+ All Categories
Home > Documents > Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ......

Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ......

Date post: 25-Aug-2018
Category:
Upload: lymien
View: 238 times
Download: 0 times
Share this document with a friend
25
Introduction to Sensory Physiology: Sensory- Motor System
Transcript
Page 1: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Introduction to Sensory Physiology: Sensory- Motor System

Page 2: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

General Properties of Sensory Systems?????

Page 3: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

1.  Importance of peripheral structures 2.  Adequate Stimulus 3.  Range Fractionation 4.  Stimulus-Response Relationship 5.  Adaptation 6.  Efferent Control 7.  Higher level processing for perception (what you “see” is not what you get- Illusions!)

General Properties of Sensory Systems

Page 4: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

MROS in parallel with superficial extensors

Crustacean muscle receptor organs

Device to control muscle length with variable loads Works like our muscle spindles

See Rydqvist et al 2007 other refs?

Page 5: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent
Page 6: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent
Page 7: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Example Recording from Crawdad

Page 8: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

MRO1 response

Page 9: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

MRO1 data analysis http://crawdad.cornell.edu/gprime/apps/crawdad3/crawdad3.html

Page 10: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Compare tau adaptation at different stretches

Page 11: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Anatomy of MROs

Extensor muscles, especially note RM1 and RM2

Page 12: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Nerve 2 position

Muscle remaining in tail segment

Page 13: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

MRO innervation- excitatory mns and inhibition of sensory cell

Page 14: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

MRO1- diffuse dendritic arbor Fires throughout stimulation

Page 15: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

MRO2- clumped dendritic arbor

Fires only a few spikes at beginning

Page 16: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

stretch

MRO cell body Stretch channel open probability

Page 17: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Mechanisms of Adaptation: 1) Series-elastic properties of muscle 2) MRO1- slow adaptation- IK (Ca), Na/K pump 3) MRO1 and MRO2 have similar generator potentials 4) MRO2 adapts more quickly to depolarization faster INa inactivation

Page 18: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Control system summary of MRO activity

Set point can vary

Page 19: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Response to stretch- Intracellular recording

Generator (receptor) potential

Page 20: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Linear relationship between generator potential amplitude and impulse frequency

Receptor potential

AP generation

+ TTX

200-500 microns

Page 21: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Na entry dominates response

Excitatory conductance increase

I = g (Em - E ion)

Page 22: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Inhibitory, efferent control of MRO

Page 23: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Inhibitory conductance increase

I = g (Em - E ion)

I = g (Em - E ion)

Page 24: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Mechanisms of inhibition? Reduce AP generation by: 1) Algebraic summation of

excitation and inhibition 2) Reduction of space constant

Page 25: Introduction to Sensory Physiology: Sensory- Motor … · Introduction to Sensory Physiology: ! ... 3. Range Fractionation! 4. Stimulus-Response Relationship! 5. Adaptation! 6. Efferent

Summary of MRO

Rydqvist,et.al 2007


Recommended