Cells
Nervous System
Brain
Imaging
Random
100

Name two parts of a neuron

cell body, dendrites, dendritic spines, axon hillock, axon, axon terminals

100
Name the two main parts of the nervous system

Central nervous system and peripheral nervous system

100

Describe where the anterior and posterior sides of the brain are

Anterior is the face portion, posterior is the back of the head

100

Name 2 types of imaging techniques

MRI, fMRI, PET, DTI, TMS, CT (CAT)

100

True of False: 

Myelin insulates an axon, making the neuron's signal travel slower

False. 


It allows the signal to travel faster. 

200

Name the input and output zones of a neuron

Input= dendrites

Output- axon terminals

200

Explain what a lesion study is

Damaging or removing a specific brain region in order to determine its function

200

Describe what the brain looks like during the embryonic period

a hockey puck like shape that is divided into the forebrain, the midbrain, and the hindbrain

200

Match description to the imaging technique

Imaging 

1) Diffusion tensor imaging (DTI)

2) PET

Description 

A) enables you to look at the strength of the collections of axons 

B) modified form of MRI in which diffusion of water in a confined space is exploited

C) decay of radioactive isotopes, allows you to see where specific neurotransmitters are being used in the brain

1) A & B

2) C

200

Name the 3 main approaches to studying neuroscience

Somatic intervention, behavioral intervention, and correlations

300

Name the 3 parts of a synapse

Presynaptic membrane, synaptic cleft (synapse), postsynaptic membrane

300

Name 3 types of stains and what they allow you to see

Golgi stain- neurons

Myelin stain- myelin

Nissl stain-cell bodies

Histochemistry- targets specific chemical to see where in the brain the chemical is located

Electron microscopy- interaction between neurons

Florescent stain- different types of cells

300

Name the entity that combines the two hemispheres of the brain and what it is made out of

Corpus callosum- bundle of neurons

300

Describe the difference between MRI and fMRI

MRI only shows you structure while fMRI allows you to see what areas of the brain are active during a particular task or function

300

Describe the difference between white and grey matter

White matter is the area where axons are located

Grey matter is the area where cell bodies are collected

400

Name the four types of glial cells discussed in class

astroyctes, microglia, oligodendrocytes, Schwann cells

400

Name the four main ways to study the nervous system

1) Visualization (stains)

2) Lesion/inactivation/activation

3) Pharmacological

4) Recording electrical activity

400

Name the 4 lobes of the brain

frontal, parietal, temporal, occipital
400

Describe how TMS works

involves the use of a magnet to activate or deactivate areas of the brain without being invasive, it all happens at the level of the scalp but it can only alter the activity of neurons near the surface of the brain

400

Name the 2 theories we have disccused in class and provide either the name of the person who invented each theory or explain the theories

Reticular theory- Golgi believed all neurons are connected to each other

Neuron doctrine- Cajal believed neurons are independent entities that communicate with each other


500

Name the function of all four glia cells discussed in class

astrocytes- structural/nutritive support

microglia- immune system cells, clean up and remove things that don't belong (debris, dead cells, toxic compounds, etc.)

oligodendrocytes- create myelin in CNS

Schwann cells- create myelin in PNS

500

Name 3 specific techniques one can use to study the nervous system and explain each one

Genetic lesions, optogenetic or chemogenetic methods, TMS, drug study, microdialysis, intracellular or extracellular recording, EEG, ERP

500

Name the 3 parts of the brain we have covered in class so far and what their functions are

Medulla- responsible for essential processes needed to stay alive (i.e. regulating breathing and blood pressure)

Pons- serves as a bridge, relaying sensory information to the brain and motor information to the body, also involved in sleep and arousal

Cerebellum- balance and coordination

500

Describe how fMRI works

It detects changes in blood flow by first using a giant magnet to polarize the brain and determine where there is low versus high water volume which allows you to distinguish differences in structure. It then measures blood oxygenation and uses it as a proxy to determine where there is higher metabolism in the brain and therefore which areas are more active

500

Describe anterograde and retrograde tracers

Anterograde- travels down the axon in the direction messages go within the same neuron, answers the question: who gets messages from this area

Retrograde- injection is picked up at the axon terminals and then travels up the axon to the cell body so you can see where the sources of this signal are, answers the question: who is sending messages here