channel permits K+ to pass through the apical-end membrane in hair cells of the ear? (A) Spiral ganglion Tectorial membrane Scala vestibuli Inner hair cells -45 mV Scala tympani Outer hair cells Scala media Organ of Corti Perilymph Low K 0mV Endolymph High K+ + 80 mV Ligand-gated K+ channels Leak K+ channels Stria vascularis Basilar membrane OCa2+-activated K+ channels A.,and B., above (B) Afferent. nerve Depolarization Nucleus -Depolarization- 000 Mechanoelectrical Transduction K+ channels Vesicles Transmitter To brain C₂²4 Based on the same attached figure as above (Figure 10.9 in your textbook), what kind of channel permits K+ to pass through the apical-end membrane in hair cells of the ear? (A) Spiral ganglion Tectorial membrane Scala vestibuli Inner hair cells -45 mV Scala tympani Outer hair cells Scala media Organ of Corti Perilymph Low K+ 0mV Endolymph High K+ +80 mV (B) Stria vascularis Basilar membrane Ca²+ Afferent. nerve Depolarization O Nucleus wwww. 00 -Depolarization. Vesicles -Transmitter To brain C₂24

Biology 2e
2nd Edition
ISBN:9781947172517
Author:Matthew Douglas, Jung Choi, Mary Ann Clark
Publisher:Matthew Douglas, Jung Choi, Mary Ann Clark
Chapter36: Sensory Systems
Section: Chapter Questions
Problem 19RQ: Benign Paroxysmal Positional Vertigo is a disorder where some of the calcium carbonate crystals in...
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Question
channel permits K+ to pass through the
apical-end membrane in hair cells of the ear?
(A)
Spiral
ganglion
Tectorial
membrane
Scala
vestibuli
Inner hair cells
-45 mV
Scala
tympani
Outer
hair cells
Scala
media
Organ of Corti
Perilymph
Low K
0mV
Endolymph
High K+
+ 80 mV
Ligand-gated K+ channels
Leak K+ channels
Stria
vascularis
Basilar
membrane
OCa2+-activated K+ channels
A.,and B., above
(B)
Afferent.
nerve
Depolarization
Nucleus
-Depolarization-
000
Mechanoelectrical Transduction K+ channels
Vesicles
Transmitter
To brain
C₂²4
Transcribed Image Text:channel permits K+ to pass through the apical-end membrane in hair cells of the ear? (A) Spiral ganglion Tectorial membrane Scala vestibuli Inner hair cells -45 mV Scala tympani Outer hair cells Scala media Organ of Corti Perilymph Low K 0mV Endolymph High K+ + 80 mV Ligand-gated K+ channels Leak K+ channels Stria vascularis Basilar membrane OCa2+-activated K+ channels A.,and B., above (B) Afferent. nerve Depolarization Nucleus -Depolarization- 000 Mechanoelectrical Transduction K+ channels Vesicles Transmitter To brain C₂²4
Based on the same attached figure as above
(Figure 10.9 in your textbook), what kind of
channel permits K+ to pass through the
apical-end membrane in hair cells of the ear?
(A)
Spiral
ganglion
Tectorial
membrane
Scala
vestibuli
Inner hair cells
-45 mV
Scala
tympani
Outer
hair cells
Scala
media
Organ of Corti
Perilymph
Low K+
0mV
Endolymph
High K+
+80 mV
(B)
Stria
vascularis
Basilar
membrane
Ca²+
Afferent.
nerve
Depolarization
O
Nucleus
wwww.
00
-Depolarization.
Vesicles
-Transmitter
To brain
C₂24
Transcribed Image Text:Based on the same attached figure as above (Figure 10.9 in your textbook), what kind of channel permits K+ to pass through the apical-end membrane in hair cells of the ear? (A) Spiral ganglion Tectorial membrane Scala vestibuli Inner hair cells -45 mV Scala tympani Outer hair cells Scala media Organ of Corti Perilymph Low K+ 0mV Endolymph High K+ +80 mV (B) Stria vascularis Basilar membrane Ca²+ Afferent. nerve Depolarization O Nucleus wwww. 00 -Depolarization. Vesicles -Transmitter To brain C₂24
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