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In vivo measurement of afferent activity with axon-specific calcium imaging.


ABSTRACT: In vivo calcium imaging from axons provides direct interrogation of afferent neural activity, informing the neural representations that a local circuit receives. Unlike in somata and dendrites, axonal recording of neural activity-both electrically and optically-has been difficult to achieve, thus preventing comprehensive understanding of neuronal circuit function. Here we developed an active transportation strategy to enrich GCaMP6, a genetically encoded calcium indicator, uniformly in axons with sufficient brightness, signal-to-noise ratio, and photostability to allow robust, structure-specific imaging of presynaptic activity in awake mice. Axon-targeted GCaMP6 enables frame-to-frame correlation for motion correction in axons and permits subcellular-resolution recording of axonal activity in previously inaccessible deep-brain areas. We used axon-targeted GCaMP6 to record layer-specific local afferents without contamination from somata or from intermingled dendrites in the cortex. We expect that axon-targeted GCaMP6 will facilitate new applications in investigating afferent signals relayed by genetically defined neuronal populations within and across specific brain regions.

SUBMITTER: Broussard GJ 

PROVIDER: S-EPMC6697169 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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In vivo measurement of afferent activity with axon-specific calcium imaging.

Broussard Gerard Joey GJ   Liang Yajie Y   Fridman Marina M   Unger Elizabeth K EK   Meng Guanghan G   Xiao Xian X   Ji Na N   Petreanu Leopoldo L   Tian Lin L  

Nature neuroscience 20180820 9


In vivo calcium imaging from axons provides direct interrogation of afferent neural activity, informing the neural representations that a local circuit receives. Unlike in somata and dendrites, axonal recording of neural activity-both electrically and optically-has been difficult to achieve, thus preventing comprehensive understanding of neuronal circuit function. Here we developed an active transportation strategy to enrich GCaMP6, a genetically encoded calcium indicator, uniformly in axons wit  ...[more]

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