Skip to main content
Top
Published in: Journal of NeuroEngineering and Rehabilitation 1/2021

Open Access 01-12-2021 | Tremor | Review

Peripheral electrical stimulation to reduce pathological tremor: a review

Authors: Alejandro Pascual-Valdunciel, Grace W. Hoo, Simon Avrillon, Filipe Oliveira Barroso, Jennifer G. Goldman, Julio C. Hernandez-Pavon, José L. Pons

Published in: Journal of NeuroEngineering and Rehabilitation | Issue 1/2021

Login to get access

Abstract

Interventions to reduce tremor in essential tremor (ET) and Parkinson’s disease (PD) clinical populations often utilize pharmacological or surgical therapies. However, there can be significant side effects, decline in effectiveness over time, or clinical contraindications for these interventions. Therefore, alternative approaches must be considered and developed. Some non-pharmacological strategies include assistive devices, orthoses and mechanical loading of the tremorgenic limb, while others propose peripheral electrical stimulation. Specifically, peripheral electrical stimulation encompasses strategies that activate motor and sensory pathways to evoke muscle contractions and impact sensorimotor function. Numerous studies report the efficacy of peripheral electrical stimulation to alter tremor generation, thereby opening new perspectives for both short- and long-term tremor reduction. Therefore, it is timely to explore this promising modality in a comprehensive review. In this review, we analyzed 27 studies that reported the use of peripheral electrical stimulation to reduce tremor and discuss various considerations regarding peripheral electrical stimulation: the stimulation strategies and parameters, electrodes, experimental designs, results, and mechanisms hypothesized to reduce tremor. From our review, we identified a high degree of disparity across studies with regard to stimulation patterns, experimental designs and methods of assessing tremor. Having standardized experimental methodology is a critical step in the field and is needed in order to accurately compare results across studies. With this review, we explore peripheral electrical stimulation as an intervention for tremor reduction, identify the limitations and benefits of the current state-of-the-art studies, and provide ideas to guide the development of novel approaches based on the neural circuitries and mechanical properties implied in tremor generation.
Appendix
Available only for authorised users
Literature
2.
go back to reference Lang AE, Lozano AM. Parkinson’s disease. First of two parts. N Engl J Med. 1998;339(15):1144–53. Lang AE, Lozano AM. Parkinson’s disease. First of two parts. N Engl J Med. 1998;339(15):1144–53.
3.
go back to reference de Lau LML, Breteler MMB. Epidemiology of Parkinson’s disease. Lancet Neurol. 2006;5(6):525–35.PubMedCrossRef de Lau LML, Breteler MMB. Epidemiology of Parkinson’s disease. Lancet Neurol. 2006;5(6):525–35.PubMedCrossRef
4.
go back to reference Helmich RC. The cerebral basis of Parkinsonian tremor: a network perspective. Mov Disord. 2018;33(2):219–31.PubMedCrossRef Helmich RC. The cerebral basis of Parkinsonian tremor: a network perspective. Mov Disord. 2018;33(2):219–31.PubMedCrossRef
5.
go back to reference Hallett M. Tremor: pathophysiology. Parkinson Relat Disord. 2014;20(Suppl 1):S118–22.CrossRef Hallett M. Tremor: pathophysiology. Parkinson Relat Disord. 2014;20(Suppl 1):S118–22.CrossRef
6.
go back to reference Helmich RC, Toni I, Deuschl G, Bloem BR. The pathophysiology of essential tremor and Parkinson’s tremor. Curr Neurol Neurosci Rep. 2013;13(9):378.PubMedCrossRef Helmich RC, Toni I, Deuschl G, Bloem BR. The pathophysiology of essential tremor and Parkinson’s tremor. Curr Neurol Neurosci Rep. 2013;13(9):378.PubMedCrossRef
8.
go back to reference Bhatia KP, Bain P, Bajaj N, Elble RJ, Hallett M, Louis ED, et al. Consensus Statement on the classification of tremors from the task force on tremor of the International Parkinson and Movement Disorder Society. Mov Disord. 2018;33(1):75–87.PubMedCrossRef Bhatia KP, Bain P, Bajaj N, Elble RJ, Hallett M, Louis ED, et al. Consensus Statement on the classification of tremors from the task force on tremor of the International Parkinson and Movement Disorder Society. Mov Disord. 2018;33(1):75–87.PubMedCrossRef
9.
