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水蛭机械感觉神经元的固有频率响应模式。

Intrinsic frequency response patterns in mechano-sensory neurons of the leech.

作者信息

Fischer Linda, Scherbarth Frank, Chagnaud Boris, Felmy Felix

机构信息

Institute of Zoology, University of Veterinary Medicine Hannover, Buenteweg 17, Hannover 30559, Germany.

Department Biology II, Ludwig-Maximilians-University Munich, Großhadener Straße 2, Planegg/Martinsried 82152, Germany.

出版信息

Biol Open. 2017 Jul 15;6(7):993-999. doi: 10.1242/bio.023960.

Abstract

Animals employ mechano-sensory systems to detect and explore their environment. Mechano-sensation encompasses stimuli such as constant pressure, surface movement or vibrations at various intensities that need to be segregated in the central nervous system. Besides different receptor structures, sensory filtering via intrinsic response properties could provide a convenient way to solve this problem. In leech, three major mechano-sensory cell types can be distinguished, according to their stimulus sensitivity, as nociceptive, pressure and touch cells. Using intracellular recordings, we show that the different mechano-sensory neuron classes in differentially respond supra-threshold to distinct frequencies of sinusoidal current injections between 0.2 and 20 Hz. Nociceptive cells responded with a low-pass filter characteristic, pressure cells as high-pass filters and touch cells as an intermediate band-pass filter. Each class of mechano-sensory neurons is thus intrinsically tuned to a specific frequency range of voltage oscillation that could help segregate mechano-sensory information centrally.

摘要

动物利用机械感觉系统来探测和探索它们的环境。机械感觉包括诸如恒定压力、表面运动或各种强度的振动等刺激,这些刺激需要在中枢神经系统中进行区分。除了不同的感受器结构外,通过内在反应特性进行感觉过滤可能是解决这个问题的一种便捷方式。在水蛭中,根据刺激敏感性可区分出三种主要的机械感觉细胞类型,即伤害性感受细胞、压力细胞和触觉细胞。通过细胞内记录,我们发现不同的机械感觉神经元类别对0.2至20Hz之间不同频率的正弦电流注入超阈值反应不同。伤害性感受细胞以低通滤波器特性做出反应,压力细胞以高通滤波器特性做出反应,触觉细胞以中间带通滤波器特性做出反应。因此,每一类机械感觉神经元在本质上都被调谐到特定的电压振荡频率范围,这有助于在中枢集中区分机械感觉信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83a4/5550909/775d7c1ae04b/biolopen-6-023960-g1.jpg

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