Gonda Multidisciplinary Brain Research Center, Bar-Ilan University, Ramat Gan, 5290002, Israel
Ernst Strüngmann Institute for Neuroscience in Cooperation with Max Planck Society, Frankfurt 60528, Germany.
J Neurosci. 2021 Dec 8;41(49):10108-10119. doi: 10.1523/JNEUROSCI.0135-21.2021. Epub 2021 Oct 29.
Multisensory plasticity enables our senses to dynamically adapt to each other and the external environment, a fundamental operation that our brain performs continuously. We searched for neural correlates of adult multisensory plasticity in the dorsal medial superior temporal area (MSTd) and the ventral intraparietal area (VIP) in 2 male rhesus macaques using a paradigm of supervised calibration. We report little plasticity in neural responses in the relatively low-level multisensory cortical area MSTd. In contrast, neural correlates of plasticity are found in higher-level multisensory VIP, an area with strong decision-related activity. Accordingly, we observed systematic shifts of VIP tuning curves, which were reflected in the choice-related component of the population response. This is the first demonstration of neuronal calibration, together with behavioral calibration, in single sessions. These results lay the foundation for understanding multisensory neural plasticity, applicable broadly to maintaining accuracy for sensorimotor tasks. Multisensory plasticity is a fundamental and continual function of the brain that enables our senses to adapt dynamically to each other and to the external environment. Yet, very little is known about the neuronal mechanisms of multisensory plasticity. In this study, we searched for neural correlates of adult multisensory plasticity in the dorsal medial superior temporal area (MSTd) and the ventral intraparietal area (VIP) using a paradigm of supervised calibration. We found little plasticity in neural responses in the relatively low-level multisensory cortical area MSTd. By contrast, neural correlates of plasticity were found in VIP, a higher-level multisensory area with strong decision-related activity. This is the first demonstration of neuronal calibration, together with behavioral calibration, in single sessions.
多感觉可塑性使我们的感觉能够相互动态适应和对外界环境,这是我们的大脑持续进行的基本操作。我们使用监督校准范式,在两只雄性恒河猴的背内侧上颞区(MSTd)和腹侧顶内区(VIP)中寻找成人多感觉可塑性的神经相关物。我们报告说,在相对较低水平的多感觉皮质区 MSTd 中,神经反应的可塑性很小。相比之下,可塑性的神经相关物存在于具有较强决策相关活动的高级多感觉 VIP 中。因此,我们观察到 VIP 调谐曲线的系统变化,这反映在群体反应的与选择相关的成分中。这是首次在单次会议中同时进行神经元校准和行为校准的演示。这些结果为理解多感觉神经可塑性奠定了基础,广泛适用于维持感觉运动任务的准确性。多感觉可塑性是大脑的基本和持续功能,使我们的感觉能够相互动态适应和对外界环境。然而,对于多感觉可塑性的神经机制知之甚少。在这项研究中,我们使用监督校准范式,在背内侧上颞区(MSTd)和腹侧顶内区(VIP)中寻找成人多感觉可塑性的神经相关物。我们发现,在相对较低水平的多感觉皮质区 MSTd 中,神经反应的可塑性很小。相比之下,可塑性的神经相关物存在于 VIP 中,这是一个具有强烈决策相关活动的高级多感觉区。这是首次在单次会议中同时进行神经元校准和行为校准的演示。