go back to reference Lang AE, Lozano AM. Parkinson’s disease. Second of two parts. N Engl J Med. 1998;339(16):1030–43.CrossRef Lang AE, Lozano AM. Parkinson’s disease. Second of two parts. N Engl J Med. 1998;339(16):1030–43.CrossRef
10.
go back to reference Zesiewicz TA, Elble RJ, Louis ED, Gronseth GS, Ondo WG, Dewey RB Jr, et al. Evidence-based guideline update: treatment of essential tremor: report of the Quality Standards subcommittee of the American Academy of Neurology. Neurology. 2011;77(19):1752–5.PubMedPubMedCentralCrossRef Zesiewicz TA, Elble RJ, Louis ED, Gronseth GS, Ondo WG, Dewey RB Jr, et al. Evidence-based guideline update: treatment of essential tremor: report of the Quality Standards subcommittee of the American Academy of Neurology. Neurology. 2011;77(19):1752–5.PubMedPubMedCentralCrossRef
11.
go back to reference Poewe W, Mahlknecht P. Pharmacologic treatment of motor symptoms associated with Parkinson disease. Neurol Clin. 2020;38(2):255–67.PubMedCrossRef Poewe W, Mahlknecht P. Pharmacologic treatment of motor symptoms associated with Parkinson disease. Neurol Clin. 2020;38(2):255–67.PubMedCrossRef
12.
go back to reference Fasano A, Lozano AM, Cubo E. New neurosurgical approaches for tremor and Parkinson’s disease. Curr Opin Neurol. 2017;30(4):435–46.PubMedCrossRef Fasano A, Lozano AM, Cubo E. New neurosurgical approaches for tremor and Parkinson’s disease. Curr Opin Neurol. 2017;30(4):435–46.PubMedCrossRef
13.
go back to reference Dallapiazza RF, Lee DJ, De Vloo P, Fomenko A, Hamani C, Hodaie M, et al. Outcomes from stereotactic surgery for essential tremor. J Neurol Neurosurg Psychiatry. 2019;90(4):474–82.PubMedCrossRef Dallapiazza RF, Lee DJ, De Vloo P, Fomenko A, Hamani C, Hodaie M, et al. Outcomes from stereotactic surgery for essential tremor. J Neurol Neurosurg Psychiatry. 2019;90(4):474–82.PubMedCrossRef
14.
go back to reference O’Connor RJ, Kini MU. Non-pharmacological and non-surgical interventions for tremor: a systematic review. Park Relat Disord. 2011;17(7):509–15.CrossRef O’Connor RJ, Kini MU. Non-pharmacological and non-surgical interventions for tremor: a systematic review. Park Relat Disord. 2011;17(7):509–15.CrossRef
15.
go back to reference Fromme NP, Camenzind M, Riener R, Rossi RM. Need for mechanically and ergonomically enhanced tremor-suppression orthoses for the upper limb: a systematic review. J Neuroeng Rehabil. 2019;16(1):93.PubMedPubMedCentralCrossRef Fromme NP, Camenzind M, Riener R, Rossi RM. Need for mechanically and ergonomically enhanced tremor-suppression orthoses for the upper limb: a systematic review. J Neuroeng Rehabil. 2019;16(1):93.PubMedPubMedCentralCrossRef
16.
go back to reference Dosen S, Muceli S, Dideriksen JL, Romero JP, Rocon E, Pons J, et al. Online tremor suppression using electromyography and low-level electrical stimulation. IEEE Trans Neural Syst Rehabil Eng. 2015;23(3):385–95.PubMedCrossRef Dosen S, Muceli S, Dideriksen JL, Romero JP, Rocon E, Pons J, et al. Online tremor suppression using electromyography and low-level electrical stimulation. IEEE Trans Neural Syst Rehabil Eng. 2015;23(3):385–95.PubMedCrossRef
17.
go back to reference Grimaldi G, Camut S, Manto M. Functional electrical stimulation effect on upper limb tremor. Int J Bioelectromagn. 2011;13(3):123–4. Grimaldi G, Camut S, Manto M. Functional electrical stimulation effect on upper limb tremor. Int J Bioelectromagn. 2011;13(3):123–4.
