Brain Research Institute, University and ETH Zurich, Zurich, Switzerland.
Nat Methods. 2010 Sep;7(9):701-8. doi: 10.1038/nmeth.1484.
Rodents are frequently used to model damage and diseases of the central nervous system (CNS) that lead to functional deficits. Impaired locomotor function is currently evaluated by using scoring systems or biomechanical measures. These methods often suffer from limitations such as subjectivity, nonlinearity and low sensitivity, or focus on a few very restricted aspects of movement. Thus, full quantitative profiles of motor deficits after CNS damage are lacking. Here we report the detailed characterization of locomotor impairments after applying common forms of CNS damage in rodents. We obtained many objective and quantitative readouts from rats with either spinal cord injuries or strokes and from transgenic mice (Epha4−/−) during skilled walking, overground walking, wading and swimming, resulting in model-specific locomotor profiles. Our testing and analysis method enables comprehensive assessment of locomotor function in rodents and has broad application in various fields of life science research.
啮齿动物常用于模拟导致功能缺陷的中枢神经系统(CNS)损伤和疾病。目前,运动功能障碍是通过使用评分系统或生物力学测量来评估的。这些方法常常受到主观性、非线性和低灵敏度等限制,或者只关注运动的几个非常受限的方面。因此,中枢神经系统损伤后运动缺陷的完整定量特征尚不清楚。在这里,我们报告了在啮齿动物中应用常见形式的中枢神经系统损伤后运动障碍的详细特征。我们从脊髓损伤或中风的大鼠以及在熟练行走、地面行走、涉水和游泳期间的 EphA4−/−转基因小鼠中获得了许多客观和定量的读数,从而产生了特定于模型的运动特征。我们的测试和分析方法能够全面评估啮齿动物的运动功能,并且在生命科学研究的各个领域具有广泛的应用。