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A soft transparent freely accessible cranial window for chronic imaging and electrophysiology

机译:柔软透明可自由访问的颅窗用于慢性成像和电生理

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摘要

Chronic in vivo imaging and electrophysiology are important for better understanding of neural functions and circuits. We introduce the new cranial window using soft, penetrable, elastic, and transparent, silicone-based polydimethylsiloxane (PDMS) as a substitute for the skull and dura in both rats and mice. The PDMS can be readily tailored to any size and shape to cover large brain area. Clear and healthy cortical vasculatures were observed up to 15 weeks post-implantation. Real-time hemodynamic responses were successfully monitored during sensory stimulation. Furthermore, the PDMS window allowed for easy insertion of microelectrodes and micropipettes into the cortical tissue for electrophysiological recording and chemical injection at any location without causing any fluid leakage. Longitudinal two-photon microscopic imaging of Cx3Cr1+/− GFP transgenic mice was comparable with imaging via a conventional glass-type cranial window, even immediately following direct intracortical injection. This cranial window will facilitate direct probing and mapping for long-term brain studies.
机译:慢性体内成像和电生理学对于更好地了解神经功能和电路很重要。我们介绍了新的颅窗,它使用柔软,可渗透,有弹性和透明的有机硅基聚二甲基硅氧烷(PDMS)替代大鼠和小鼠的颅骨和硬脑膜。 PDMS可以轻松定制为任何大小和形状,以覆盖大面积的大脑。植入后长达15周观察到清晰健康的皮层血管。在感官刺激过程中成功监测了实时血液动力学反应。此外,PDMS窗口允许将微电极和微量移液器轻松插入皮层组织中,以便在任何位置进行电生理记录和化学注射,而不会引起任何流体泄漏。 Cx3Cr1 +/- GFP 转基因小鼠的纵向双光子显微成像与通过常规玻璃型颅窗进行的成像相当,甚至在直接皮层内注射后也可以。这个颅窗将有助于长期脑研究的直接探测和标测。

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