“What inspires me about engineering is everything that’s happening at the intersection of engineering fields. You have to use all the tools at your disposal, all your experiences, to create novel, cutting-edge work.” — Janelle Kaneda, Coterm MS ’21, BioE https://t.co/z8RHWWIc0s
Krithika is continuing her study of movement & injury risk at @StanfordNMBL, now focusing on ACL injuries. Thanks to Julie Thompson-Kolesar, Julie Muccini, and @JanelleKaneda for making the demos happen.
Congrats to Hannah Heigold, @JanelleKaneda and their team for their award-winning demo at the Innovation and Discovery Expo@Clark @StanfordBioX. Their StaBLE project uses OpenCap to help them understand how to quantify balance performance & optimize balance health for all.
Excited to have presented our latest research on multiscale hamstring and regional hypertrophy adaptations to eccentric training at #ISB2023 in Fukuoka 🇯🇵 Thanks to @nmbl and @UQHealth for this incredible opportunity! #JSB#ISBJSB2023@ISBiomechanics#Biomechanics#hamstrings
Want to run marathons or climb Mt. Fuji when you're 60? A key step is understanding how energy flows through the body. That's easier with interactive 3D visualizations that run in your browser: https://t.co/eTuNBC4Gfy Check out our workshop WS6 at #ASB2023 to make your own!
🚶🏻♀️ We hope our publication can provide benchmark accuracies for musculoskeletal simulation researchers & support the use of static optimization as a tool for evaluating gait modifications for knee osteoarthritis.
Data: https://t.co/WTAX61AP4y (3/3)
👣 We evaluated 115 steps of different gait modifications from three people with instrumented knee replacements.
↕️ Static optimization correctly detected the direction of change with >70% accuracy for changes in early-stance medial knee contact force >0.1 bodyweights. (2/3)
Now on YouTube! Biomechanics of Movement course videos from @Stanford Professor Scott Delp and @uOttawa Professor Tom Uchida.
Watch now: https://t.co/FzIhwqkU3F
Learn about the accompanying lectures, textbook, and homework problems on https://t.co/2OXyAXeGDZ
#biomechanics
Humans can learn new muscle coordination patterns that reduce knee contact force.
Our new paper in Scientific Reports: https://t.co/xUzTg4BgjZ. Thanks to fantastic co-authors: Rachel Jackson, Ajay Seth, Julie Kolesar, Scott Delp. @StanfordNMBL@MobilizeCenter@OpenSimSU (1/6)
I am excited to share a new publication that would not have been possible without a fantastic collaboration between engineers, clinicians & participants. A gait modification that reduces knee loading in patients with knee OA, does not increase surrogate measures of hip loading.