18.
go back to reference Munhoz RP, Hanajima R, Ashby P, Lang AE. Acute effect of transcutaneous electrical nerve stimulation on tremor. 2003;18(2):191–4. Munhoz RP, Hanajima R, Ashby P, Lang AE. Acute effect of transcutaneous electrical nerve stimulation on tremor. 2003;18(2):191–4.
19.
go back to reference Widjaja F, Shee CY, Au WL, Poignet P, Ang WT. Using electromechanical delay for real-time anti-phase tremor attenuation system using functional electrical stimulation. Proc IEEE Int Conf Robot Autom. 2011;2011:3694–9.CrossRef Widjaja F, Shee CY, Au WL, Poignet P, Ang WT. Using electromechanical delay for real-time anti-phase tremor attenuation system using functional electrical stimulation. Proc IEEE Int Conf Robot Autom. 2011;2011:3694–9.CrossRef
20.
go back to reference Bó APL, Azevedo-Coste C, Geny C, Poignet P, Fattal C. On the use of fixed-intensity functional electrical stimulation for attenuating essential tremor. Artif Organs. 2014;38(11):984–91.PubMedCrossRef Bó APL, Azevedo-Coste C, Geny C, Poignet P, Fattal C. On the use of fixed-intensity functional electrical stimulation for attenuating essential tremor. Artif Organs. 2014;38(11):984–91.PubMedCrossRef
21.
go back to reference Heo JH, Kim JW, Kwon Y, Lee SK, Eom GM, Kwon DY, et al. Sensory electrical stimulation for suppression of postural tremor in patients with essential tremor. Biomed Mater Eng. 2015;26 Suppl 1:S803–9.PubMed Heo JH, Kim JW, Kwon Y, Lee SK, Eom GM, Kwon DY, et al. Sensory electrical stimulation for suppression of postural tremor in patients with essential tremor. Biomed Mater Eng. 2015;26 Suppl 1:S803–9.PubMed
22.
go back to reference Heo JH, Kwon Y, Jeon HM, Kwon DY, Lee CN, Park KW, et al. Suppression of action tremor by sensory electrical stimulation in patients with essential tremor. J Mech Med Biol. 2016;16(8):1650026.CrossRef Heo JH, Kwon Y, Jeon HM, Kwon DY, Lee CN, Park KW, et al. Suppression of action tremor by sensory electrical stimulation in patients with essential tremor. J Mech Med Biol. 2016;16(8):1650026.CrossRef
23.
go back to reference Lin PT, Ross EK, Chidester P, Rosenbluth KH, Hamner SR, Wong SH, et al. Noninvasive neuromodulation in essential tremor demonstrates relief in a sham-controlled pilot trial. Mov Disord. 2018;33(7):1182–3.PubMedPubMedCentralCrossRef Lin PT, Ross EK, Chidester P, Rosenbluth KH, Hamner SR, Wong SH, et al. Noninvasive neuromodulation in essential tremor demonstrates relief in a sham-controlled pilot trial. Mov Disord. 2018;33(7):1182–3.PubMedPubMedCentralCrossRef
24.
go back to reference Pahwa R, Dhall R, Ostrem J, Gwinn R, Lyons K, Ro S, et al. An acute randomized controlled trial of noninvasive peripheral nerve stimulation in essential tremor. Neuromodulation. 2019;22(5):537–45.PubMedPubMedCentralCrossRef Pahwa R, Dhall R, Ostrem J, Gwinn R, Lyons K, Ro S, et al. An acute randomized controlled trial of noninvasive peripheral nerve stimulation in essential tremor. Neuromodulation. 2019;22(5):537–45.PubMedPubMedCentralCrossRef
25.
go back to reference Kim J, Wichmann T, Inan OT, De Weerth SP. A wearable system for attenuating essential tremor based on peripheral nerve stimulation. IEEE J Transl Eng Heal Med. 2020;8:2000111. Kim J, Wichmann T, Inan OT, De Weerth SP. A wearable system for attenuating essential tremor based on peripheral nerve stimulation. IEEE J Transl Eng Heal Med. 2020;8:2000111.
