
In perhaps the crowning achievement of a decade of work, a group of Harvard University researchers have identified the specific protein responsible for calcium absorption in mitochondria, solving a long-standing and crucial problem for our understanding of an essential cellular component.
Drawing on resources such as "the Human Genome Project, freely downloadable genomic databases, and a few tricks," as Vamsi Mootha, the project leader and associate professor of systems biology at Harvard Medical School, put it, the project represents a significant step forward for the field and should open the door to treatment of a number of diseases thought to be related to calcium deficiency in mitochondria. Particularly remarkable about the study is its synthesis of recently-developed cellular and genomic technologies to solve the problem.
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The NIH has just announced that the Electronic Medical Records and Genomics (eMERGE) consortium of seven US medical research institutions has received an additional $25M in funding for Phase II of a series of projects to study how genetic information in patients' medical records can be used to improve their care. As genome sequencing becomes increasingly affordable and more widely done, translational research is needed to show physicians how they might respond to indicators of genetic predisposition to disease in their treatment programs. The eMERGE network was formed in 2007 "to develop, disseminate, and apply approaches to research that combine DNA biorepositories with electronic medical record (EMR) systems for large-scale, high-throughput genetic research," according to the National Human Genome Research Institute (NHGRI) branch of the NIH.
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The Center of Bioengineering Innovation & Design at Johns Hopkins University has recently received the honor to boast the first place winner of the 2011 ASME IShow: a competition inspiring students to invest in their own innovation and entrepreneurialism to develop a sustainable business model of a medical, technological, or robotic nature.
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Recently, Harvard scientists took on the challenge of expanding the catheter's capabilities to address specific requirements of open heart surgery while simultaneously offering a significantly less invasive approach to complex cardiac procedures.
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This story not only amazed us but brought home how important the work of researchers and medical equipment technology developers is in real time, right now, for saving the lives of actual people. Read the update below, too. -- 12/23/2011
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At this time of year especially, our hearts seem to go out all the more to those in need, which is why we like this blog, which we've updated with a recent video which should bring a smile to your face. Please consider donating your excess inventory in 2012! --updated(12/23/2011)
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When the President launched the Advanced Manufacturing Partnership (AMP) last month, a key component was the National Robotics Initiative (NRI), which will pool the resources of multiple government agencies to support the development of robots designed to augment the work and health of human beings. These are known as assistive systems, in contrast to the totalitarian robots of science fiction dystopias that threaten to supplant humans.
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Innovation is described as "the creation or improvement of products, technologies, and ideas", and is the core reason education, the economy, and society progress from simple forms to more sophisticated and complex organisms.
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In a speech given at Carnegie Mellon University in Pittsburgh on June 24, President Obama announced the launch of the $500M Advanced Manufacturing Partnership (AMP) between university research science, government agencies, and industry to increase investment in technologies that create 21st Century manufacturing jobs here in the United States. In addition to Carnegie Mellon, the research institutions involved in the initiative are: the University of Michigan, the University of California-Berkeley, MIT, Stanford, and the Georgia Institute of Technology.
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Update your Rolodex: the Departments of Anatomy, Physiology, and Pharmacology at the University of Wisconsin-Madison Medical School no longer exist. With an eye to streamlining infrastructure costs and keeping up with the latest directions in biomedical research, the three former departments have been rolled into two new entities: the Department of Neuroscience and the Department of Cell and Regenerative Biology.
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