TRUE
The specialized cell that conducts impulses through the nervous system is called a neuron. Neurons are the building blocks of the nervous system and are responsible for transmitting electrical and chemical signals throughout the body to enable communication between different parts of the body.
The nervous system contains millions of nerve cells, or neurons. Neurons are highly specialized to transmit messages from one part of the body to another.
The nervous system contains millions of nerve cells, or neurons. Neurons are highly specialized to transmit messages from one part of the body to another.
The cells that transmit nerve impulses in the nervous system are called neurons. Neurons are specialized cells that are capable of generating and conducting electrical signals throughout the body. They form the basic building blocks of the nervous system and are essential for communication between different parts of the body.
Neurons are the conducting cells of nerve tissue. The neurons transmit the electrical charges and chemical signals via the synapses.
Nerve cells, or neurons, are specialized cells that carry messages through an electrical process in the brain. The brain contains about 100 billion neurons.
nervous tissue
Yes, it's the nerve cells, also known as neurons, that communicate and do everything else that the nervous system does.
The specialized cell in the nervous system that conducts signals is called a neuron. Neurons are responsible for receiving, processing, and transmitting information through electrical and chemical signals.
Nervous tissue is specialized for the conduction of impulses, specifically through neurons which transmit electrical signals throughout the body. This tissue is critical for communication within the body and enables functions such as movement, sensation, and cognitive processes.
A somatic system
The main cell type found in nervous tissue is the neuron. Neurons are responsible for transmitting electrical signals within the nervous system and are specialized for communication through both electrical and chemical signals.