.de function fbs_click() {u=location.href;t=document.title;window.open('http://www.facebook.com/sharer.php?u='+encodeURIComponent(u)+'&t='+encodeURIComponent(t),'sharer','toolbar=0,status=0,width=626,height=436');return false;} html .fb_share_link { padding:2px 0 0 20px; height:16px; background:url(http://www.eugenesis.com/wp-content/uploads/2012/11/29c1d78260e_icon.gif.gif?6:26981) no-repeat top left; } Share on Facebook Weitere Informationen: http://Further information: http://www.biochem.mpg.de/en/news/pressroom/086_Mann_HCMV.html http://www.biochem.mpg.de/mann (Research Department Proteomics and Signal Transduction) http://weissmanlab.ucsf.edu/ (Hompage of Weissmann Lab at UCSF) Anhang Press Release (PDF)

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Insights into a Virus Proteome - Max Planck Scientists Identify Unknown Proteins of the Herpesviru

New insights into virus proteome: Unknown proteins of the herpesvirus discovered

ScienceDaily (Nov. 23, 2012) The genome encodes the complete information needed by an organism, including that required for protein production. Viruses, which are up to a thousand times smaller than human cells, have considerably smaller genomes. Using a type of herpesvirus as a model system, the scientists of the Max Planck Institute (MPI) of Biochemistry in Martinsried near Munich and their collaboration partners at the University of California in San Francisco have shown that the genome of this virus contains much more information than previously assumed.

The researchers identified several hundred novel proteins, many of which were surprisingly small. The results of the study have now been published in Science.

More than 80 percent of the world's population is infected with the herpesvirus, which can cause severe diseases in newborns and in persons with weakened immune system. Researchers had already sequenced the herpesvirus genome 20 years ago, thinking they could then predict all proteins that the virus produces (virus proteome). Now scientists from the research department of Matthias Mann, director at the MPI of Biochemistry, and their American colleagues have analyzed the information content of the genome more precisely.

Small but highly complex

To carry out their study, the scientists infected cells with herpesvirus and observed which proteins the virus produced inside the cell over a period of 72 hours. In order for proteins to be produced at all, the cell machinery must first make copies of the genetic material as intermediate products (RNA). While investigating the intermediate products of the herpesvirus, the American collaborators discovered many novel RNA molecules which were in large part surprisingly short.

They also found that the organization of information required for protein production in the virus genome was far more complex than previously assumed. Annette Michalski, a scientist in the Department of Proteomics and Signal Transduction at the MPI of Biochemistry, was subsequently able to confirm directly the predicted viral proteins in the infected cell using mass spectrometry. This method enables an overview of the complete proteome of the virus-infected cell.

The results of the American and German researchers provide detailed insight into the complex mechanisms used by the virus. "We showed that it's not enough merely to know the virus genome to understand the biology of the herpesvirus," Annette Michalski said. "What is important is to look at the products actually produced from the genome." Even human genes may be much more complex than the genome sequence itself indicates, commented the researchers. Matthias Mann and his colleagues plan to investigate this question further in the coming years.

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New insights into virus proteome: Unknown proteins of the herpesvirus discovered

Ultimate makeover needed to make Philippines

By Joyce Socao-Alumno and Ramil Gulle Philippine Daily Inquirer

Long-time friends Dr. Vicky Belo (medical director) and Dr. Philip Buag (asst. medical director) are both hands-on in the operations of The Belo Medical Groups nine clinics.

There are those who say that Philippines has everything it needs to become Asias beauty capitalWestern-trained plastic surgeons and specialists in Aesthetic Medicine; advanced medical facilities; competent and caring nurses and other health professionals; lower cost of cosmetic and aesthetic procedures; proficiency in English; and relaxing, picturesque, tropical destinations for patients recovering from treatments.

While medical tourism in the Philippines has not taken off as soon as the healthcare industry has hoped, there is still a lot of optimism. The Philippine healthcare sectors biggest players continue to invest in technology, equipment, and quality professionals, believing in the countrys huge potential as a medical tourism destination.

Fortunately, while the Philippines growth as a medical tourism destination has been slow, it remains steady, consistent, and encouraging for investors. It would be good to look at the strengths that the Philippines possesses in terms of beauty, cosmetic, and aesthetic treatments as well as the challenges it needs to hurdle in order for it to become the beauty capital that the industry is aiming for.

Aesthetic centers

The Philippines top government and private hospitals are equipped with the most modern medical equipment available today. In general, the Philippines top hospitals would have equipment that are at par with, if not better, than hospitals in the US and Europe. Such equipment are acquired from the same top suppliers that the best hospitals in other countries also source from.

