Simulation analysis of conduction block in myelinated axons induced by high-frequency biphasic rectangular pulses

被引:34
作者
Zhang, Xu
Roppolo, James R.
de Groat, William C.
Tai, Changfeng [1 ]
机构
[1] Capital Univ Med Sci, Dept Biomed Engn, Beijing 100069, Peoples R China
[2] Univ Pittsburgh, Dept Pharmacol, Pittsburgh, PA 15261 USA
关键词
axon; electrical stimulation; high-frequency; nerve block; model;
D O I
10.1109/TBME.2006.873689
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Nerve conduction block induced by high-frequency biphasic rectangular pulses was analyzed using a lumped circuit model of the myclinated axon based on Frankenhaeuser-Huxley (FH) equations. At the temperature of 37 degrees C, axons of different diameters (2-20 mu m) can be blocked completely at supra-threshold intensities when the stimulation frequency is above 10 kHz. However, at stimulation frequencies between 6 kHz and 9 kHz, both nerve block and repetitive firing of action potentials can be observed at different stimulation intensities. When the stimulation frequency is below 6 kHz, nerve block does not occur regardless of stimulation intensity. Larger diameter axons have a lower threshold intensity to induce conduction block. When temperature is reduced from 37 degrees C to 20 degrees C, the lowest frequency to completely block large axons (diameters 10-20 mu m) decreased from 8 kHz to 4 kHz. This simulation study can guide future animal experiments as well as optimize stimulation waveforms for electrical nerve block in clinical applications.
引用
收藏
页码:1433 / 1436
页数:4
相关论文
共 28 条
[1]   POINT-SOURCE NERVE BUNDLE STIMULATION - EFFECTS OF FIBER DIAMETER AND DEPTH ON SIMULATED EXCITATION [J].
ALTMAN, KW ;
PLONSEY, R .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1990, 37 (07) :688-698
[2]  
[Anonymous], 1990, NEURAL PROSTHESES FU
[3]   ORDERLY STIMULATION OF SKELETAL-MUSCLE MOTOR UNITS WITH TRIPOLAR NERVE CUFF ELECTRODE [J].
BARATTA, R ;
ICHIE, M ;
HWANG, SK ;
SOLOMONOW, M .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1989, 36 (08) :836-843
[4]   Direct current electrical conduction block of peripheral nerve [J].
Bhadra, N ;
Kilgore, KL .
IEEE TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, 2004, 12 (03) :313-324
[5]  
BOWMAN BR, 1986, APPL NEUROPHYSIOL, V49, P121
[6]  
CHIU SY, 1979, J PHYSIOL-LONDON, V292, P149, DOI 10.1113/jphysiol.1979.sp012843
[7]  
Diprima, 1997, ELEMENTARY DIFFERENT, P436
[8]   A METHOD TO EFFECT PHYSIOLOGICAL RECRUITMENT ORDER IN ELECTRICALLY ACTIVATED MUSCLE [J].
FANG, ZP ;
MORTIMER, JT .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1991, 38 (02) :175-179
[9]   Editorial: Quality alternatives in medicine [J].
Frank, DP .
AMERICAN JOURNAL OF MEDICAL QUALITY, 2002, 17 (01) :1-2
[10]   A QUANTITATIVE APPROACH TO MODELING MAMMALIAN MYELINATED NERVE-FIBERS FOR ELECTRICAL PROSTHESIS DESIGN [J].
FRIJNS, JHM ;
MOOIJ, J ;
TENKATE, JH .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1994, 41 (06) :556-566