机械感受性Aβ初级传入神经在功能相关的时间尺度上辨别自然主义的社交触摸输入。
Mechanoreceptive Aβ primary afferents discriminate naturalistic social touch inputs at a functionally relevant time scale.
作者信息
Xu Shan, Hauser Steven C, Nagi Saad S, Jablonski James A, Rezaei Merat, Jarocka Ewa, Marshall Andrew G, Olausson Håkan, McIntyre Sarah, Gerling Gregory J
机构信息
University of Virginia, Charlottesville, VA 22903 USA.
Linkoping University, Linkoping, Sweden.
出版信息
IEEE Trans Affect Comput. 2025 Jan-Mar;16(1):346-359. doi: 10.1109/taffc.2024.3435060. Epub 2024 Jul 29.
Interpersonal touch is an important channel of social emotional interaction. How these physical skin-to-skin touch expressions are processed in the peripheral nervous system is not well understood. From microneurography recordings in humans, we evaluated the capacity of six subtypes of cutaneous mechanoreceptive afferents to differentiate human-delivered social touch expressions. Leveraging statistical and classification analyses, we found that single units of multiple mechanoreceptive Aβ subtypes, especially slowly adapting type II (SA-II) and fast adapting hair follicle afferents (HFA), can reliably differentiate social touch expressions at accuracies similar to human recognition. We then identified the most informative firing patterns of SA-II and HFA afferents, which indicate that average durations of 3-4 s of firing provide sufficient discriminative information. Those two subtypes also exhibit robust tolerance to spike-timing shifts of up to 10-20 ms, varying with touch expressions due to their specific firing properties. Greater shifts in spike-timing, however, can change a firing pattern's envelope to resemble that of another expression and drastically compromise an afferent's discrimination capacity. Altogether, the findings indicate that SA-II and HFA afferents differentiate the skin contact of social touch at time scales relevant for such interactions, which are 1-2 orders of magnitude longer than those for non-social touch.
人际接触是社会情感互动的重要渠道。目前人们对这些肌肤接触的表达方式在周围神经系统中是如何被处理的还了解甚少。通过对人类的微神经图记录,我们评估了六种皮肤机械感受器传入神经亚型区分人类给予的社交接触表达方式的能力。利用统计和分类分析,我们发现多个机械感受性Aβ亚型的单个神经元,特别是慢适应II型(SA-II)和快适应毛囊传入神经(HFA),能够以与人类识别相似的准确率可靠地区分社交接触表达方式。然后,我们确定了SA-II和HFA传入神经最具信息量的放电模式,这表明3-4秒的平均放电持续时间提供了足够的辨别信息。由于其特定的放电特性,这两种亚型对高达10-20毫秒的尖峰时间偏移也表现出强大的耐受性,且会因接触表达方式的不同而有所变化。然而,更大的尖峰时间偏移会改变放电模式的包络,使其类似于另一种表达方式,从而严重损害传入神经的辨别能力。总的来说,研究结果表明,SA-II和HFA传入神经在与社交互动相关的时间尺度上区分社交接触的皮肤接触,这比非社交接触的时间尺度长1-2个数量级。
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