Institute of Physiology, University of Munich, Munich, Germany.
Brain Res. 2010 Apr 22;1326:81-95. doi: 10.1016/j.brainres.2010.02.051. Epub 2010 Feb 24.
The aim of this study was to characterize differences between unconditioned and classically conditioned lower limb withdrawal reflexes in young subjects during standing. Electromyographic activity in the main muscle groups and biomechanical signals from a strain-gauge-equipped platform on which subjects stood were recorded from 17 healthy subjects during unconditioned stimulus (US)-alone trials and during auditory conditioning stimuli (CS) and US trials. In US-alone trials the leg muscle activation sequence was characteristic: ipsilateral, distal muscles were activated prior to proximal muscles; contralaterally the sequence was reversed. In CSUS trials latencies were shorter. Subjects unloaded the stimulated leg and shifted body weight to the supporting leg. In US-alone and in CSUS trials leg forces on each side were inversely related and asymmetric, due to preparation for unloading, whilst conditioned responses (CR), representing the unloading preparation, were symmetric. The trajectory of the center of vertical pressure during US-alone trials moved initially forward (a preparatory balance reaction) and to the stimulation side, followed by a large lateral shift to the side of the supporting limb. During CSUS trials the forwards shift was absent but the CR (early lateral shift) represented a preponed preparatory unloading. Electrophysiological and biomechanical responses of the classically conditioned lower limb withdrawal reflex in standing subjects changed significantly in CSUS trials compared to US-alone trials with higher sensitivity in the biomechanics. These findings will serve as a basis for a subsequent study on a group of patients with cerebellar diseases in whom the success of establishing procedural processes is known to be impaired.
本研究旨在描述年轻受试者在站立时,非条件和经典条件下肢退缩反射之间的差异。17 名健康受试者在非条件刺激(US)单独试验和听觉条件刺激(CS)和 US 试验期间,记录了主要肌肉群的肌电图活动和安装应变计平台的生物力学信号。在 US 单独试验中,腿部肌肉激活序列具有特征性:同侧,远端肌肉在近端肌肉之前被激活;对侧则相反。在 CSUS 试验中潜伏期较短。受试者会卸载受刺激的腿并将体重转移到支撑腿上。在 US 单独和 CSUS 试验中,由于准备卸载,每侧的腿部力量呈反向和不对称关系,而条件反应(CR)代表卸载准备,是对称的。在 US 单独试验中,中心垂直压力的轨迹最初向前移动(预备平衡反应)并向刺激侧移动,随后向支撑肢的一侧发生较大的横向移动。在 CSUS 试验中,向前移动不存在,但 CR(早期横向移动)代表了提前的预备性卸载。与 US 单独试验相比,站立受试者的经典条件下肢退缩反射的电生理和生物力学反应在 CSUS 试验中发生了显著变化,生物力学的敏感性更高。这些发现将为随后对一组小脑疾病患者的研究提供基础,已知小脑疾病患者建立程序性过程的成功率受损。