Emmorey Karen, Allen John S, Bruss Joel, Schenker Natalie, Damasio Hanna
Laboratory for Cognitive Neuroscience, The Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2003 Aug 19;100(17):10049-54. doi: 10.1073/pnas.1730169100. Epub 2003 Aug 6.
We investigated whether variation in auditory experience in humans during development alters the macroscopic neuroanatomy of primary or auditory association cortices. Volumetric analyses were based on MRI data from 25 congenitally deaf subjects and 25 hearing subjects, all right-handed. The groups were matched for gender and age. Gray and white matter volumes were determined for the temporal lobe, superior temporal gyrus, Heschl's gyrus (HG), and the planum temporale. Deaf and hearing subjects did not differ in the total volume or the gray matter volume of HG, which suggests that auditory deafferentation does not lead to cell loss within primary auditory cortex in humans. However, deaf subjects had significantly larger gray matter-white matter ratios than hearing subjects in HG, with deaf subjects exhibiting significantly less white matter in both left and right HG. Deaf subjects also had higher gray matter-white matter ratios in the rest of the superior temporal gyrus, but this pattern was not observed for the temporal lobe as a whole. These findings suggest that auditory deprivation from birth results in less myelination and/or fewer fibers projecting to and from auditory cortices. Finally, the volumes of planum temporale and HG were significantly larger in the left hemisphere for both groups, suggesting that leftward asymmetries within "auditory" cortices do not arise from experience with auditory processing.
我们研究了人类发育过程中听觉体验的差异是否会改变初级听觉皮层或听觉联合皮层的宏观神经解剖结构。体积分析基于25名先天性耳聋受试者和25名听力正常受试者的MRI数据,所有受试者均为右利手。两组在性别和年龄上相匹配。测定了颞叶、颞上回、颞横回(HG)和颞平面的灰质和白质体积。耳聋受试者和听力正常受试者的HG总体积或灰质体积没有差异,这表明听觉传入缺失不会导致人类初级听觉皮层内的细胞丢失。然而,耳聋受试者HG的灰质-白质比显著高于听力正常受试者,耳聋受试者左右HG的白质均显著减少。耳聋受试者颞上回其余部分的灰质-白质比也较高,但整个颞叶未观察到这种模式。这些发现表明,出生时的听觉剥夺导致髓鞘形成减少和/或投射到听觉皮层和从听觉皮层投射出的纤维减少。最后,两组受试者左半球的颞平面和HG体积均显著更大,这表明“听觉”皮层内的左侧不对称并非源于听觉处理经验。