Author:
Taylor Cameron R.,Yeon Seong Ho,Clark William H.,Clarrissimeaux Ellen G.,O’Donnell Mary Kate,Roberts Thomas J.,Herr Hugh M.
Abstract
Muscle tissue drives nearly all movement in the animal kingdom, providing power, mobility, and dexterity. Technologies for measuring muscle tissue motion, such as sonomicrometry, fluoromicrometry, and ultrasound, have significantly advanced our understanding of biomechanics. Yet, the field lacks the ability to monitor muscle tissue motion for animal behavior outside the lab. Towards addressing this issue, we previously introduced magnetomicrometry, a method that uses magnetic beads to wirelessly monitor muscle tissue length changes, and we validated magnetomicrometry via tightly-controlled in situ testing. In this study we validate the accuracy of magnetomicrometry against fluoromicrometry during untethered running in an in vivo turkey model. We demonstrate real-time muscle tissue length tracking of the freely-moving turkeys executing various motor activities, including ramp ascent and descent, vertical ascent and descent, and free roaming movement. Given the demonstrated capacity of magnetomicrometry to track muscle movement in untethered animals, we feel that this technique will enable new scientific explorations and an improved understanding of muscle function.
Funder
Salah Foundation
MIT Media Lab
National Institutes of Health
National Science Foundation
Subject
Biomedical Engineering,Histology,Bioengineering,Biotechnology
Cited by
9 articles.
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