The only one of the 220 different types of Human Cells that is not specialized is the Stem Cell.
Both human nerve cells and plant guard cells are specialized cells that have specific functions within their respective organisms. They both have membrane-bound structures that control the movement of substances in and out of the cell. Additionally, both cell types respond to external stimuli to carry out their functions.
Nerve Cells. 100% sure.
Spinal Cord
Blood cells are called erythrocytes (red blood cells), leukocytes (white blood cells), and thrombocytes (platelets). Nerve cells are called neurons.
is that are series pf specialised that are used for neuron functionality
sensory receptors - specialized nerve cells
Nerve cell, muscle cell, bone marrow cell.
simple sperm cell red blood cell nerve cell
red blood cell white blood cell root hair cell skin cell nerve cell
sympathetic
It is specialised by being a long thin cell that is insulated to carry electrical messages around the body. x When you hurt yourself e.g. burn yourself your immediate reaction is to get away from the heat, this is because we can sence pain due to our nerve cells which then carry an electrical message to your brain which then says to get away from the source of pain.
Both human nerve cells and plant guard cells are specialized cells that have specific functions within their respective organisms. They both have membrane-bound structures that control the movement of substances in and out of the cell. Additionally, both cell types respond to external stimuli to carry out their functions.
Connector nerve cells connect the sensory nerve cells with motor nerve cells and allow for decision making.
a nerve tends to refer to a group of nerve cells.
ganglion cells
Yes, dogs do have nerve cells.
Neurons are specialised animal cells responsible for transmitting electrical signals in the nervous system. Red blood cells are specialised animal cells that transport oxygen from the lungs to the rest of the body. Muscle cells are specialised animal cells that contract and generate force to allow movement in the body.