Department of Anatomy, Physiology, and Pharmacology, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.
Genes Brain Behav. 2021 Jan;20(1):e12659. doi: 10.1111/gbb.12659. Epub 2020 May 27.
The posterior parietal cortex (PPC) participates in cognitive processes including working memory (WM), sensory evidence accumulation, and perceptually guided decision making. However, surprisingly little work has used temporally precise manipulations to dissect its role in different epochs of behavior taking place over short timespans, such as WM tasks. As a result, a consistent view of the temporally precise role of the PPC in these processes has not been described. In the present study, we investigated the temporally specific role of the PPC in the Trial-Unique, Nonmatching-to-Location (TUNL) task, a touchscreen-based, visuospatial WM task that relies on the PPC. To disrupt PPC activity in a temporally precise manner, we applied mild intracranial electrical stimulation (ICES). We found that intra-PPC ICES (100 μA) significantly impaired accuracy in TUNL without significantly altering response latency. Moreover, we found that the impairment was specific to ICES applied during the delay and test phases of TUNL. Consistent with previous reports showing delay- and choice-specific neuronal activity in the PPC, the results provide evidence that the rat PPC is required for maintaining memory representations of stimuli over a delay period as well as for making successful comparisons and choices between test stimuli. In contrast, the PPC appears not to be critical for initial encoding of sample stimuli. This pattern of results may indicate that early encoding of visual stimuli is independent of the PPC or that the PPC becomes engaged only when visual stimuli are spatially complex or involve memory or decision making.
顶叶后皮质(PPC)参与认知过程,包括工作记忆(WM)、感官证据积累和知觉引导的决策。然而,令人惊讶的是,很少有研究使用时间精确的操作来剖析其在短时间内发生的行为的不同时期的作用,例如 WM 任务。因此,尚未描述 PPC 在这些过程中的时间精确作用的一致观点。在本研究中,我们研究了 PPC 在基于触摸屏的视觉空间 WM 任务——独特试次、非匹配定位(TUNL)任务中的时间特异性作用,该任务依赖于 PPC。为了以时间精确的方式破坏 PPC 活动,我们施加了轻度的颅内电刺激(ICES)。我们发现,内 PPC ICES(100μA)显著降低了 TUNL 的准确性,而对反应潜伏期没有显著影响。此外,我们发现这种损害仅发生在 TUNL 的延迟和测试阶段应用 ICES 时。与先前报道的 PPC 中延迟和选择特异性神经元活动一致,结果表明,大鼠 PPC 是维持刺激记忆表示在延迟期间的必需的,以及用于在测试刺激之间进行成功的比较和选择。相比之下,PPC 似乎对于样本刺激的初始编码不是关键的。这种结果模式可能表明,视觉刺激的早期编码与 PPC 无关,或者只有当视觉刺激空间复杂或涉及记忆或决策时,PPC 才会参与。