Left ear Longer path to neuron E 0: ITD=0μs -20°: ITD=-200 μs( 20°: ITD=200 μs Right ear- leading neuron B C Left ear Eleading neuron -60°: ITD=-480 μs ( Right ear MSO 5 3 2 Shorter path to neuron E -90: ITD=-640 μs ( -120°: ITD=-480 μs 60°: ITD=480 μs 90°: ITD - 640 με 120°: ITD-480 μs -160°: ITD -200 μs 160°: ITD-200 μs 180°: ITD-0μs

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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This image shows how cells in the medial superior olive could hypothetically calculate interaural time differences. If cell A receives a signal from the left and right cochlea simultaneously, where is this sound likely to be coming from? Given your answer to the first part of this question, do you expect there to be greater excitation in the left or right lateral superior olive?

0 degrees; no difference in excitation between the right and left lateral superior olive
180 degrees; greater excitation in the right lateral superior olive
-90 degrees; greater excitation in the left lateral superior olive
90 degrees; greater excitation in the right lateral superior olive
Left ear
Longer path to neuron E
0: ITD=0μs
-20°: ITD=-200 μs(
20°: ITD=200 μs
Right ear-
leading neuron
B
C
Left ear
Eleading neuron
-60°: ITD=-480 μs (
Right ear
MSO 5
3
2
Shorter path to neuron E
-90: ITD=-640 μs (
-120°: ITD=-480 μs
60°: ITD=480 μs
90°: ITD
- 640 με
120°: ITD-480 μs
-160°: ITD -200 μs
160°: ITD-200 μs
180°: ITD-0μs
Transcribed Image Text:Left ear Longer path to neuron E 0: ITD=0μs -20°: ITD=-200 μs( 20°: ITD=200 μs Right ear- leading neuron B C Left ear Eleading neuron -60°: ITD=-480 μs ( Right ear MSO 5 3 2 Shorter path to neuron E -90: ITD=-640 μs ( -120°: ITD=-480 μs 60°: ITD=480 μs 90°: ITD - 640 με 120°: ITD-480 μs -160°: ITD -200 μs 160°: ITD-200 μs 180°: ITD-0μs
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