Flexible Corticospinal Control of Muscles

Flexible Corticospinal Control of Muscles

by Najja Marshall

Browse books you can read free on Readfeed

No club is reading this yet — be the first to start one

Start a club free
About
The exceptional abilities of top-tier athletes – from Simone Biles’ dizzying gymnastics to LeBron James’ gravity-defying bounds – can easily lead one to forget to marvel at the exceptional breadth of everyday movements. Whether holding a cup of coffee, reaching out to grab a falling object, or cycling at a quick clip, every motor action requires activating multiple muscles with the appropriate intensity and timing to move each limb or counteract the weight of an object. These actions are planned and executed by the motor cortex, which transmits its intentions to motoneurons in the spinal cord, which ultimately drive muscle contractions. A central problem in neuroscience is precisely how neural activity in cortex and the spinal cord gives rise to this diverse range of behaviors. At the level of spinal cord, this problem is considered to be well understood. A foundational tenet in motor control asserts that motoneurons are controlled by a single input to which they respond in a reliable and predictable manner to drive muscle activity, akin to the way that depressing a gas pedal by the same degree accelerates a car to a predictable speed. Theories of how motor cortex flexibly generates different behaviors are less firmly developed, but the available evidence indicates that cortical neurons are coordinated in a similarly simplistic, well-preserved manner. Yet a potential complication for both these old and new theories are the relative paucity of diverse behaviors during which motor cortex and spinal motoneurons have been studied. In this dissertation, I present results from studying these two neuronal populations during a broader range of behaviors than previously considered. These results indicate, in essence, that diverse behaviors involve greater complexity and flexibility in cortical and spinal neural activity than indicated by current theories.

Discuss Flexible Corticospinal Control of Muscles with other readers

Join or start a book club for Flexible Corticospinal Control of Muscles on Readfeed. Live chat, shared reading progress, and AI discussion questions — free to get started.

Frequently asked questions

How do I join a book club for Flexible Corticospinal Control of Muscles?

Sign up free on Readfeed, then browse public clubs or start your own club with Flexible Corticospinal Control of Muscles as the current read. Invite friends with a share link and discuss together with live chat and AI discussion questions.

Can I discuss Flexible Corticospinal Control of Muscles with other readers online?

Yes. Readfeed book clubs let you chat live, share progress, and join discussions about Flexible Corticospinal Control of Muscles with readers worldwide — whether your club is virtual, in-person, or hybrid.

Is Readfeed free?

Yes. Creating an account and joining book clubs is free. Sign up to find readers who love the same books and start discussing today.