Department of Psychology and Behavioral Sciences, Zhejiang University, Hangzhou, China.
Department of Neuroscience, Max Planck Institute for Empirical Aesthetics, Frankfurt am Main, Germany.
Hum Brain Mapp. 2023 Jul;44(10):4165-4182. doi: 10.1002/hbm.26337. Epub 2023 May 17.
Understanding the evolutionarily conserved feature of functional laterality in the habenula has been attracting attention due to its potential role in human cognition and neuropsychiatric disorders. Deciphering the structure of the human habenula remains to be challenging, which resulted in inconsistent findings for brain disorders. Here, we present a large-scale meta-analysis of the left-right differences in the habenular volume in the human brain to provide a clearer picture of the habenular asymmetry. We searched PubMed, Web of Science, and Google Scholar for articles that reported volume data of the bilateral habenula in the human brain, and assessed the left-right differences. We also assessed the potential effects of several moderating variables including the mean age of the participants, magnetic field strengths of the scanners and different disorders by using meta-regression and subgroup analysis. In total 52 datasets (N = 1427) were identified and showed significant heterogeneity in the left-right differences and the unilateral volume per se. Moderator analyses suggested that such heterogeneity was mainly due to different MRI scanners and segmentation approaches used. While inversed asymmetry patterns were suggested in patients with depression (leftward) and schizophrenia (rightward), no significant disorder-related differences relative to healthy controls were found in either the left-right asymmetry or the unilateral volume. This study provides useful data for future studies of brain imaging and methodological developments related to precision habenula measurements, and also helps to further understand potential roles of the habenula in various disorders.
由于缰核在人类认知和神经精神疾病中的潜在作用,其功能偏侧性的进化保守特征引起了人们的关注。解析人类缰核的结构仍然具有挑战性,这导致了与大脑疾病相关的研究结果不一致。在这里,我们对人类大脑缰核体积的左右差异进行了大规模的荟萃分析,以更清晰地了解缰核的不对称性。我们在 PubMed、Web of Science 和 Google Scholar 上搜索了报道人类大脑双侧缰核体积数据的文章,并评估了左右差异。我们还通过元回归和亚组分析评估了几个调节变量(包括参与者的平均年龄、扫描仪的磁场强度和不同疾病)的潜在影响。共确定了 52 个数据集(N=1427),这些数据集在左右差异和单侧体积本身方面存在显著的异质性。调节分析表明,这种异质性主要归因于使用的不同 MRI 扫描仪和分割方法。虽然抑郁症(左侧)和精神分裂症(右侧)患者存在反转的不对称模式,但与健康对照组相比,无论是左右不对称还是单侧体积,都没有发现与疾病相关的显著差异。这项研究为未来与缰核精确测量相关的脑影像学研究和方法学发展提供了有用的数据,也有助于进一步了解缰核在各种疾病中的潜在作用。