the neural interface to prosthetics is particularly fascinating to me. i read a couple papers a while ago that showed that human muscle control is essentially highly orchestrated bangbang control. it was always confusing to me why we have such over actuated limbs, with thousands of muscle fibers per individual muscle that our brains actuate individually. what they showed was that each cluster connected to a particular nerve is either on or off, with our brains sending complex sequences of on and off to each fiber to perform motion, and our tendons essentially acting like filters to hold the tension and smooth out the motion so we arent super jerky.
the big takeaway to me though is that if we want to make the kinds of prosthetics that come close to replicating the utility of human limbs the actuators should be highly redundant bangbang systems the way our muscles are. my understanding is current mechatronic prosthetics use electric motors with continuous control of monolithic motors for each joint, which is very much not even close to how our brains control our bodies. i think the translation from what our brains do to that causes a lot of issues that would be solved by providing our brains with something closer to bangbang actuators.
one of the papers also showed that while we do use feedback from sensor neurons in our limbs, its actually pretty slow compared to some of the activities people perform, to the point where the action starts and ends before the feedback even reaches the brain. so basically our brains just perform those rapid actions open loop, and only use the feedback for learning after the event. isnt that fucking cool! that suggests that if we can just make actuators that respond similarly to muscles and connect them with existing nerves we could leverage this system to get pretty far along the way to people having fine motor control over prosthetics, even without all the feedback, and potentially completely analog with no microcontrollers required. people just might need to look at their limb while theyre doing stuff, especially during the early neural training when theyre figuring out how to move it.