JoVE Logo

로그인

ConceptExperiment

You have full access to this content through

Nanyang Technological University

Light-Evoked Postsynaptic Responses in Neurons of Mouse Retinal Slices

-- views • 1:22 min

내레이션 대본

Take a dark-adapted mouse retinal slice inside a recording chamber in a dark room. The retina sits on a supportive artificial base set over a cover slip. Perfuse the slice with aCSF.

The retinal neural network includes photoreceptors synaptically linked to bipolar cells that synapse with ganglion cells.

Position a recording pipette near the retina.

Under a microscope, apply positive pressure while approaching a target ganglion cell.

Switch to negative pressure to pull in a membrane patch, then rupture it to establish continuity with the cytoplasm.

In the dark, the photoreceptor membrane remains depolarized, leading to neurotransmitter release.

Neurotransmitters binding to bipolar cell receptors trigger cation channel closure, inhibiting signal transmission.

Apply a light pulse to hyperpolarize the photoreceptors. The decreased neurotransmitter release triggers cation channel opening in bipolar cells.

Cation influx induces neurotransmitter release that binds to ganglion cell receptors,  generating an excitatory post-synaptic potential recorded by the pipette.

article

03:14

Light-Evoked Postsynaptic Responses in Neurons of Mouse Retinal Slices

관련 동영상

13 Views

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유