Pizzimenti Marc A, Darling Warren G, Rotella Diane L, McNeal David W, Herrick James L, Ge Jizhi, Stilwell-Morecraft Kimberly S, Morecraft Robert J
Department of Anatomy and Cell Biology, Carver College of Medicine, The University of Iowa, Iowa City, Iowa 52242, USA.
J Neurophysiol. 2007 Aug;98(2):1015-29. doi: 10.1152/jn.00354.2007. Epub 2007 Jun 6.
A modified "Klüver" or dexterity board was developed to assess fine control of hand and digit movements by nonhuman primates during the acquisition of small food pellets from wells of different diameter. The primary advantages of the new device over those used previously include standardized positioning of target food pellets and controlled testing of each hand without the need for restraints, thereby allowing the monkey to move freely about the cage. Three-dimensional video analysis of hand motion was used to provide measures of reaching accuracy and grip aperture, as well as temporal measures of reach duration and food-pellet manipulation. We also present a validated performance score based on these measures, which serves as an indicator of successful food-pellet retrieval. Tests in three monkeys show that the performance score is an effective measure with which to study fine motor control associated with learning and handedness. We also show that the device and performance scores are effective for differentiating the effects of localized injury to motor areas of the cerebral cortex.
一种改良的“克吕弗”灵巧板被开发出来,用于评估非人类灵长类动物在从不同直径的孔中获取小食物颗粒过程中手部和手指运动的精细控制。与之前使用的设备相比,这种新设备的主要优点包括目标食物颗粒的标准化定位以及对每只手进行可控测试,无需约束,从而使猴子能够在笼子里自由活动。手部运动的三维视频分析用于提供到达准确性和抓握孔径的测量,以及到达持续时间和食物颗粒操作的时间测量。我们还基于这些测量提出了一个经过验证的性能分数,它作为成功获取食物颗粒的指标。对三只猴子的测试表明,该性能分数是研究与学习和利手相关的精细运动控制的有效指标。我们还表明,该设备和性能分数对于区分大脑皮质运动区域局部损伤的影响是有效的。