Yes or No.I have no idea
Sensory neurons carry electrical signals from sensory receptors to the brain. These neurons are responsible for transmitting information about external stimuli such as touch, taste, smell, vision, and sound to the brain for processing.
The nervous system carries messages between the brain and the body. This is done through a network of neurons that transmit electrical and chemical signals. Sensory neurons carry messages from the body to the brain, while motor neurons carry messages from the brain to the body to control movement and response.
The neurons that carry messages to the brain are called sensory neurons. They transmit information from sensory receptors in the body to the brain for processing and interpretation.
Nervous tissue, specifically neurons, carry electrical impulses from the brain to other parts of the body. These neurons transmit information in the form of electrical signals known as action potentials.
Nerve cells, or neurons, are specialized cells that carry messages through an electrical process in the brain. The brain contains about 100 billion neurons.
neurons
The nervous system carries messages to and from the brain through a network of neurons. Sensory neurons carry information from the body to the brain, while motor neurons carry signals from the brain to the body to control movement and other functions.
Sensory neurons carry sensory information from the body to the brain, while motor neurons carry signals from the brain to the body to control movement. Monitor neurons are specialized neurons that help regulate and coordinate the activity of other neurons in the nervous system.
afferent neurons
Well not neurons, there are nerves in the spine. Neurons exist in the brain. With that being said, yes the spine is made of nerves that carry electrical impulses from every region of the body to the brain and from the brain to the body.
Nerves in the backbone carry messages through electrical signals sent by neurons. These neurons transmit information from the brain to the rest of the body and vice versa, allowing for communication and coordination of bodily functions.