Examples of using The motor cortex in English and their translations into Vietnamese
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Colloquial
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Ecclesiastic
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Computer
In a real golf swing,this would also be the case for the motor cortex.
Muscles: Caffeine may impact the motor cortex, which is a part of the brain that signals muscle activation(11).
It turns out people randomly"decides" what to do, based on the state of the motor cortex?
It's much easier to implant electrodes in the motor cortex than in the spinal cord, because it's protected by the vertebrae.
This activity occurs about a second before you actually move andcan be identified by EEG signals from the motor cortex.
Classically the motor cortex is an area of the frontal lobe located in the posterior precentral gyrus immediately anterior to the central sulcus.
And when they had reached a plateau of performance,we did a lesion in the motor cortex corresponding to the hand motion.
The motor cortex is the region of the cerebral cortex involved in the planning, control, and execution of voluntary movements.
So Motts is doing something here, and probably he is going like this with his right hand,because the left side is activated on the motor cortex.
Contrary to this view, the Pope and Siegel indicates that the motor cortex of the brain also plays a role in shaping decisions.
They were able to focus on the motor cortex and disrupt their deep sleep, thus investigating the impact that poor sleep has on the neuroplasticity involved in practicing new movements.
They showed that the forthcoming decision enginecan be predicted based on the state of the motor cortex before forming solutions.
When a patient with damage to the motor cortex on the brain's left hemisphere attempts to smile,the smile is asymmetrical, with the right side of the smile not moving as it should.
Hypothalamus here, that's the DI and incontinence, they mingle here,that's the global amnesia, and the motor cortex, that's the foot paralysis.
An FM device in the cortex of the brain, the motor cortex, will send signals in real time to the motor points in the relevant muscles so that the person will be able to move their arm, let's say, in real time, if they have lost control of their arm.
They each had one ortwo baby-aspirin-sized electrode arrays placed in their brains to record signals from the motor cortex, a region controlling muscle movement.
He then went through four months of training, thinking about the turn of the wrist or grip of the fingers that he needed in order to bring about the movement of a virtual reality arm,so that the computer could recognise the necessary signals from the motor cortex.
Other projects sought to induce or prevent sleep,or to affect the signal from the motor cortex portion of the brain, overriding voluntary muscle movements.
An intracortical BCI uses a tiny silicon chip, just over one-sixth of an inch square, from which protrude 100 electrodes that penetrate the brain to about the thickness of a quarter andtap into the electrical activity of individual nerve cells in the motor cortex.
It's a thought in my brain, but at the same time, it's busy secreting acetylcholine anddoing all sorts of other things as it makes its way from the motor cortex down through the nerve fibers in the arm.
And these input signals coming fromdescending modulation from higher parts of the brain, like the motor cortex, the cerebellum, the basal ganglia, will all modulate activity of the spinal cord while we do locomotion.
More specifically, the new study- published in the journal Nature Communications- looks at the brain's ability to change and adapt in response to the stimuli that it receives from the environment,or neuroplasticity, in the motor cortex and how it is affected by deep sleep.
Using this method, for example, the“motor homunculus” was investigated- it was shown that,by stimulating certain points in the motor cortex, one could induce hand movement, stimulating other points- leg movements, etc.
Each spinal nerve carries both sensory and motor information, i.e. efferent(anatomy)| eferrentand afferent-ultimately via the motor cortex in the parietal cortex- but also through the phenomenon of reflex.
Sleepwalking happens when some parts of our brain,particularly the limbic system(responsible for emotions) and the motor cortex(responsible for complex motor movements) are awake, whilethe rest of the brain is asleep.
In anatomy, the extrapyramidal system is a part of the motor system network causing involuntary actions.[1]The system is called extrapyramidal to distinguish it from the tracts of the motor cortex that reach their targets by traveling through the pyramids of the medulla.