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Brain surface temperature under a craniotomy

机译:开颅手术下的脑表面温度

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摘要

Many neuroscientists access surface brain structures via a small cranial window, opened in the bone above the brain region of interest. Unfortunately this methodology has the potential to perturb the structure and function of the underlying brain tissue. One potential perturbation is heat loss from the brain surface, which may result in local dysregulation of brain temperature. Here, we demonstrate that heat loss is a significant problem in a cranial window preparation in common use for electrical recording and imaging studies in mice. In the absence of corrective measures, the exposed surface of the neocortex was at ∼28°C, ∼10°C below core body temperature, and a standing temperature gradient existed, with tissue below the core temperature even several millimeters into the brain. Cooling affected cellular and network function in neocortex and resulted principally from increased heat loss due to convection and radiation through the skull and cranial window. We demonstrate that constant perfusion of solution, warmed to 37°C, over the brain surface readily corrects the brain temperature, resulting in a stable temperature of 36–38°C at all depths. Our results indicate that temperature dysregulation may be common in cranial window preparations that are in widespread use in neuroscience, underlining the need to take measures to maintain the brain temperature in many physiology experiments.
机译:许多神经科学家通过一个小的颅窗进入大脑表面结构,该颅窗在感兴趣的大脑区域上方的骨头中打开。不幸的是,这种方法可能会扰乱潜在脑组织的结构和功能。一种潜在的扰动是大脑表面的热量散失,这可能导致大脑温度的局部失调。在这里,我们证明热量损失是颅窗准备工作中的一个重要问题,该准备工作通常用于小鼠的电记录和成像研究。在缺乏纠正措施的情况下,新皮层的暴露表面处于约28°C,比核心体温低约10°C的温度,并且存在站立温度梯度,低于核心温度的组织甚至进入大脑几毫米。冷却影响了新皮层的细胞和网络功能,主要是由于对流和通过颅骨和颅窗的辐射导致的热损失增加所致。我们证明,不断加热至37°C的溶液在大脑表面持续灌注可轻松纠正大脑温度,从而在所有深度均稳定在36-38°C的温度。我们的结果表明,温度失调可能在神经科学中广泛使用的颅窗制剂中很常见,这突显了在许多生理学实验中需要采取措施维持脑温的措施。

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