Donders Institute for Brain, Cognition and Behaviour, Radboud University Nijmegen, Nijmegen, The Netherlands.
J Neurophysiol. 2023 Sep 1;130(3):640-651. doi: 10.1152/jn.00197.2023. Epub 2023 Aug 16.
Decisions for action are accompanied by a continual processing of sensory information, sometimes resulting in a revision of the initial choice, called a change of mind (CoM). Although the motor system is tuned during the formation of a reach decision, it is unclear whether its preparatory state differs between CoM and non-CoM decisions. To test this, participants ( = 14) viewed a random-dot motion (RDM) stimulus of various coherence levels for a random viewing duration. At the onset of a mechanical perturbation that rapidly stretched the pectoralis muscle, they indicated the perceived motion direction by making a reaching movement to one of two targets. Using electromyography (EMG), we quantified the reflex gains of the pectoralis and posterior deltoid muscles. Results show that reflex gains scaled with both the coherence level and the viewing duration of the stimulus. We fit a drift diffusion model (DDM) to the behavioral choices. The decision variable (DV), derived from the DDM, correlated well with the measured reflex gain at the single-trial level. However, when matched on DV magnitude, reflex gains were significantly lower in CoM than non-CoM trials. We conclude that the internal state of the motor system, as measured by the spinal reflexes, reflects the continual deliberation on sensory evidence for action selection, including the postdecisional evidence that can lead to a change of mind. Using behavioral findings, EMG, and computational modeling, we show that not only the perceptual decision outcome but also the accumulating evidence for that outcome is continuously sent to the relevant muscles. Moreover, we show that an upcoming change of mind can be detected in the motor periphery, suggesting that a correlate of the internal decision making process is being sent along.
行动决策伴随着持续的感觉信息处理,有时会导致最初选择的修订,即思维改变(CoM)。尽管在形成到达决策时,运动系统会进行调整,但目前尚不清楚其预备状态在 CoM 和非 CoM 决策之间是否存在差异。为了检验这一点,参与者(n=14)观看了各种相干水平的随机点运动(RDM)刺激,观看时间随机。在机械扰动开始时,该扰动会迅速拉伸胸大肌,他们通过向两个目标之一进行到达运动来指示感知到的运动方向。使用肌电图(EMG),我们量化了胸大肌和后三角肌的反射增益。结果表明,反射增益与刺激的相干水平和观看时间都有关。我们使用漂移扩散模型(DDM)对行为选择进行拟合。从 DDM 得出的决策变量(DV)在单次试验水平上与测量的反射增益高度相关。然而,当根据 DV 幅度进行匹配时,CoM 试验中的反射增益明显低于非 CoM 试验。我们得出结论,运动系统的内部状态,如脊髓反射所测量的,反映了对感觉证据进行持续审议以进行行动选择,包括可能导致思维改变的决策后证据。我们使用行为发现、EMG 和计算建模表明,不仅感知决策结果,而且对该结果的累积证据也会不断发送到相关肌肉。此外,我们表明,即将发生的思维改变可以在运动外围检测到,这表明内部决策过程的相关物正在发送。