Khan T, Myklebust J, Swiontek T, Sayers S, Dauzvardis M
Rehabilitation Research and Development Center, Hines Veterans Administration Hospital, Illinois, USA.
J Neurotrauma. 1994 Dec;11(6):699-710. doi: 10.1089/neu.1994.11.699.
This study investigated the spontaneous injury potentials measured after contusion or transection injury to the cat spinal cord. In addition, the distribution of electrical field potentials on the surface and within the spinal cord were measured following applied electrical fields after transection and contusion injuries. After transection of the spinal cord, the injury potentials were -19.8 +/- 2.6 mV; after contusion of the spinal cord, the injury potentials were -9.5 +/- 2.2 mV. These potentials returned to control values within 2.5-4h after injury. The electrical field distribution measured on the dorsal surface, as well as within the spinal cord, after the application of a 10 microA current, showed little difference between contusion and transection injuries. Scalar potential fields were measured using two configurations of stimulating electrodes: dorsal to dorsal (D-D), in which both electrodes were placed epidurally on the dorsal surface of the spinal cord, and ventral to dorsal (V-D), in which one electrode was placed dorsally and one ventrally. As reported in normal uninjured cats, the total current in the midsagittal plane for the D-D configuration was largely confined to the dorsal portion of the spinal cord; with the V-D configuration, the current distribution was uniform throughout the spinal cord. In the injured spinal cord, the equipotential lines midway between the stimulating electrodes have a wider separation than in the uninjured spinal cord. Because the magnitude of the electrical field E is equal to the current density J multiplied by the resistivity r, this suggests that either the current density is reduced or that the resistivity is reduced.
本研究调查了猫脊髓挫伤或横断损伤后测量的自发损伤电位。此外,在横断和挫伤损伤后施加电场后,测量了脊髓表面和内部的电场电位分布。脊髓横断后,损伤电位为-19.8±2.6mV;脊髓挫伤后,损伤电位为-9.5±2.2mV。这些电位在损伤后2.5 - 4小时内恢复到对照值。在施加10微安电流后,在脊髓背表面以及脊髓内部测量的电场分布显示,挫伤和横断损伤之间几乎没有差异。使用两种刺激电极配置测量标量电位场:背 - 背(D - D)配置,其中两个电极都硬膜外放置在脊髓背表面;腹 - 背(V - D)配置,其中一个电极放置在背侧,一个电极放置在腹侧。如在正常未受伤的猫中所报道的,D - D配置在矢状面中的总电流主要局限于脊髓的背侧部分;对于V - D配置,电流分布在整个脊髓中是均匀的。在受伤的脊髓中,刺激电极之间中途的等势线比未受伤的脊髓有更宽的间距。因为电场E的大小等于电流密度J乘以电阻率r,这表明要么电流密度降低,要么电阻率降低。