Moro Andrea Stefano, Saccenti Daniele, Ferro Mattia, Scaini Simona, Malgaroli Antonio, Lamanna Jacopo
Department of Psychology, Sigmund Freud University of Milan, 20143 Milan, Italy.
Center for Behavioral Neuroscience and Communication (BNC), Vita-Salute San Raffaele University, 20132 Milan, Italy.
Brain Sci. 2023 Feb 26;13(3):403. doi: 10.3390/brainsci13030403.
In decision making, the subjective value of a reward declines with the delay to its receipt, describing a hyperbolic function. Although this phenomenon, referred to as delay discounting (DD), has been extensively characterized and reported in many animal species, still, little is known about the neuronal processes that support it. Here, after drawing a comprehensive portrait, we consider the latest neuroimaging and lesion studies, the outcomes of which often appear contradictory among comparable experimental settings. In the second part of the manuscript, we focus on a more recent and effective route of investigation: non-invasive brain stimulation (NIBS). We provide a comprehensive review of the available studies that applied transcranial magnetic stimulation (TMS) and transcranial direct current stimulation (tDCS) to affect subjects' performance in DD tasks. The aim of our survey is not only to highlight the superiority of NIBS in investigating DD, but also to suggest targets for future experimental studies, since the regions considered in these studies represent only a fraction of the possible ones. In particular, we argue that, based on the available neurophysiological evidence from lesion and brain imaging studies, a very promising and underrepresented region for future neuromodulation studies investigating DD is the orbitofrontal cortex.
在决策过程中,奖励的主观价值会随着获得奖励的延迟而下降,呈现出双曲线函数关系。尽管这种被称为延迟折扣(DD)的现象已在许多动物物种中得到广泛描述和报道,但对于支持它的神经过程仍知之甚少。在此,在描绘出一幅全面的图景之后,我们考量了最新的神经影像学和损伤研究,其结果在可比的实验设置中往往显得相互矛盾。在本文的第二部分,我们聚焦于一条更新且有效的研究途径:非侵入性脑刺激(NIBS)。我们对现有的将经颅磁刺激(TMS)和经颅直流电刺激(tDCS)应用于影响受试者在延迟折扣任务中表现的研究进行了全面综述。我们这项调查的目的不仅是要突出非侵入性脑刺激在研究延迟折扣方面的优势,还要为未来的实验研究提出靶点,因为这些研究中所考虑的脑区只是可能脑区的一小部分。特别是,我们认为,基于来自损伤和脑成像研究的现有神经生理学证据,对于未来研究延迟折扣的神经调节研究而言,一个非常有前景且研究较少的脑区是眶额皮质。