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Assessing Changes in Volatile General Anesthetic Sensitivity of Mice after Local or Systemic Pharmacological Intervention

机译:局部或全身药理学干预后评估小鼠挥发性全身麻醉药敏感性的变化

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摘要

One desirable endpoint of general anesthesia is the state of unconsciousness, also known as hypnosis. Defining the hypnotic state in animals is less straightforward than it is in human patients. A widely used behavioral surrogate for hypnosis in rodents is the loss of righting reflex (LORR), or the point at which the animal no longer responds to their innate instinct to avoid the vulnerability of dorsal recumbency. We have developed a system to assess LORR in 24 mice simultaneously while carefully controlling for potential confounds, including temperature fluctuations and varying gas flows. These chambers permit reliable assessment of anesthetic sensitivity as measured by latency to return of the righting reflex (RORR) following a fixed anesthetic exposure. Alternatively, using stepwise increases (or decreases) in anesthetic concentration, the chambers also enable determination of a population's sensitivity to induction (or emergence) as measured by EC50 and Hill slope. Finally, the controlled environmental chambers described here can be adapted for a variety of alternative uses, including inhaled delivery of other drugs, toxicology studies, and simultaneous real-time monitoring of vital signs.
机译:全身麻醉的一个理想终点是意识丧失状态,也称为催眠状态。与人类患者相比,在动物中定义催眠状态不那么简单。啮齿动物催眠的一种广泛使用的行为替代手段是失去正向反射(LORR),即动物不再对其先天本能做出反应从而避免背卧的脆弱性。我们开发了一种系统,可以同时评估24只小鼠的LORR,同时仔细控制潜在的混杂因素,包括温度波动和变化的气体流量。这些腔室允许对麻醉药敏感性进行可靠的评估,如通过固定麻醉剂暴露后恢复翻身反射(RORR)的潜伏期所测量的。或者,通过逐步增加(或降低)麻醉剂浓度,这些腔室还可以确定人群对诱导(或出现)的敏感性,如通过EC50和Hill坡度测量的。最后,此处所述的受控环境舱可适应多种替代用途,包括吸入其他药物,毒理学研究以及同时实时监测生命体征。

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