26.
go back to reference Isaacson SH, Peckham E, Tse W, Waln O, Way C, Petrossian MT, et al. Prospective home-use study on non-invasive neuromodulation therapy for essential tremor. Tremor Other Hyperkinet Mov. 2020;10(1):1–16. Isaacson SH, Peckham E, Tse W, Waln O, Way C, Petrossian MT, et al. Prospective home-use study on non-invasive neuromodulation therapy for essential tremor. Tremor Other Hyperkinet Mov. 2020;10(1):1–16.
27.
go back to reference Pascual Valdunciel A, Gonzalez-Sanchez M, Muceli S, Adan-Barrientos B, Escobar-Segura V, Perez-Sanchez JR, et al. Intramuscular stimulation of muscle afferents attains prolonged tremor reduction in essential tremor patients. IEEE Trans Biomed Eng. 2020;1. Pascual Valdunciel A, Gonzalez-Sanchez M, Muceli S, Adan-Barrientos B, Escobar-Segura V, Perez-Sanchez JR, et al. Intramuscular stimulation of muscle afferents attains prolonged tremor reduction in essential tremor patients. IEEE Trans Biomed Eng. 2020;1.
28.
go back to reference Mones RJ, Weiss AH. The response of the tremor of patients with Parkinsonism to peripheral nerve stimulation. J Neurol Neurosurg Psychiatry. 1969;32(6):512–8.PubMedPubMedCentralCrossRef Mones RJ, Weiss AH. The response of the tremor of patients with Parkinsonism to peripheral nerve stimulation. J Neurol Neurosurg Psychiatry. 1969;32(6):512–8.PubMedPubMedCentralCrossRef
29.
go back to reference Gillard DM, Cameron T, Prochazka A, Gauthier MJA. Tremor suppression using functional electrical stimulation: a comparison between digital and analog controllers. IEEE Trans Rehabil Eng. 1999;7(3):385–8.PubMedCrossRef Gillard DM, Cameron T, Prochazka A, Gauthier MJA. Tremor suppression using functional electrical stimulation: a comparison between digital and analog controllers. IEEE Trans Rehabil Eng. 1999;7(3):385–8.PubMedCrossRef
30.
go back to reference Jitkritsadakul O, Thanawattano C, Anan C, Bhidayasiri R. Exploring the effect of electrical muscle stimulation as a novel treatment of intractable tremor in Parkinson’s disease. J Neurol Sci. 2015;358(1-2):146–52.PubMedCrossRef Jitkritsadakul O, Thanawattano C, Anan C, Bhidayasiri R. Exploring the effect of electrical muscle stimulation as a novel treatment of intractable tremor in Parkinson’s disease. J Neurol Sci. 2015;358(1-2):146–52.PubMedCrossRef
31.
go back to reference Xu FL, Hao MZ, Xu SQ, Hu ZX, Xiao Q, Lan N. Development of a closed-loop system for tremor suppression in patients with Parkinson’s disease. Annu Int Conf IEEE Eng Med Biol Soc. 2016;2016:1782–5.PubMed Xu FL, Hao MZ, Xu SQ, Hu ZX, Xiao Q, Lan N. Development of a closed-loop system for tremor suppression in patients with Parkinson’s disease. Annu Int Conf IEEE Eng Med Biol Soc. 2016;2016:1782–5.PubMed
32.
go back to reference Hao MZ, Xu SQ, Hu ZX, Xu FL, Niu CXM, Xiao Q, et al. Inhibition of Parkinsonian tremor with cutaneous afferent evoked by transcutaneous electrical nerve stimulation. J Neuroeng Rehabil. 2017;14(1):75.PubMedPubMedCentralCrossRef Hao MZ, Xu SQ, Hu ZX, Xu FL, Niu CXM, Xiao Q, et al. Inhibition of Parkinsonian tremor with cutaneous afferent evoked by transcutaneous electrical nerve stimulation. J Neuroeng Rehabil. 2017;14(1):75.PubMedPubMedCentralCrossRef
33.
go back to reference Jitkritsadakul O, Thanawattano C, Anan C, Bhidayasiri R. Tremor’s glove-an innovative electrical muscle stimulation therapy for intractable tremor in Parkinson’s disease: a randomized sham-controlled trial. J Neurol Sci. 2017;381:331–40.PubMedCrossRef Jitkritsadakul O, Thanawattano C, Anan C, Bhidayasiri R. Tremor’s glove-an innovative electrical muscle stimulation therapy for intractable tremor in Parkinson’s disease: a randomized sham-controlled trial. J Neurol Sci. 2017;381:331–40.PubMedCrossRef
34.
