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Deep Brain Stimulation of the Subthalamic Nucleus Does Not Affect the Decrease of Decision Threshold during the Choice Process When There Is No Conflict Time Pressure or Reward

机译:在没有冲突时间压力或报酬的情况下对丘脑丘脑底核的深层刺激不会影响选择过程中决策阈值的降低。

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摘要

During a decision process, the evidence supporting alternative options is integrated over time, and the choice is made when the accumulated evidence for one of the options reaches a decision threshold. Humans and animals have an ability to control the decision threshold, that is, the amount of evidence that needs to be gathered to commit to a choice, and it has been proposed that the subthalamic nucleus (STN) is important for this control. Recent behavioral and neurophysiological data suggest that, in some circumstances, the decision threshold decreases with time during choice trials, allowing overcoming of indecision during difficult choices. Here we asked whether this within-trial decrease of the decision threshold is mediated by the STN and if it is affected by disrupting information processing in the STN through deep brain stimulation (DBS). We assessed 13 patients with Parkinson disease receiving bilateral STN DBS six or more months after the surgery, 11 age-matched controls, and 12 young healthy controls. All participants completed a series of decision trials, in which the evidence was presented in discrete time points, which allowed more direct estimation of the decision threshold. The participants differed widely in the slope of their decision threshold, ranging from constant threshold within a trial to steeply decreasing. However, the slope of the decision threshold did not depend on whether STN DBS was switched on or off and did not differ between the patients and controls. Furthermore, there was no difference in accuracy and RT between the patients in the on and off stimulation conditions and healthy controls. Previous studies that have reported modulation of the decision threshold by STN DBS or unilateral subthalamotomy in Parkinson disease have involved either fast decision-making under conflict or time pressure or in anticipation of high reward. Our findings suggest that, in the absence of reward, decision conflict, or time pressure for decision-making, the STN does not play a critical role in modulating the within-trial decrease of decision thresholds during the choice process.
机译:在决策过程中,支持替代选择的证据会随着时间的流逝而集成,并且当其中一个选择的累积证据达到决策阈值时,就会做出选择。人和动物具有控制决策阈值的能力,也就是控制做出选择所需的证据量,并且有人提出,丘脑底核(STN)对于这种控制很重要。最近的行为和神经生理学数据表明,在某些情况下,选择阈值的决定阈值会随着时间的推移而降低,从而可以克服困难选择过程中的犹豫不决。在这里,我们询问决策阈值的这种试探性降低是否由STN介导,并且是否受到深脑刺激(DBS)干扰STN中信息处理的影响。我们评估了13例帕金森病患者在术后六个月或更长时间接受双侧STN DBS,11例年龄匹配的对照和12例年轻健康对照。所有参与者都完成了一系列决策试验,其中证据在离散的时间点上显示,从而可以更直接地估算决策阈值。参与者的决策阈值斜率差异很大,范围从试验中的恒定阈值到急剧下降。但是,决策阈值的斜率不取决于STN DBS是打开还是关闭,并且患者和对照组之间没有差异。此外,在开启和关闭刺激条件下的患者与健康对照组之间的准确性和RT均无差异。先前的研究报道了STN DBS或单侧丘脑下裂治疗帕金森病对决策阈值的调节,涉及在冲突或时间压力下进行快速决策,或期望获得高回报。我们的发现表明,在没有奖励,决策冲突或决策时间压力的情况下,STN在选择过程中对调节决策阈值在试验范围内的降低起着关键作用。

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