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Two photon calcium imaging recordings of spontaneous activity from mouse somatosensory\n cortex in wild-type and Fmr1 knock-out mice
- 负责人:
- DOI:
- doi:10.6080/k0x63k3x
- 摘要:
- This dataset contains in vivo two photon Ca2+ imaging recordings obtained from Layer 2/3 somatosensory cortex of several mice
Data from: Imaging and manipulating pituitary function in the awake mouse
- 负责人:
- 关键词:
- DOI:
- doi:10.5061/dryad.63v6b83
- 摘要:
- Extensive efforts have been made to explore how the activities of multiple brain cells combine to alter physiology through imaging and cell-speci
Manipulation of RGCs response using different stimulation strategies for retinal prosthesis
- 负责人:
- 关键词:
- Biomedical Engineering biomedical engineering neural engineering neural stimulation electrophysiology calcium imaging multielectrode arrays retina retinal ganglion cells retinal prosthesis
- DOI:
- doi:10.25549/usctheses-c40-446234
- 摘要:
- the activation of axon bundles. Based on the established in vitro calcium imaging and electrophysiological animal model, we performed in vitro calcium imaging
Data from: The function and organization of the motor system controlling flight maneuvers in flies
- 负责人:
- Lindsay, Theodore H.
- DOI:
- doi:10.5061/dryad.23nm1
- 摘要:
- of muscles. To identify strategies by which animals execute precise actions using sparse motor networks, we imaged the activity of a complete ensemble of wing
Data from: Impaired hippocampal place cell dynamics in a mouse model of the 22q11.2 deletion
- 负责人:
- Zaremba, Jeff
- 关键词:
- hippocampus calcium imaging in vivo imaging two-photon imaging schizophrenia 22q11.2 deletion syndrome place cells place cell stability spatial learning reward learning
- DOI:
- doi:10.5061/dryad.rq560
- 摘要:
- dynamics in health and disease remains elusive. Using chronic two-photon Ca2+ imaging in hippocampal area CA1 of wild-type and Df(16)A+/? mice, an animal
Data from: Mechanism for analogous illusory motion perception in flies and humans.
- 负责人:
- DOI:
- doi:10.5061/dryad.vt4b8gtpd
- 摘要:
- in the stationary gradients. The percept was abolished when the elementary motion detector neurons, T4 and T5, were silenced. In vivo calcium imaging revealed that T4
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