go back to reference Heo JH, Jeon HM, Choi EB, Kwon DY, Eom GM. Continuous sensory electrical stimulation for the suppression of parkinsonian rest tremor. J Mech Med Biol. 2018;18(7):1840006.CrossRef Heo JH, Jeon HM, Choi EB, Kwon DY, Eom GM. Continuous sensory electrical stimulation for the suppression of parkinsonian rest tremor. J Mech Med Biol. 2018;18(7):1840006.CrossRef
35.
go back to reference Heo JH, Jeon HM, Choi EB, Kwon DY, Eom GM. Effect of sensory electrical stimulation on resting tremors in patients with Parkinson’s disease and SWEEDs. J Mech Med Biol. 2019;19(7):1940033.CrossRef Heo JH, Jeon HM, Choi EB, Kwon DY, Eom GM. Effect of sensory electrical stimulation on resting tremors in patients with Parkinson’s disease and SWEEDs. J Mech Med Biol. 2019;19(7):1940033.CrossRef
36.
go back to reference Muceli S, Poppendieck W, Hoffmann KP, Dosen S, Benito-León J, Barroso FO, et al. A thin-film multichannel electrode for muscle recording and stimulation in neuroprosthetics applications. J Neural Eng. 2019;16(2):026035.PubMedCrossRef Muceli S, Poppendieck W, Hoffmann KP, Dosen S, Benito-León J, Barroso FO, et al. A thin-film multichannel electrode for muscle recording and stimulation in neuroprosthetics applications. J Neural Eng. 2019;16(2):026035.PubMedCrossRef
37.
go back to reference Spiegel J, Fuß G, Krick C, Schimrigk K, Dillmann U. Influence of proprioceptive input on parkinsonian tremor. J Clin Neurophysiol. 2002;19(1):84–9.PubMedCrossRef Spiegel J, Fuß G, Krick C, Schimrigk K, Dillmann U. Influence of proprioceptive input on parkinsonian tremor. J Clin Neurophysiol. 2002;19(1):84–9.PubMedCrossRef
38.
go back to reference Britton TC, Thompson PD, Rothwell JC, Findley LJ, Marsden CD. Modulation of postural tremors at the wrist by supramaximal electrical median nerve shocks in essential tremor, Parkinson’s disease and normal subjects mimicking tremor. J Neurol Neurosurg Psychiatry. 1993;56(10):1085–9.PubMedPubMedCentralCrossRef Britton TC, Thompson PD, Rothwell JC, Findley LJ, Marsden CD. Modulation of postural tremors at the wrist by supramaximal electrical median nerve shocks in essential tremor, Parkinson’s disease and normal subjects mimicking tremor. J Neurol Neurosurg Psychiatry. 1993;56(10):1085–9.PubMedPubMedCentralCrossRef
39.
go back to reference Gallego JA, Rocon E, Manuel Belda-Lois J, Pons JL. A neuroprosthesis for tremor management through the control of muscle co-contraction. J Neuroeng Rehabil. 2013;10:36.PubMedPubMedCentralCrossRef Gallego JA, Rocon E, Manuel Belda-Lois J, Pons JL. A neuroprosthesis for tremor management through the control of muscle co-contraction. J Neuroeng Rehabil. 2013;10:36.PubMedPubMedCentralCrossRef
40.
go back to reference Javidan M, Elek J, Prochazka A. Attenuation of pathological tremors by functional electrical stimulation II: clinical evaluation. Ann Biomed Eng. 1992;20(2):225–36.PubMedCrossRef Javidan M, Elek J, Prochazka A. Attenuation of pathological tremors by functional electrical stimulation II: clinical evaluation. Ann Biomed Eng. 1992;20(2):225–36.PubMedCrossRef
41.
go back to reference Maneski LP, Jorgovanović N, Ilić V, Došen S, Keller T, Popović MB, et al. Electrical stimulation for the suppression of pathological tremor. Med Biol Eng Comput. 2011;49(10):1187–93.CrossRef Maneski LP, Jorgovanović N, Ilić V, Došen S, Keller T, Popović MB, et al. Electrical stimulation for the suppression of pathological tremor. Med Biol Eng Comput. 2011;49(10):1187–93.CrossRef
42.
