Petacchi Augusto, Laird Angela R, Fox Peter T, Bower James M
Department of Biology, The University of Texas at San Antonio, San Antonio, Texas 78249, USA.
Hum Brain Mapp. 2005 May;25(1):118-28. doi: 10.1002/hbm.20137.
Over the past two decades neuroimaging data have accumulated showing that the cerebellum, traditionally viewed only as a motor structure, is also active in a wide variety of sensory and cognitive tasks. We have proposed that instead of explicit involvement in any particular motor, sensory, or cognitive task, the cerebellum performs a much more fundamental computation involving the active acquisition of sensory data. We carried out an activation likelihood estimate (ALE) meta-analysis to determine whether neuroimaging results obtained during a wide range of auditory tasks support this proposal. Specifically, we analyzed the coordinates of 231 activation foci obtained in 15 different auditory studies selected through an extensive search of the positron emission tomography (PET) and functional magnetic resonance imaging (fMRI) literature. The studies selected represent a wide variety of purely auditory tasks using highly controlled synthesized acoustic stimuli. The results clearly revealed that in addition to temporal auditory areas of cerebral cortex, specific regions in the cerebellum are activated consistently across studies regardless of the particular auditory task involved. In particular, one area in left lateral crus I area showed the greatest volume and ALE peak value among the extratemporal regions. A subanalysis was carried out that ruled out the specific association of this cerebellar cluster with attentional demand. The results are consistent with the hypothesis that the cerebellum may play a role in purely sensory auditory processing, and are discussed in light of the broader idea of the cerebellum subserving a fundamental sensory function.
在过去二十年中,神经影像学数据不断积累,表明传统上仅被视为运动结构的小脑,在各种感觉和认知任务中也会被激活。我们提出,小脑并非明确参与任何特定的运动、感觉或认知任务,而是执行一种更为基础的计算,涉及主动获取感觉数据。我们进行了一项激活可能性估计(ALE)元分析,以确定在广泛的听觉任务中获得的神经影像学结果是否支持这一观点。具体而言,我们分析了通过广泛检索正电子发射断层扫描(PET)和功能磁共振成像(fMRI)文献而挑选出的15项不同听觉研究中获得的231个激活灶的坐标。所选研究代表了使用高度受控的合成声学刺激的各种纯听觉任务。结果清楚地表明,除了大脑皮层的颞叶听觉区域外,无论涉及何种特定的听觉任务,小脑的特定区域在各项研究中均持续被激活。特别是,左侧小脑 crus I 区的一个区域在颞外区域中显示出最大的体积和ALE峰值。我们进行了一项子分析,排除了这个小脑簇与注意力需求的特定关联。这些结果与小脑可能在纯感觉听觉处理中发挥作用的假设一致,并根据小脑具有基本感觉功能这一更广泛的观点进行了讨论。