Sherwood Chet C, Wahl Elizabeth, Erwin Joseph M, Hof Patrick R, Hopkins William D
Department of Anthropology, The George Washington University, 2110 G Street NW, Washington, DC 20052, USA.
J Comp Neurol. 2007 Aug 1;503(4):525-37. doi: 10.1002/cne.21399.
Like humans, chimpanzees display robust and consistent hand preferences during the performance of certain tasks. Although correlations have been demonstrated between gross anatomic measures of primary motor cortex asymmetry and handedness in captive chimpanzees, the relationship between histological architecture and behavioral lateralization has not yet been investigated. Therefore, we examined interhemispheric asymmetry of several different microstructural characteristics of the primary motor cortex in the region of hand representation from 18 chimpanzees tested on a coordinated bimanual task before death. At the population level our data showed leftward bias for higher layer II/III neuron density. Of note, however, there was no population-level asymmetry in the areal fraction of Nissl-stained cell bodies, a finding that differs from previous studies of this cortical region in humans. Nonetheless, we found that asymmetry in the density of layer II/III parvalbumin-immunoreactive interneurons was the best predictor of individual hand preference. These results suggest that histological asymmetries are related to handedness in chimpanzees, while overall patterns of asymmetry at the population level might differ from humans.
与人类一样,黑猩猩在执行某些任务时表现出强烈且一致的用手偏好。尽管在圈养黑猩猩中,已证明初级运动皮层不对称的大体解剖学测量与用手习惯之间存在相关性,但组织学结构与行为偏侧化之间的关系尚未得到研究。因此,我们在18只黑猩猩死亡前对其进行协调双手任务测试,检查了手部代表区域初级运动皮层几种不同微观结构特征的半球间不对称性。在群体水平上,我们的数据显示,较高的II/III层神经元密度存在向左的偏向。然而,值得注意的是,尼氏染色细胞体的面积分数在群体水平上没有不对称性,这一发现与之前对人类该皮层区域的研究不同。尽管如此,我们发现II/III层小白蛋白免疫反应性中间神经元密度的不对称性是个体用手偏好的最佳预测指标。这些结果表明,组织学不对称与黑猩猩的用手习惯有关,而群体水平上的总体不对称模式可能与人类不同。