Literature DB >> 26525912

Calculated spinal cord electric fields and current densities for possible neurite regrowth from quasi-DC electrical stimulation.

Ben Greenebaum1.   

Abstract

The prime goal of this work was to model essentially steady (DC) fields from electrodes, implanted in several ways, which have been suggested as possible means to encourage nerve fiber regrowth in spinal cord injuries. A simplified model of the human spinal cord in the lumbar region and the SEMCAD-X computer program were used to calculate electric field and current density patterns from electrodes outside vertebrae and those inserted extradurally within the spinal canal. DC electric fields guide nerve growth in developing organisms and in vitro. They also have been shown to encourage healing of injured peripheral nerves, and application of a longitudinal field has been used in attempts to bridge spinal cord injuries. When calculated results are scaled to the experimental level used in the literature, all modeled electrodes produced fields in the spinal cord below fields needed in the literature for stimulation of spinal as well as peripheral nerve growth in vitro, in dogs, and in a published clinical human trial. The highly-conducting cerebrospinal fluid appeared to provide effective shielding; there was also a very high degree of polarization at electrodes.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  computer modeling; current density; longitudinal electric field; nerve guidance

Mesh:

Year:  2015        PMID: 26525912     DOI: 10.1002/bem.21940

Source DB:  PubMed          Journal:  Bioelectromagnetics        ISSN: 0197-8462            Impact factor:   2.010


  1 in total

1.  Electroacupuncture Facilitates the Integration of Neural Stem Cell-Derived Neural Network with Transected Rat Spinal Cord.

Authors:  Hui Jin; Yu-Ting Zhang; Yang Yang; Lan-Yu Wen; Jun-Hua Wang; Hao-Yu Xu; Bi-Qin Lai; Bo Feng; Ming-Tian Che; Xue-Cheng Qiu; Zhi-Ling Li; Lai-Jian Wang; Jing-Wen Ruan; Bin Jiang; Xiang Zeng; Qing-Wen Deng; Ge Li; Ying Ding; Yuan-Shan Zeng
Journal:  Stem Cell Reports       Date:  2019-01-17       Impact factor: 7.765

  1 in total

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