Background Pain is a common non-motor symptom in patients with cervical dystonia (CD), severely impacting their quality of life. The pathophysiology of CD is incompletely understood but it involves altered processing of proprioceptive and pain signals.Objectives The purpose of this proof-of-concept study was to determine if vibro-tactile stimulation (VTS)-a non-invasive form of neuromodulation targeting the somatosensory system-can modulate neck pain in people with CD.Methods In a multi-center study, 44 CD patients received VTS to sternocleidomastoid and/or trapezius muscles for up to 45 min under 9 different stimulation conditions that either targeted a single or a pair of muscles. The primary outcome measure was a perceived pain score (PPS) rated by participants on a 100-point analogue scale.Results During VTS, 29/44 (66%) of participants experienced a reduction in PPS of at least 10% with 17/44 (39%) reporting a reduction in pain of 50% or higher. After VTS cessation, 57% of participants still reported a 10% or higher reduction in PPS. Effects were significant at the group level and persisted for up to 20 min post-treatment. No distinct optimal stimulation profiles were identified for specific CD phenotypes. Clinical markers of disease severity or duration did not predict the degree of VTS-induced pain reduction.Conclusion This proof-of-concept study demonstrates the potential of VTS as a new non-invasive therapeutic option for treating neck pain associated with CD. Further research needs to delineate optimal dosage and long-term effects.

Vibro-tactile stimulation of the neck reduces pain in people with cervical dystonia: a proof-of-concept study / Xu, Jiapeng; Costanzo, Matteo; Avanzino, Laura; Martino, Davide; Salehi, Parisa; Standal, Stephanie; Manzo, Nicoletta; Alizadeh, Parisa; Terranova, Sara; Bonassi, Gaia; Oh, Jinseok; Conte, Antonella; Konczak, Jürgen. - In: NEUROLOGICAL SCIENCES. - ISSN 1590-1874. - 45:10(2024), pp. 4847-4856. [10.1007/s10072-024-07561-1]

Vibro-tactile stimulation of the neck reduces pain in people with cervical dystonia: a proof-of-concept study

Costanzo, Matteo;Manzo, Nicoletta;Conte, Antonella;
2024

Abstract

Background Pain is a common non-motor symptom in patients with cervical dystonia (CD), severely impacting their quality of life. The pathophysiology of CD is incompletely understood but it involves altered processing of proprioceptive and pain signals.Objectives The purpose of this proof-of-concept study was to determine if vibro-tactile stimulation (VTS)-a non-invasive form of neuromodulation targeting the somatosensory system-can modulate neck pain in people with CD.Methods In a multi-center study, 44 CD patients received VTS to sternocleidomastoid and/or trapezius muscles for up to 45 min under 9 different stimulation conditions that either targeted a single or a pair of muscles. The primary outcome measure was a perceived pain score (PPS) rated by participants on a 100-point analogue scale.Results During VTS, 29/44 (66%) of participants experienced a reduction in PPS of at least 10% with 17/44 (39%) reporting a reduction in pain of 50% or higher. After VTS cessation, 57% of participants still reported a 10% or higher reduction in PPS. Effects were significant at the group level and persisted for up to 20 min post-treatment. No distinct optimal stimulation profiles were identified for specific CD phenotypes. Clinical markers of disease severity or duration did not predict the degree of VTS-induced pain reduction.Conclusion This proof-of-concept study demonstrates the potential of VTS as a new non-invasive therapeutic option for treating neck pain associated with CD. Further research needs to delineate optimal dosage and long-term effects.
2024
Focal dystonia; Human; Pain; Somatosensory; Vibration
01 Pubblicazione su rivista::01a Articolo in rivista
Vibro-tactile stimulation of the neck reduces pain in people with cervical dystonia: a proof-of-concept study / Xu, Jiapeng; Costanzo, Matteo; Avanzino, Laura; Martino, Davide; Salehi, Parisa; Standal, Stephanie; Manzo, Nicoletta; Alizadeh, Parisa; Terranova, Sara; Bonassi, Gaia; Oh, Jinseok; Conte, Antonella; Konczak, Jürgen. - In: NEUROLOGICAL SCIENCES. - ISSN 1590-1874. - 45:10(2024), pp. 4847-4856. [10.1007/s10072-024-07561-1]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1722442
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