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首页> 外文期刊>Journal de la Societe de biologie >Diving: barometric pressure and neurochemical mechanisms
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Diving: barometric pressure and neurochemical mechanisms

机译:潜水:气压和神经化学机制

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摘要

The studies of Paul Bert, presented in his book "La Pression Barometrique" in 1878, were at the origin of the modern hyperbaric physiology. Indeed his research demonstrated the effects of oxygen at high pressure, that compression effects must be dissociated from decompression effects, and that neurological troubles and death of divers during or after decompression were due to the fast rate of decompression. However, it is only in 1935 that the work of Behnke et al. attributed the complaints reported at 3 bars and above in compressed air or nitrogen-oxygen mixture to the increase in partial pressure of nitrogen which induces nitrogen narcosis. Little is known about the origins and mechanisms of this narcosis. The traditional view was that anaesthesia or narcosis occurred when the volume of a hydrophobic membrane site was caused to expand beyond a critical amount by the absorption of molecules of a narcotic gas. The observation of the pressure reversal effect during general anaesthesia has long supportedthis lipid theory. However, recently, protein theories have met with increasing recognition since results with gaseous anaesthetics have been interpreted as evidence for a direct gas-protein interaction. The question is to know whether inert gases, that disrupt dopamine and GABA neurotransmissions and probably glutamatergic neurotransmission, act by binding to neurotransmitter protein receptors.
机译:保罗·伯特(Paul Bert)的研究发表于1878年的《 La Pression Barometrique》中,是现代高压生理学的起源。确实,他的研究证明了高压下氧气的作用,压缩作用必须与减压作用分离,并且减压期间或减压后潜水员的神经系统问题和死亡是由于减压速度快所致。但是,直到1935年,Behnke等人的工作才得以完成。将压缩空气或氮气-氧气混合物中3巴及以上压力的报道归因于氮气分压的增加,这会引起氮气的麻醉。关于这种麻醉的起源和机制知之甚少。传统观点认为,麻醉性或麻醉性是通过吸收麻醉性气体分子使疏水性膜部位的体积膨胀超过临界量而发生的。长期以来对全麻压力逆转作用的观察一直支持这种脂质理论。然而,近来,蛋白质理论得到越来越多的认可,因为气体麻醉剂的结果已被解释为直接的气体-蛋白质相互作用的证据。问题是要知道能干扰多巴胺和GABA神经传递以及可能是谷氨酸能神经传递的惰性气体是否通过与神经递质蛋白受体结合而起作用。

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