Suppr超能文献

用酚妥拉明对蝗虫飞行系统进行化学去传入神经支配

Chemical deafferentation of the locust flight system by phentolamine.

作者信息

Ramirez J M, Pearson K G

机构信息

Department of Physiology, University of Alberta, Edmonton, Canada.

出版信息

J Comp Physiol A. 1990 Sep;167(4):485-94. doi: 10.1007/BF00190819.

Abstract
  1. Phentolamine was injected into the haemolymph of locusts, Locusta migratoria, and its effects on the flight system were analyzed using electrophysiological techniques. 2. Doses of 150 microliters at 10(-2) M phentolamine inactivated the wing stretch-receptors and tegulae without influencing the central nervous system (CNS). The lack of effect on the CNS was demonstrated by the absence of any effect on the flight motor pattern in animals that had been mechanically deafferented prior to the administration of phentolamine. From these observations we conclude that phentolamine can be used to chemically deafferent the flight system of the locust. Consistent with this conclusion is that the administration of phentolamine in intact animals changed the flight motor pattern so that it resembled the pattern occurring in mechanically deafferented animals. 3. The two main advantages of deafferenting the flight system by injecting phentolamine were a) intracellular recordings from central neurons could be easily maintained during the process of deafferentation, and b) the contribution of different groups of proprioceptors to the generation of the motor pattern could be assessed since not all proprioceptors were inactivated simultaneously. 4. By intracellularly recording from elevator motoneurons and administering phentolamine we confirmed a number of previous results related to the function of the wing stretch-receptors and the tegulae.
摘要
  1. 将酚妥拉明注入飞蝗(Locusta migratoria)的血淋巴中,并使用电生理技术分析其对飞行系统的影响。2. 10⁻² M酚妥拉明150微升的剂量可使翅伸展感受器和翅缰失活,而不影响中枢神经系统(CNS)。在给予酚妥拉明之前已进行机械性去传入神经处理的动物中,对飞行运动模式无任何影响,这证明了对中枢神经系统无作用。从这些观察结果我们得出结论,酚妥拉明可用于对飞蝗的飞行系统进行化学性去传入神经处理。与此结论一致的是,在完整动物中给予酚妥拉明会改变飞行运动模式,使其类似于在机械性去传入神经处理的动物中出现的模式。3. 通过注射酚妥拉明对飞行系统进行去传入神经处理的两个主要优点是:a)在去传入神经处理过程中,可以轻松维持对中枢神经元的细胞内记录;b)由于并非所有本体感受器同时失活,因此可以评估不同组本体感受器对运动模式产生的贡献。4. 通过对升降运动神经元进行细胞内记录并给予酚妥拉明,我们证实了一些先前与翅伸展感受器和翅缰功能相关的结果。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验