The countrys top hospitals are also accredited, or in the process of being accredited as conforming to international quality standards, by respected international bodies under the International Society for Quality in Healthcare (ISQua) like JCI; NABH International; and Accreditation Canada.

At least three major hospitals, Makati Medical Center; The Medical City; and St. Lukes Medical Center are all offering cosmetic, aesthetic, dermatological, and anti-aging treatments using the most modern equipment and the latest procedures. Their surgeons and other specialists are all board-certified, with many of them affiliated with medical organizations in the US.

Recent examples of how advanced Philippine hospitals have become include the upgrades done by The Medical City and Makati Medical Center. Both have recently established the most advanced stem cell facilities in the Philippines: The Medical Citys Institute for Personalized Molecular Medicine (IPMM) and the Makati Medical Centers Cellular Therapeutics Laboratory. These stem cell facilities process the stem cells used in their aesthetic and anti-aging treatments. Both facilities are at par with those found in the U.S. and Europe.

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Ultimate makeover needed to make Philippines

Step into Authenticity with Brad Yantzer – Video


Step into Authenticity with Brad Yantzer
Website: http://www.evolutionmovement.com Since 1990, Brad Yantzer has developed successful approaches to attaining optimal health safely, soundly, and naturally. He has schooled himself, both formally and informally, in how and why the body moves. His extensive training includes many disciplines bodybuilding and fitness training, nutrition, chiropractic studies, functional anatomy and movement studies, biomechanics, several styles of Yoga, Ayurveda, a form of Structural Integration called Kinesis Myofascial Integration, yoga-and-dance-and-breath-based movement modalities called GYROTONIC® and GYROKINESIS®, Medical Qigong and Visionary Craniosacral Therapy and injury prevention and therapy through movement, mobilization, and nutrition. He blends all of this physically-based learning knowledge with a deep understanding of the interplay of physical, psychological and energetic forces integral to every person, and their interplay with the physical body. Get the whole series free at http://www.stepintoauthenticity.com Step into Authenticity without Alienating the World and Being Kicked off the Planet is an interview series by Alex Iglecia where mind body, conscious living and transformational experts and teachers give you timeless wisdom and priceless action steps for you live more true to yourself today. Get the whole series free at httpFrom:Alex IgleciaViews:19 0ratingsTime:04:03More inHowto Style

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Step into Authenticity with Brad Yantzer - Video

World Renowned Stem Cell Therapist Lectures Around the World

(PRWEB) November 22, 2012

Dr. Joseph Purita, world renowned stem cell therapist and medical director of the Institute of Regenerative and Molecular Orthopaedics (IRMO), is giving lectures around the world on stem cell treatments and more. As a pioneer in laser orthopedic surgery and regenerative stem cell therapy, Dr. Purita is regularly invited to lecture for students, organizations, and colleagues around the globe. His lectures are highly sought after for their many insights into the exciting and growing field of stem cell and platelet rich plasma (PRP) therapy.

So far this year, Dr. Puritas lecture circuit has taken him to Mexico, Peru, South Korea, Los Angeles, and more. He has given lectures on the use of autogenous stem cells on orthopedic conditions, medicine lectures on stem cells and PRP injections, and more. Dr. Purita is currently in Moscow, Russia by the invitation of the Moscow Ministry of Health and the Peoples Friendship University School Medicine. Soon after, Dr. Purita is slated to lecture and perform cases in Brisbane, Australia at the Australian Sports Medicine Meeting.

Dr. Purita heads the renowned Institute of Regenerative and Molecular Orthopaedics. They are one of the few orthopedic practices on earth that utilize stem cell therapy and platelet rich plasma therapy with orthopedic surgery or in some cases, in lieu of surgery. Their regenerative medicine techniques include relief of pain and other symptoms in the joints, spine, and more. As Dr. Purita works to keep the Institute of Regenerative and Molecular Orthopaedics on the forefront of orthopedic practices, he also continues to lecture around the world and share his special knowledge of stem cell treatments and more.

About Stem Cell Orthopedic The Institute of Regenerative and Molecular Orthopaedics (IRMO) is a world-class orthopedic practice and stem cell facility staffed with seasoned board certified orthopedic surgeons. They differ from most orthopedic practices because they offer stem cells and platelet rich plasma (PRP) therapy in conjunction with surgery or as alternative to surgical procedures. They utilize state-of-the-art technology and the latest in stem cell research to best treat their patients. IRMO uses hematopoietic stem cells (HSC), which are found circulating in blood, fat, and bone marrow, to help repair the body. They are headed by Medical Director Dr. Joseph Purita, a world renowned pioneer in laser orthopedic surgery and graduate of the esteemed Georgetown University Medical School. For more information, visit http://www.stemcellorthopedic.com or follow them on Facebook or Twitter.

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World Renowned Stem Cell Therapist Lectures Around the World