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Patch-walking, a coordinated multi-pipette patch clamp for efficiently finding synaptic connections

delete2024-11-18
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OA
AI
M
Mighten C. Yip
M
Mercedes M. Gonzalez
C
Colby F. Lewallen
C
Corey Landry
I
Ilya Kolb
B
Bo Yang
W
William Stoy
M
Ming‐fai Fong
M
Matthew JM Rowan
E
Edward S. Boyden
C
Craig R. Forest *
DOI:10.7554/eLife.97399delete
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Abstract

Abstract

En 中文
Significant technical challenges exist when measuring synaptic connections between neurons in living brain tissue. The patch clamping technique, when used to probe for synaptic connections, is manually laborious and time-consuming. To improve its efficiency, we pursued another approach: instead of retracting all patch clamping electrodes after each recording attempt, we cleaned just one of them and reused it to obtain another recording while maintaining the others. With one new patch clamp recording attempt, many new connections can be probed. By placing one pipette in front of the others in this way, one can 'walk' across the mouse brain slice, termed 'patch-walking.' We performed 136 patch clamp attempts for two pipettes, achieving 71 successful whole cell recordings (52.2%). Of these, we probed 29 pairs (i.e. 58 bidirectional probed connections) averaging 91 mu m intersomatic distance, finding three connections. Patch-walking yields 80-92% more probed connections, for experiments with 10-100 cells than the traditional synaptic connection searching method.
Keywords:
electrophysiology
synapse
cortex

Journal

eLife cover
eLife
IF:
0
Papers:
1.8W
Citations:
16

Organization

G
Georgia Institute of Technology
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C
Columbia University
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N
national institutes of health (nih) - usa
Scholars:
10.3W
Papers: 8.2W
Citations: 111
U
university system of georgia
Scholars:
7.3W
Papers: 6.5W
Citations: 101
N
nih national eye institute (nei)
Scholars:
1.2K
Papers: 801
Citations: 1
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