Motor impulses travel from the brain through the spinal cord via motor neurons. When the brain sends a signal, it activates these neurons, which then transmit the impulse to muscle fibers at the neuromuscular junction. This process induces muscle contraction, allowing movement. The entire pathway relies on electrical signals and neurotransmitter release to facilitate communication between the nervous system and muscles.
Motor impulses travel through the body via the nervous system, primarily through motor neurons. When a signal is initiated in the brain or spinal cord, it travels down the axon of the motor neuron, which extends to the target muscle. At the neuromuscular junction, the impulse triggers the release of neurotransmitters, causing muscle fibers to contract and produce movement. This process allows for coordinated actions and responses throughout the body.
Motor impulses are initiated in the brain and travel down the spinal cord through motor neurons. When a signal reaches the end of a motor neuron, it triggers the release of neurotransmitters at the neuromuscular junction, which stimulates muscle fibers to contract. This process enables coordinated movement by transmitting signals from the central nervous system to various muscles throughout the body. The entire pathway involves electrical signals along neurons and chemical signals at synapses.
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The impulse has to cross over a synapse to another neuron or an effector.
Motor Cortex
Motor impulses travel through the body via the nervous system, primarily through motor neurons. When a signal is initiated in the brain or spinal cord, it travels down the axon of the motor neuron, which extends to the target muscle. At the neuromuscular junction, the impulse triggers the release of neurotransmitters, causing muscle fibers to contract and produce movement. This process allows for coordinated actions and responses throughout the body.
Yes, motor nerves are responsible for stimulating muscle movement. They transmit signals from the central nervous system to muscle fibers, leading to contraction and movement. When a motor nerve impulse reaches a muscle, it triggers the release of neurotransmitters at the neuromuscular junction, which initiates muscle contraction. This coordinated process allows for voluntary and involuntary movements throughout the body.
Motor impulses are initiated in the brain and travel down the spinal cord through motor neurons. When a signal reaches the end of a motor neuron, it triggers the release of neurotransmitters at the neuromuscular junction, which stimulates muscle fibers to contract. This process enables coordinated movement by transmitting signals from the central nervous system to various muscles throughout the body. The entire pathway involves electrical signals along neurons and chemical signals at synapses.
The circulatory system helps move oxygen throughout your body.
An impulse move in dance is when the dancer "tweaks" his or her body suddenly. These movements look like sudden jerks or twitches.
cause the body to move.
cause the body to move.
cause the body to move.
It controls the axis and atlas which is connected to your vertebrae. This allows your head to move up and down and also right to left. It helps you move youre body in many directions and controls sending messages throughout your entire body.
Motor proteins help move organelles throughout the cell. Proteins always give energy, both in the human body system and within microscopic cells.
Skeletal muscles are controlled by nerves from the Peripheral Nervous System. This causes the muscles to contract when they receive the messages transmitted along motor neurons, originating in the motor areas of the cerebral cortex. The axons of these motor neurons extend out to the muscle where it divides and goes to different muscles. The motor pathways that carry the nerve impulse from brain to muscle are composed of two neurons: - Upper motor neurons --> (cell body in the brain) - Lower motor neurons --> (cell body in the grey matter of the spinal cord) When a nerve impulse initiates the contraction of a skeletal muscle, it results in movement about a joint. Hope this helped :)
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