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A model for compound action potentials and currents in a nerve bundle. III: A comparison of the conduction velocity distributions calculated from compound action currents and potentials.

作者信息

Wijesinghe R S, Gielen F L, Wikswo J P

机构信息

Department of Physics and Astronomy, Vanderbilt University, Nashville, TN 37235.

出版信息

Ann Biomed Eng. 1991;19(1):97-121. doi: 10.1007/BF02368462.

DOI:10.1007/BF02368462
PMID:2035912
Abstract

In this paper, we present the experimentally measured Compound Action Current (CACs) and Compound Action Potentials (CAPs) from frog sciatic nerves and earthworm nerve cords. We used histologically prepared cross sections of these nerve bundles to determine the distribution of fiber diameters. A modified volume conduction model that includes frequency-dependent conductivities was used to compute the Single Fiber Action Signals (SFASs). The recorded CACs and CAPs are used to predict the Conduction Velocity Distributions (CVDs) from the nerve bundles. The predicted CVDs are then compared with the histological CVDs. Analysis of Compound Action Signals from the three giant axons in the earthworm nerve cord and microelectrode data for the transmembrane action potential demonstrate the validity of our mathematical model. We found that the CVDs predicted from the recorded CACs and CAPs differ from the histological CVD for a variety of reasons. The validity of the assumption of a linear relationship between axon diameter and conduction velocity of a propagating action signal was investigated using CVDs from both the CAC and CAP. Variations of the CVDs with the propagation distance of the CASs and the recording temperature were investigated.

摘要

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Modelling compound action potentials of peripheral nerves in situ. I. Model description: evidence for a non-linear relation between fibre diameter and velocity.
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Effects of dexmedetomidine and dexketoprofen on the conduction block of rat sciatic nerve.右美托咪定与右酮洛芬对大鼠坐骨神经传导阻滞的影响。
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Selective inhibition of small-diameter axons using infrared light.使用红外光选择性抑制小直径轴突。
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Non-invasive detection of animal nerve impulses with an atomic magnetometer operating near quantum limited sensitivity.利用接近量子极限灵敏度的原子磁力计无创检测动物神经冲动。
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Is it possible to detect dendrite currents using presently available magnetic resonance imaging techniques?目前可用的磁共振成像技术能否检测树突电流?
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