Department of Electrical and Computer Engineering, University of Utah, Salt Lake City, UT 84112, USA.
IEEE Trans Biomed Eng. 2011 May;58(5):1286-93. doi: 10.1109/TBME.2010.2103362. Epub 2011 Jan 6.
High-voltage electrical trauma frequently results in injury patterns that cannot be completely attributed to Joule heating. An electrical-injury model describing cellular lysis damage caused by supraphysiological electric fields is introduced, and used to evaluate the effects of high-voltage electric shock on the skeletal muscle of a human upper limb in a configuration that simulates hand-to-hand contact. A novel multiresolution admittance method, capable of efficiently handling large computational models while maintaining excellent accuracy, was used to perform the numerical computations. Values for the computed current through the arm and the upper limb impedance are reported.
高压电创伤通常会导致无法完全归因于焦耳加热的损伤模式。引入了一种描述超生理电场引起的细胞裂解损伤的电损伤模型,并用于评估模拟手到手接触配置下的上肢骨骼肌受到高压电击的影响。采用了一种新的多分辨率导纳方法,该方法能够在保持优异精度的同时高效处理大型计算模型,用于进行数值计算。报告了计算得到的手臂电流和上肢阻抗值。