intensity representation 2 mechanisms underlying the development of intensity representation

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Intensity representatio n 2 Mechanisms underlying the development of intensity representation

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Page 1: Intensity representation 2 Mechanisms underlying the development of intensity representation

Intensity representation 2Mechanisms underlying the

development of intensity representation

Page 2: Intensity representation 2 Mechanisms underlying the development of intensity representation

What needs explaining? Absolute sensitivity improves dramatically during

infancy and then more slowly throughout childhood.

Intensity discrimination and detection in noise are immature until 5 or 6 years of age.

Temporal tasks that involve intensity resolution mature over the same time period.

Page 3: Intensity representation 2 Mechanisms underlying the development of intensity representation

What should we be looking for? Factors that influence absolute sensitivity

Conductive efficiency Cochlear sensitivity Neural transmission Physiological noise

Factors that influence intensity coding Growth of response with increasing intensity Variability in neural response

Page 4: Intensity representation 2 Mechanisms underlying the development of intensity representation

Absolute sensitivityDevelopment of conductive

efficiency

Page 5: Intensity representation 2 Mechanisms underlying the development of intensity representation

Development of external and middle ear

QuickTime™ and aTIFF (Uncompressed) decompressor

are needed to see this picture.

Page 6: Intensity representation 2 Mechanisms underlying the development of intensity representation

Development of pinna

Page 7: Intensity representation 2 Mechanisms underlying the development of intensity representation

Predictions about function of external and middle ear Increasing ear canal length and pinna size

will lead to a decrease in the resonant frequency of the external ear, as well as changes in spectral shape.

Changes in the middle ear cavity size, and possible structural changes in the middle ear will lead to changes in the efficiency of the middle ear.

Page 8: Intensity representation 2 Mechanisms underlying the development of intensity representation

Transfer function of the external ear

4k 8k16k

Page 9: Intensity representation 2 Mechanisms underlying the development of intensity representation

Middle ear impedance level

Page 10: Intensity representation 2 Mechanisms underlying the development of intensity representation

Absorption level into middle ear

Page 11: Intensity representation 2 Mechanisms underlying the development of intensity representation

Compare to threshold development

Page 12: Intensity representation 2 Mechanisms underlying the development of intensity representation

Absolute sensitivityCochlear sensitivity?

Page 13: Intensity representation 2 Mechanisms underlying the development of intensity representation

Click-evoked ABR threshold over age (preterm infants)

Page 14: Intensity representation 2 Mechanisms underlying the development of intensity representation

Tone-burst evoked ABR thresholds (newborns)

Page 15: Intensity representation 2 Mechanisms underlying the development of intensity representation

Tone-burst evoked ABR thresholds (infants)

Page 16: Intensity representation 2 Mechanisms underlying the development of intensity representation

Absolute sensitivityNeural transmission

Page 17: Intensity representation 2 Mechanisms underlying the development of intensity representation

Neural transmission continues to develop during infancy

Page 18: Intensity representation 2 Mechanisms underlying the development of intensity representation

Three-month-olds’ absolute threshold is correlated with I-V interval

Page 19: Intensity representation 2 Mechanisms underlying the development of intensity representation

Factors contributing to absolute threshold development Conductive efficiency--all the way to

adolescence, though effect is small after infancy

Probably not cochlear maturity-- at least after term birth

Neural transmission-- brainstem in early infancy; other parts of the brain later?

Page 20: Intensity representation 2 Mechanisms underlying the development of intensity representation

Growth of cochlear microphonic with increasing intensity (rats)

Page 21: Intensity representation 2 Mechanisms underlying the development of intensity representation

Growth of ABR Wave V amplitude with increasing intensity (infants)

Page 22: Intensity representation 2 Mechanisms underlying the development of intensity representation

What else do we need to know? Cochlear sensitivity Growth of neural response with age

Older ages More central parts of the nervous system

Page 23: Intensity representation 2 Mechanisms underlying the development of intensity representation

Conclusions Conductive development can account for a large part of

absolute threshold development during infancy and childhood.

Brainstem transmission accounts for additional immaturity of absolute threshold during later infancy.

Although there are hints that neural response grows with increasing intensity differently in infants, the existing data do not support any conclusions about sensory bases of immature intensity processing beyond early infancy.