4.12 - Embodied Models of Brain Function Flashcards

You may prefer our related Brainscape-certified flashcards:
1
Q

How can coarse anatomy explain simple behavior?

A

Coarse anatomy can explain simple orientational behaviors, called ‘taxes’, such as phototaxis (orienting towards light), phonotaxis (orienting towards sound), chemotaxis (orienting towards chemical concentration)…

Braitenberg vehicles are examples of how simple anatomy can lead to interesting behaviors when embedded in the sensorimotor loop.

One example is called “Fear”, a vehicle that has two sensors that excite two motors, ipsilaterally. Upon getting closer to a light source, the vehicle will accelerate and move away from the source.

If the two sensors inhibit motors contralaterally, we can talk about being attracted by light.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
2
Q

What are muscle synergies?

A

A muscle synergy is a group of muscles and their skeletal constraints that contribute to a particular (stereotypical) movement.

Muscle synergies reduce the dimensionality of muscle control. Single synergies activate multiple muscles.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
3
Q

Explain the role of transformations in sensorimotor loops.

A

Sensorimotor coupling is the loop between the sensory system and the motor system that is closed via the environment.

This integration allows an animal to transform sensory information (e.g. sight) into motor behavior.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
4
Q

What is a linear system?

A

A linear system is a system that obeys the additivity and the homogeneity properties.

additivity:

f(x+y) = f(x) + f(y)

homogeneity

f(a.x) = a . f(x)

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
5
Q

What are two ways you can test whether a function is linear?

A

1) A quick test; multiplying the input with some number k, and checking whether the output is scaled with the same ratio.
2) The superposition princple; for all linear systems, the net response caused by two or more stimuli is the sum of the responses that would have been caused by each stimulus individually. That is, if input A produces response X and input B produces response Y then input (A + B) produces

response (X + Y).

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
6
Q

What are decussations?

A

Decussations are fiber crossings that connect non-homologous areas of the brain. Such as sensors and actuators.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
7
Q

What is a ‘system’?

A

def 1. A system is something that converts input to output (animals, cameras, computers).

def 2. (etymology) A system is a ‘whole’ made of ‘parts’

(Figure: a black box converting stimulus to a response)

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
8
Q

What concept is depicted in this figure?

A

a “system”

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
9
Q

What are sensorimotor loops?

A

The idea that motor actions create specific feedbacks to the sensory systems.

Another way to say this is that the embodiment of the brain necessitates certain aspects of the feedback.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
10
Q

What is the importance of embodiment?

A

To explain brain function one often needs to include the body as part of the explanation.

Examples include the curvature of eyeballs related to visual processing. Distance between eyes is related to parallax and estimation of distances. The inertia (mass) of the arm is required to explain grasping.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
11
Q

What is non-linearity?

A

It is any deviation from a linear relationship between input and output of a system.

Common non-linearities in neural systems include ‘saturations’ and ‘thresholds’.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
12
Q

What is a sensorimotor contingency?

A

It is a quantifiable and predictable relationship between motor action and its sensory consequence.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly