| Literature DB >> 36273090 |
Yuqing Lu1,2, Xiangzan Wei1,2, Wei Li3, Xujun Wu2, Chao Chen4,5, Ge Li6, Zhongqiang Huang6, Yunfeng Li6, Yu Zhang6, Wen-Biao Gan7,8.
Abstract
In vivo imaging has been widely used for investigating the structure and function of neurons typically located within ~ 800 μm below the cortical surface. Due to light scattering and absorption, it has been difficult to perform in-vivo imaging of neurons in deep cortical and subcortical regions of large animals with two-photon microscopy. Here, we combined a thin-wall quartz capillary with a GRIN lens attached to a prism for large-volume structural and calcium imaging of neurons located 2 mm below the surface of rabbit and monkey brains. The field of view was greatly expanded by rotating and changing the depth of the imaging probe inside a quartz capillary. Calcium imaging of layer 5/6 neurons in the rabbit motor cortex revealed differential activity of these neurons between quiet wakefulness and slow wave sleep. The method described here provides an important tool for studying the structure and function of neurons located deep in the brains of large animals.Entities:
Year: 2022 PMID: 36273090 DOI: 10.1038/s41598-022-20842-z
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.996