Tomov Toma L, Guntinas-Lichius Orlando, Grosheva Maria, Streppel Michael, Schraermeyer Ulrich, Neiss Wolfram F, Angelov Doychin N
Institut I für Anatomie, D-50924 Köln, Germany.
Exp Neurol. 2002 Dec;178(2):207-18. doi: 10.1006/exnr.2002.8040.
Abnormally associated movements inevitably occur after surgical repair of the facial nerve. The reason for this postparalytic syndrome is poor navigation of regrowing axons. Despite the valuable functional advantage provided by the easily detected movement of vibrissae in rats, the major investigative tools for establishing the degree of misdirected reinnervation are still electrophysiologic recordings and retrograde tracing. In the present study we complemented data from pre- and postoperative retrograde labeling (FluoroGold, Fast Blue, DiI) of facial motoneurons with an evaluation of whisker movements. Using a video-based motion analysis system, we compared the recovery of vibrissae motor performance in visually normal and blind rats of the Sprague-Dawley strain. The analysis of whisker movement after facial nerve surgery revealed a striking discrepancy between morphologic and functional estimates. Whereas retrograde labeling displayed poor accuracy of target reinnervation and supernumerary axonal branching in both groups, the video-based motion analysis showed a perfect recovery of vibrissae movements in the blind rats. Attributing the complete recovery of whisker movement in the blind rats to an extraordinary plasticity of the facial motoneurons induced by putative behavioral demand and forced overuse, we conclude that the video-based analysis of whisker movement is a valuable tool for studying the progress in functional recovery.
面神经手术修复后不可避免地会出现异常关联运动。这种麻痹后综合征的原因是再生轴突的导向不佳。尽管大鼠触须易于检测的运动具有宝贵的功能优势,但确定错向再支配程度的主要研究工具仍然是电生理记录和逆行追踪。在本研究中,我们通过评估触须运动,补充了面神经运动神经元术前和术后逆行标记(氟金、快蓝、碘化丙啶)的数据。使用基于视频的运动分析系统,我们比较了Sprague-Dawley品系视觉正常和失明大鼠触须运动性能的恢复情况。面神经手术后触须运动分析显示形态学和功能评估之间存在显著差异。虽然逆行标记显示两组中靶标再支配的准确性较差且存在多余的轴突分支,但基于视频 的运动分析显示失明大鼠的触须运动完全恢复。将失明大鼠触须运动的完全恢复归因于假定的行为需求和强迫过度使用所诱导的面神经运动神经元的非凡可塑性,我们得出结论,基于视频的触须运动分析是研究功能恢复进展的有价值工具。