yes
Nerve impulses are electrical signals.
Nerve impulses are carried by electrical signals called action potentials. These signals are propagated along the axon of a neuron through changes in the flow of ions such as sodium, potassium, and chloride.
Neurons carry nerve impulses in the form of electrical signals. These signals are generated by changes in the electrical charge of the cell membrane, allowing for communication between neurons and other cells in the body.
Nerve cells, or neurons, are specialized to receive and transmit electrical impulses throughout the body. They have structures called dendrites that receive signals from other neurons, and an axon that transmits signals to other cells. Neurons have a membrane potential that allows them to generate and transmit electrical impulses known as action potentials.
no you give an answer im the one that asked the question
Nerve cells can transmit electrical impulses throughout the body.
The signals generated by the rods and cones in the retina are carried into the brain by the optic nerve. These photoreceptor cells convert light into electrical impulses, which are then transmitted through a network of neurons within the retina before reaching the optic nerve. From there, the signals travel to the visual cortex in the brain, where they are processed to form images.
Impulses carried by the olfactory nerve are for the sense of smell.
The electrical signals nerve impulses carried by some neuron are passed on to other the signals carried by some neuron transmitter excite the target cells while nerve cells sometimes extend the whole length of the spinal cord connect sensory nerves are over bearing.
It's Sodium and Potassium are necessary for the transmission of nerve impulses
The advantage of saltatory conduction in nerve impulses is that it allows for faster transmission of signals along the nerve fibers. This is because the electrical impulses "jump" from one node of Ranvier to the next, rather than traveling continuously along the entire length of the nerve fiber. This speeds up the transmission of signals and conserves energy for the nerve cell.
Nerves use electrical impulses to transmit signals to the brain. The gaps between the nerve endings are called synapses.