School of Biological and Health Systems Engineering, Arizona State University, P.O. Box 879709, Tempe, AZ, 85287-9709, USA.
Sci Rep. 2021 Apr 27;11(1):9060. doi: 10.1038/s41598-021-88278-5.
Although multisensory integration is crucial for sensorimotor function, it is unclear how visual and proprioceptive sensory cues are combined in the brain during motor behaviors. Here we characterized the effects of multisensory interactions on local field potential (LFP) activity obtained from the superior parietal lobule (SPL) as non-human primates performed a reaching task with either unimodal (proprioceptive) or bimodal (visual-proprioceptive) sensory feedback. Based on previous analyses of spiking activity, we hypothesized that evoked LFP responses would be tuned to arm location but would be suppressed on bimodal trials, relative to unimodal trials. We also expected to see a substantial number of recording sites with enhanced beta band spectral power for only one set of feedback conditions (e.g. unimodal or bimodal), as was previously observed for spiking activity. We found that evoked activity and beta band power were tuned to arm location at many individual sites, though this tuning often differed between unimodal and bimodal trials. Across the population, both evoked and beta activity were consistent with feedback-dependent tuning to arm location, while beta band activity also showed evidence of response suppression on bimodal trials. The results suggest that multisensory interactions can alter the tuning and gain of arm position-related LFP activity in the SPL.
尽管多感觉整合对于运动感觉功能至关重要,但在运动行为过程中大脑如何整合视觉和本体感觉线索尚不清楚。在这里,我们描述了多感觉相互作用对非人类灵长类动物进行到达任务时从顶上小叶(SPL)获得的局部场电位(LFP)活动的影响,这些任务具有单一感觉(本体感觉)或双重感觉(视觉-本体感觉)反馈。基于先前对尖峰活动的分析,我们假设诱发的 LFP 反应将针对手臂位置进行调整,但相对于单一感觉试验,在双重感觉试验中会受到抑制。我们还期望看到大量记录位点的β波段谱功率仅增强一个反馈条件(例如单一感觉或双重感觉),这与之前观察到的尖峰活动一样。我们发现,在许多单个部位,诱发的活动和β波段功率与手臂位置相关,但这种调整在单一感觉和双重感觉试验之间通常不同。在整个群体中,无论是诱发的还是β波段的活动都与手臂位置的反馈依赖性调谐一致,而β波段活动也显示出在双重感觉试验中存在反应抑制的证据。结果表明,多感觉相互作用可以改变 SPL 中与手臂位置相关的 LFP 活动的调谐和增益。