When speaking about cryptography, one likely imagines a military or computerized setting, where a group of people tries fervently to decipher the coded messages of their enemy in order to gain valuable intelligence. But the same thing is happening in labs at the University of Michigan, Ann Arbor, only with microbiologists cracking the code of cancer cells.
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By this point, most Americans are familiar with the gelatinous yellow pill harked by many as a critically necessary supplement. Fish oil pills, packed with omega-3 fatty acids, are sold in many grocery stores and can be found in even more households nationwide. At Michigan State University, bioresearchers are delving deeper into the effects of fish oil on the body. What they have found may sound a little surprising at first: fish oil can increase immunity in people with certain health conditions.
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Michigan State University is helping to make East Lansing a highly funded market for biotechnology vendors and lab suppliers in Michigan, according to the latest NIH and NSF research funding statistics. In 2012, the NIH awarded Michigan State University $46.1 million in research funding. The money will go towards a number of research projects across various departments at the university. We have broken down the number of projects awarded money in each science research discipline and the total amount of funding for those projects in the list below:
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In a potentially dangerous situation, many animals release stress hormones into the body to prepare the animal for raw survival. Sometimes these evoke defense mechanisms and sometimes they assist in fleeing from danger, hence the idea of a “fight or flight” response. Now, research at the University of Michigan, Ann Arbor shows that tadpoles instead choose a third option: physical transformation.
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The National Eye Institute, an NIH agency dedicated to vision research, recently announced the winners of their Challenge to Identify Audacious Goals in Vision Research and Blindness Rehabilitation, or the Audacious Goals Challenge for short. The competition was open to professionals and members of the public and called upon them to think big and bold about vision research goals for the next decades. The prize money was nominal ($3,000) but included an invitation and travel money to attend and present their ideas at the NEI Audacious Goals Development Meeting in Maryland later this month. The real prize, of course, was the opportunity to help set research and funding goals for the next 10-12 years. Of the 500 or so proposals submitted, 10 visionaries were selected as winners.
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With the North American drought ended last year according to the USDA, it still affects parts of the United States and dries out plant life in its wake. The drought reached 80 percent of the country’s agricultural land, and many of the impacts of the stunted food production will be felt this year at supermarkets and restaurants. It’s no surprise, then, that a large question in agricultural biotechnology is how to more effectively combat drought for the present and future. This is where Michigan State University shines, presenting a way for plants to make even better use of the water they receive.
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The University of Michigan at Ann Arbor is one of the most richly funded markets in the country for biotechnology vendors and lab suppliers, as recent NIH and NSF research funding statistics show. In 2012, the NIH gave the University of Michigan $456.3 million in research funding. The money has been awarded to various departments for research projects including:
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Dependence on fossil fuels has been a hot topic for decades now. Several United States presidents have urged that we step away from oil and utilize other natural resources. Now, a partnership between Michigan State University at East Lansing and Luleå University of Technology in Sweden is working on just that. Their plan for alternative energy comes from a biomaterial produced from agricultural residue called butyric acid.
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Earlier this week, we discussed the commercialization of neural interface chips at the University of Utah. Meanwhile, at the University of Michigan at Ann Arbor, researchers are innovating in neuroscience on an even smaller scale. A new, slimmer electrode allows for the more precise studying of individual neurons and promises insight on the workings of the mind based on the interactions between neurons and the brain.
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Michigan State University at East Lansing is priming plants to cope with two very different adversaries: hostile insects on Earth and the stressful conditions of space. Rather than furnishing them with armor or a spacesuit, researchers are working at the molecular level in order to make these plants more genetically hardy.
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