Composite lower extremity injuries, characterized by open bone fractures with soft tissue damage, frequently result in delayed or failed fracture unio
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[title] => Engineered muscle drives bone repair and functional healing after composite musc
[paragraph] => Engineered muscle drives bone repair and functional healing after composite musculoskeletal injury
[content] => Authors
Cynthia A. Alcazar-Daleo, Krista M. Habing, Austin W. Ricci, Grace E. Privett, Damien M. Callahan, Julia Andraca Harrer, Victoria R. Duke, Nick J. Willett, Zachary M. Working, Yong How Tan, Joshua C. Vanderpool, Julissa Ortiz-Delatorre, Anthony Tahayeri, Luiz E. Bertassoni, Karina H. Nakayama
Lab
Journal
Biomaterials
Abstract
Composite lower extremity injuries, characterized by open bone fractures with soft tissue damage, frequently result in delayed or failed fracture unio
Keywords/Topics
engineered muscle; bone repair; functional healing; open bone fractures; soft tissue damage; paw weight distribution; dwb2 software
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[name] => Dynamic Weight Bearing 2.0
[description_short] => The advanced version of our Dynamic Weight Bearing Test for rodents (rats and mice) allows for faster paw identification, based on a video solution taking advantage of the most advanced algorithms of morphologic analysis, weight distribution and postural changes in dynamic conditions. An efficient and advanced alternative to traditional incapacitance tests (i.e. the paw pressure test or the force plate test) for assessing pain sensitivity in your research on analgesia, hyperalgesia and nociception involving rats and mice, including work on osteoarthritis, bone cancer, analgesic substances, Parkinson disease, allodynia...


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