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Brain imaging in research on anesthetic mechanisms: studies with propofol.

机译:麻醉机制研究中的脑成像:丙泊酚研究。

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Brain imaging helps to refine our understanding of the anesthetic effect and is providing novel information that result in the formulation of hypotheses. They have shown that anesthetics act on specific structures that have been known to be important for consciousness at large. They have also helped to show that anesthetics act on specific structures regionally, rather than being non-specific, general depressant of the central nervous system (CNS). A constant finding is that the drugs that we use seem to exert their action on specific sites within the CNS. This is true for a wide variety of drugs like midazolam, anesthetic vapors and opiates. The thalamus has consistently shown marked deactivation coincident with the anesthesia-induced loss of consciousness, appearing to be a very important target of anesthetic effect. Additionally, when vibro-tactile or pain stimulation is given, anesthetics significantly effect cortical structures even before loss of consciousness while loss of transmission at the thalamic level seems to coincide with loss of consciousness. Finally, the use of radioligands allow in vivo characterization of anesthetic effects on neurotransmitter systems.
机译:脑成像有助于改善我们对麻醉效果的理解,并提供新颖的信息,从而形成假设。他们表明,麻醉药作用于已知对整个意识很重要的特定结构。他们还帮助证明了麻醉药在局部作用于特定结构,而不是非特异性的中枢神经系统(CNS)抑制剂。不断发现的是,我们使用的药物似乎在中枢神经系统内的特定部位发挥作用。咪达唑仑,麻醉剂和鸦片等多种药物都是如此。丘脑一直显示出明显的失活,与麻醉引起的意识丧失相一致,这似乎是麻醉作用的一个非常重要的目标。另外,当给予触觉或疼痛刺激时,麻醉剂甚至在失去知觉之前就显着影响皮质结构,而在丘脑水平的传播丧失似乎与知觉丧失同时发生。最后,放射性配体的使用允许对神经递质系统的麻醉作用进行体内表征。

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