Chae Soyoung, Sihn Duho, Kim Sung-Phil
Department of Biomedical Engineering, Ulsan National Institute of Science and Technology, Ulsan 44919, Korea.
Exp Neurobiol. 2023 Aug 31;32(4):271-284. doi: 10.5607/en23020.
Decision-making is a complex process that involves the integration and interpretation of sensory information to guide actions. The rodent motor cortex, which is generally involved in motor planning and execution, also plays a critical role in decision-making processes. In perceptual delayed-response tasks, the rodent motor cortex can represent sensory cues, as well as the decision of where to move. However, it remains unclear whether erroneous decisions arise from incorrect encoding of sensory information or improper utilization of the collected sensory information in the motor cortex. In this study, we analyzed the rodent anterior lateral motor cortex (ALM) while the mice performed perceptual delayed-response tasks. We divided population activities into sensory and choice signals to separately examine the encoding and utilization of sensory information. We found that the encoding of sensory information in the error trials was similar to that in the hit trials, whereas choice signals evolved differently between the error and hit trials. In error trials, choice signals displayed an offset in the opposite direction of instructed licking even before stimulus presentation, and this tendency gradually increased after stimulus onset, leading to incorrect licking. These findings suggest that decision errors are caused by biases in choice-related activities rather than by incorrect sensory encoding. Our study elaborates on the understanding of decision-making processes by providing neural substrates for erroneous decisions.
决策是一个复杂的过程,涉及对感官信息的整合和解读以指导行动。啮齿动物的运动皮层通常参与运动规划和执行,在决策过程中也起着关键作用。在感知延迟反应任务中,啮齿动物的运动皮层可以表征感官线索以及移动方向的决策。然而,错误决策是源于感官信息的编码错误还是运动皮层中对所收集感官信息的不当利用仍不清楚。在本研究中,我们在小鼠执行感知延迟反应任务时分析了其前外侧运动皮层(ALM)。我们将群体活动分为感官信号和选择信号,以分别检查感官信息的编码和利用情况。我们发现,错误试验中感官信息的编码与命中试验中的相似,而错误试验和命中试验之间选择信号的演变有所不同。在错误试验中,甚至在刺激呈现之前,选择信号就显示出与指示舔舐方向相反的偏移,并且这种趋势在刺激开始后逐渐增加,导致错误的舔舐。这些发现表明,决策错误是由与选择相关活动中的偏差引起的,而不是由错误的感官编码引起的。我们的研究通过为错误决策提供神经基础,深化了对决策过程的理解。