Schlindwein P, Mueller M, Bauermann T, Brandt T, Stoeter P, Dieterich M
Department of Neurology, Johannes Gutenberg University, Mainz, Germany.
Neuroimage. 2008 Jan 1;39(1):19-31. doi: 10.1016/j.neuroimage.2007.08.016. Epub 2007 Aug 25.
Short tone bursts trigger a vestibular evoked myogenic potential (VEMP), an inhibitory potential which reflects a component of the vestibulocollic reflex (VCR). These potentials arise as a result of activation of the sacculus and are expressed through the vestibulo-collic reflex (VCR). Up to now, the ascending projections of the sacculus are unknown in humans, only the representation of the semicircular canals or the entire vestibular nerve has been demonstrated. The aim of this study was to determine whether a sacculus stimulus that evoked VEMPs could activate vestibular cortical areas in fMRI. To determine this, we studied the differential effects of unilateral VEMP stimulation in 21 healthy right-handers in a clinical 1.5 T scanner while wearing piezo electric headphones. A unilateral VEMP stimulus and two auditory control stimuli were given in randomized order over the stimulated ear. A random effects statistical analysis was done with SPM2 (p<0.05, corrected). After exclusion of the auditory effects, the major findings were as follows: (i) significant activations were located in the multisensory cortical vestibular network within both hemispheres, including the posterior insular cortex, the middle and superior temporal gyri, and the inferior parietal cortex. (ii) The activation pattern was elicited bilaterally with a predominance of the right hemisphere in right-handers. (iii) Saccular vestibular projection was predominantly ipsilateral, whereas (iv) pure acoustic stimuli were processed with a predominance of the respective contralateral and mainly in the left hemisphere. This is the first demonstration by means of fMRI of the cortical representation of the saccular input at cortical level. The activation pattern is similar to that known from the stimulation of the entire vestibular nerve or the horizontal semicircular canal. Our data give evidence of a task-dependent separation of the processing within the vestibular otolith and the auditory systems in the two hemispheres.
短音爆诱发前庭诱发肌源性电位(VEMP),这是一种抑制性电位,反映了前庭脊髓反射(VCR)的一个组成部分。这些电位是球囊激活的结果,并通过前庭脊髓反射(VCR)表现出来。到目前为止,人类球囊的上行投射尚不清楚,仅证明了半规管或整个前庭神经的代表区。本研究的目的是确定诱发VEMP的球囊刺激是否能在功能磁共振成像(fMRI)中激活前庭皮质区域。为了确定这一点,我们在一台临床1.5T扫描仪中,让21名健康右利手受试者佩戴压电耳机,研究单侧VEMP刺激的不同效应。在受刺激耳上以随机顺序给予单侧VEMP刺激和两种听觉对照刺激。使用SPM2进行随机效应统计分析(p<0.05,校正)。排除听觉效应后,主要发现如下:(i)显著激活位于双侧半球的多感觉皮质前庭网络内,包括岛叶后皮质、颞中回和颞上回以及顶下小叶。(ii)激活模式在双侧诱发,右利手者以右侧半球为主。(iii)球囊前庭投射主要为同侧,而(iv)纯听觉刺激的处理以对侧为主,主要在左侧半球。这是首次通过功能磁共振成像在皮质水平证明球囊输入的皮质代表区。激活模式与刺激整个前庭神经或水平半规管时已知的模式相似。我们的数据证明了前庭耳石和听觉系统在两个半球内的任务依赖性处理分离。