ArticleThe Journal of physiology2025
Robust coupling between the C-tactile afferent and the hair follicle in humans.
Article in The Journal of physiology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 4 papers.
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Who cites it
4 citing papers in PubMed.
- Functional and molecular diversity of human C-fibers in pain modulation.Current opinion in supportive and palliative care · 2026Review
- Oxytocin Modulation of Spinal Circuits Drives Therapeutic Benefits of Massage.bioRxiv : the preprint server for biology · 2026Article
- A Reference Atlas of the Human Dorsal Root Ganglion.bioRxiv : the preprint server for biology · 2025Article
- C-tactile afferents: The mystery of human emotional touch has been hidden hair-deep.The Journal of physiology · 2025Article
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Authors and funding
14 authors.
Funding
Abstract
C-low-threshold-mechanoreceptors (C-LTMR) were first discovered in the cat over 80 years ago and were subsequently documented in multiple mammalian species, including humans. Although their intimate association with hair follicles has been documented in mouse skin innervated by spinal ganglia, the functional anatomy in human skin is not known. The present study aimed to establish whether human C-LTMRs, also referred to as C-tactile (CT) afferents, have a functional association with hair follicles by determining their response to hair deflection using microneurography. Recordings from 15 consecutive CT afferents where the response to hair deflection was investigated showed that individual CT afferents respond to selective hair deflection. Mechanical hair plucking evoked after-discharge in CT afferents in the order of seconds following the stimulus. The results provide electrophysiological evidence that human CT afferents, similar to C-LTMRs in mice, have a functionally relevant anatomical relationship to hair follicles. KEY POINTS: In humans, recordings from 15 C-tactile afferents where the response to hair deflection was investigated, showed that individual C-tactile afferents respond to selective hair deflection. Mechanical hair plucking evoked after-discharge in C-tactile afferents in the order of seconds following the stimulus. The results provide electrophysiological evidence that human C-tactile afferents, similar to previously reported C-tactile afferents in mice, have a functionally relevant anatomical relationship to hair follicles.
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Registered trials
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