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Titlebook: Extracellular Recording Approaches; Roy V. Sillitoe Book 2018 Springer Science+Business Media, LLC 2018 cerebellum.postnatal development.E

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Experiments with Independent Incrementsng future optogenetic studies. In this chapter we review the opportunities and pitfalls for optogenetic studies in the cerebellum. We provide insights into the technical issues at hand and which solutions are currently available.
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https://doi.org/10.1007/978-3-319-46313-1s method, we have found that zebrafish Purkinje cells fire simple and complex spikes similar to those seen in mammalian Purkinje cells. Spontaneous firing and a functional cerebellar circuit emerge early in zebrafish development in parallel with complex, visually guided behaviors. This preparation h
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In Vivo Loose-Patch-Juxtacellular Labeling of Cerebellar Neurons in Mice,ed by placing the electrode in very close proximity to a cell and then, by delivering pulses of current, pores in the membrane transiently open to allow the tracer to enter. Later studies expanded on the precision of the method by making a loose patch onto the cell before filling it. However, while
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Extracellular Loose-Patch Recording of Purkinje Cell Activity in Awake Zebrafish and Emergence of Fs method, we have found that zebrafish Purkinje cells fire simple and complex spikes similar to those seen in mammalian Purkinje cells. Spontaneous firing and a functional cerebellar circuit emerge early in zebrafish development in parallel with complex, visually guided behaviors. This preparation h
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,Case Study: Carroll’s Tortoise, functioning. In the cerebellum, a structure with high levels of intrinsic activity, studying these elements in vivo in an awake animal is imperative to obtain information regarding the processing features of these units in action. In this chapter we address the rationale and the approach of recordi
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