Neuron Structure
Neuron Structure 2
Action Potential
Neural Communication
Neuron Functions
100

Contains support structures 

soma

100

structure consisting principally of lipid molecules that defines the outer boundaries of a cell

membrane
100

Phospholipid bilayer that separates intracellular fluid from extracellular fluid

Neuron cell membrane

100

A change in the membrane potential making it more negative (less positive)

hyperpolarization

100

Different shapes of neurons reflect their function (true or false) 

true

200

Receive input from terminal buttons of other neurons

dendrites

200

microtubules and other protein fibers, linked to each other and forming a cohesive mass that gives a cell its shape

cytoskeleton 

200

A change in the membrane potential making it more positive (less negative)

depolarization

200

excitatory and depolarizes the membrane

Excitatory postsynaptic potential (EPSP)

200

large, have long axons, and stimulate muscles

motor neurons

300

 Carries information (Action Potential)

axon

300

viscous, semiliquid substance contained in the interior of a cell

cytoplasm 

300

Voltage gated Na+ (sodium) channels are in an inactive state

Absolute period

300

inhibitory and hyperpolarizes the membrane

Inhibitory postsynaptic potential (IPSP)

300

have various shapes that best respond to specific environmental stimuli, such as light, odor, or touch

sensory neurons

400

Release neurotransmitters

terminal buttons

400

A stronger than usual stimulus can initiate an AP

relative period

400

allow positively charged ions to enter the cell, making it more positive

ESPS

400

have tiny axons and analyze input from one set of neurons and communicate with others

interneurons

500

Junction between terminal button of axon and membrane of another neuron

Synapse

500

Principle that once an action potential is triggered in axon, it is propagated, without decrement, to end of fiber

All-or-none law

500

Provide Structural and functional support for neurons

glial cells