Malfait Nicole, Ostry David J
Department of Psychology, McGill University, Montreal, Quebec H3A 1B1, Canada.
J Neurosci. 2004 Sep 15;24(37):8084-9. doi: 10.1523/JNEUROSCI.1742-04.2004.
Recently, Criscimagna-Hemminger et al. (2003) reported a pattern of generalization of force-field adaptation between arms that differs from the pattern that occurs across different configurations of the same arm. Although the intralimb pattern of generalization points to an intrinsic encoding of dynamics, the interlimb transfer described by these authors indicates that information about force is represented in a frame of reference external to the body. In the present study, subjects adapted to a viscous curl-field in two experimental conditions. In one condition, the field was introduced suddenly and produced clear deviations in hand paths; in the second condition, the field was introduced gradually so that at no point during the adaptation process could subjects observe or did they have to correct for a substantial kinematic error. In the first case, a pattern of interlimb transfer consistent with Criscimagna-Hemminger et al. (2003) was observed, whereas no transfer of learning between limbs occurred in the second condition. The findings suggest that there is limited transfer of fine compensatory-force adjustment between limbs. Transfer, when it does occur, may be primarily the result of a cognitive strategy that arises as a result of the sudden introduction of load and associated kinematic error.
最近,克里斯西马尼亚 - 亨明格等人(2003年)报告了一种双臂之间力场适应的泛化模式,该模式不同于同一手臂不同构型之间出现的模式。尽管肢体内部的泛化模式指向动力学的内在编码,但这些作者所描述的肢体间转移表明,关于力的信息是在身体外部的参考系中表征的。在本研究中,受试者在两种实验条件下适应粘性卷曲场。在一种条件下,场突然引入,导致手部路径出现明显偏差;在第二种条件下,场逐渐引入,使得在适应过程中的任何时候,受试者都无法观察到或无需校正明显的运动学误差。在第一种情况下,观察到了与克里斯西马尼亚 - 亨明格等人(2003年)一致的肢体间转移模式,而在第二种条件下,肢体之间未发生学习转移。研究结果表明,肢体之间精细补偿力调整的转移是有限的。当转移确实发生时,可能主要是由于突然引入负载和相关运动学误差而产生的认知策略的结果。