Anthropology Department, Vassar College, Poughkeepsie, New York.
Am J Primatol. 2018 Jul;80(7):e22876. doi: 10.1002/ajp.22876. Epub 2018 May 24.
Despite many studies of chimpanzee brain size growth, intraspecific variation is under-explored. Brain size data from chimpanzees of the Taï Forest and the Yerkes Primate Research Center enable a unique glimpse into brain growth variation as age at death is known for individuals, allowing cross-sectional growth curves to be estimated. Because Taï chimpanzees are from the wild but Yerkes apes are captive, potential environmental effects on neural development can also be explored. Previous research has revealed differences in growth and health between wild and captive primates, but such habitat effects have yet to be investigated for brain growth. Here, I use an iterative curve fitting procedure to estimate brain growth and regression parameters for each population, statistically comparing growth models using bootstrapped confidence intervals. Yerkes and Taï brain sizes overlap at all ages, although the sole Taï newborn is at the low end of captive neonatal variation. Growth rate and duration are statistically indistinguishable between the two populations. Resampling the Yerkes sample to match the Taï sample size and age group composition shows that ontogenetic variation in the two groups are remarkably similar despite the latter's limited size. Best fit growth curves for each sample indicate cessation of brain size growth at around 2 years, earlier than has previously been reported. The overall similarity between wild and captive chimpanzees points to the canalization of brain growth in this species.
尽管有许多关于黑猩猩大脑尺寸生长的研究,但种内变异仍未得到充分探索。来自泰伊森林和耶基斯灵长类动物研究中心的黑猩猩的大脑尺寸数据使我们能够独特地了解死亡年龄已知的个体的大脑生长变异情况,从而可以估计横断面生长曲线。由于泰伊黑猩猩来自野外,而耶基斯猿是圈养的,因此可以探索环境对神经发育的潜在影响。以前的研究揭示了野生和圈养灵长类动物在生长和健康方面的差异,但尚未对大脑生长进行这种栖息地影响的研究。在这里,我使用迭代曲线拟合程序来估计每个种群的大脑生长和回归参数,使用 bootstrap 置信区间对生长模型进行统计学比较。在所有年龄段,耶基斯和泰伊的大脑大小都有重叠,尽管唯一的泰伊新生儿处于圈养新生变化的低端。两个群体的生长率和持续时间在统计学上没有区别。对耶基斯样本进行重采样以匹配泰伊样本大小和年龄组组成表明,尽管后者的规模有限,但两组之间的个体发育变异非常相似。每个样本的最佳拟合生长曲线表明大脑大小的生长在大约 2 岁时停止,这比以前报道的要早。野生和圈养黑猩猩之间的总体相似性表明该物种的大脑生长具有 canalization 的特点。