Institute of Neuroscience, Université catholique de Louvain, Avenue Mounier 53, boîte COSY B1.53.04, 1200, Brussels, Belgium.
Psychological Sciences Research Institute, Université catholique de Louvain, Louvain-la-Neuve, Belgium.
Atten Percept Psychophys. 2021 Oct;83(7):2995-3007. doi: 10.3758/s13414-021-02301-5. Epub 2021 May 25.
Spatial locations of somatosensory stimuli are coded according to somatotopic (anatomical distribution of the sensory receptors on the skin surface) and spatiotopic (position of the body parts in external space) reference frames. This was mostly evidenced by means of temporal order judgment (TOJ) tasks in which participants discriminate the temporal order of two tactile stimuli, one applied on each hand. Because crossing the hands generates a conflict between anatomical and spatial responses, TOJ performance is decreased in such posture, except for congenitally blind people, suggesting a role of visual experience in somatosensory perception. In previous TOJ studies, stimuli were generally presented using the method of constant stimuli-that is, the repetition of a predefined sample of stimulus-onset asynchronies (SOA) separating the two stimuli. This method has the disadvantage that a large number of trials is needed to obtain reliable data when aiming at dissociating performances of groups characterized by different cognitive abilities. Indeed, each SOA among a large variety of different SOAs should be presented the same number of times irrespective of the participant's performance. This study aimed to replicate previous tactile TOJ data in sighted and blind participants with the adaptive psi method in order to validate a novel method that adapts the presented SOA according to the participant's performance. This allows to precisely estimate the temporal sensitivity of each participant while the presented stimuli are adapted to the participant's individual discrimination threshold. We successfully replicated previous findings in both sighted and blind participants, corroborating previous data using a more suitable psychophysical tool.
躯体感觉刺激的空间位置是根据躯体感觉的感觉受体在皮肤表面的分布(躯体定位)和身体部位在外部空间的位置(空间定位)来编码的。这主要是通过时间顺序判断(TOJ)任务来证明的,在这些任务中,参与者判断两个触觉刺激的时间顺序,每个刺激应用于一只手。因为双手交叉会产生解剖和空间反应之间的冲突,所以在这种姿势下,TOJ 表现会下降,除了先天性盲人之外,这表明视觉经验在躯体感觉感知中起作用。在之前的 TOJ 研究中,刺激通常使用恒定刺激的方法呈现,即重复预定义的刺激起始时间间隔(SOA)样本,以分离两个刺激。这种方法的缺点是,当旨在区分具有不同认知能力的组的表现时,需要大量的试验来获得可靠的数据。事实上,无论参与者的表现如何,每种 SOA 都应该以相同的次数呈现。本研究旨在通过自适应 psi 方法在视力正常和盲视参与者中复制先前的触觉 TOJ 数据,以验证一种新的方法,该方法根据参与者的表现自适应呈现的 SOA。这允许在呈现的刺激适应参与者的个体辨别阈值的同时,精确估计每个参与者的时间敏感性。我们成功地在视力正常和盲视参与者中复制了先前的发现,用更合适的心理物理工具证实了先前的数据。