go back to reference Dideriksen JL, Laine CM, Dosen S, Muceli S, Rocon E, Pons JL, et al. Electrical stimulation of afferent pathways for the suppression of pathological tremor. Front Neurosci. 2017;11:178.CrossRefPubMedPubMedCentral Dideriksen JL, Laine CM, Dosen S, Muceli S, Rocon E, Pons JL, et al. Electrical stimulation of afferent pathways for the suppression of pathological tremor. Front Neurosci. 2017;11:178.CrossRefPubMedPubMedCentral
43.
go back to reference Gallego JA, Dideriksen JL, Holobar A, Ibáñez J, Glaser V, Romero JP, et al. The phase difference between neural drives to antagonist muscles in essential tremor is associated with the relative strength of supraspinal and afferent input. J Neurosci. 2015;35(23):8925-37.PubMedPubMedCentralCrossRef Gallego JA, Dideriksen JL, Holobar A, Ibáñez J, Glaser V, Romero JP, et al. The phase difference between neural drives to antagonist muscles in essential tremor is associated with the relative strength of supraspinal and afferent input. J Neurosci. 2015;35(23):8925-37.PubMedPubMedCentralCrossRef
44.
go back to reference Puttaraksa G, Muceli S, Gallego JÁ, Holobar A, Charles SK, Pons JL, et al. Voluntary and tremorogenic inputs to motor neuron pools of agonist/antagonist muscles in essential tremor patients. J Neurophysiol. 2019;122(5):2043–53.PubMedPubMedCentralCrossRef Puttaraksa G, Muceli S, Gallego JÁ, Holobar A, Charles SK, Pons JL, et al. Voluntary and tremorogenic inputs to motor neuron pools of agonist/antagonist muscles in essential tremor patients. J Neurophysiol. 2019;122(5):2043–53.PubMedPubMedCentralCrossRef
45.
go back to reference Gallego JA, Rocon E, Belda-Lois JM, Koutsou AD, Mena S, Castillo A, et al. Design and validation of a neuroprosthesis for the treatment of upper limb tremor. Proc Annu Int Conf IEEE Eng Med Biol Soc EMBS. 2013;2013:3606–9. Gallego JA, Rocon E, Belda-Lois JM, Koutsou AD, Mena S, Castillo A, et al. Design and validation of a neuroprosthesis for the treatment of upper limb tremor. Proc Annu Int Conf IEEE Eng Med Biol Soc EMBS. 2013;2013:3606–9.
46.
go back to reference Gallego JÁ, Ibáñez J, Dideriksen JL, Serrano JI, Del Castillo MD, Farina D, et al. A multimodal human-robot interface to drive a neuroprosthesis for tremor management. IEEE Trans Syst Man Cybern Part C Appl Rev. 2012;42(6):1159–68.CrossRef Gallego JÁ, Ibáñez J, Dideriksen JL, Serrano JI, Del Castillo MD, Farina D, et al. A multimodal human-robot interface to drive a neuroprosthesis for tremor management. IEEE Trans Syst Man Cybern Part C Appl Rev. 2012;42(6):1159–68.CrossRef
47.
go back to reference Enoka RM, Amiridis IG, Duchateau J. Electrical stimulation of muscle: electrophysiology and rehabilitation. Physiology (Bethesda). 2020;35(1):40–56.PubMed Enoka RM, Amiridis IG, Duchateau J. Electrical stimulation of muscle: electrophysiology and rehabilitation. Physiology (Bethesda). 2020;35(1):40–56.PubMed
48.
go back to reference Dideriksen JL, Muceli S, Dosen S, Laine CM, Farina D. Physiological recruitment of motor units by high-frequency electrical stimulation of afferent pathways. J Appl Physiol. 2015;118(3):365–76.PubMedCrossRef Dideriksen JL, Muceli S, Dosen S, Laine CM, Farina D. Physiological recruitment of motor units by high-frequency electrical stimulation of afferent pathways. J Appl Physiol. 2015;118(3):365–76.PubMedCrossRef
49.
go back to reference Pascual-Valdunciel A, Barroso FO, Muceli S, Taylor J, Farina D, Pons JL. Modulation of reciprocal inhibition at the wrist as a neurophysiological correlate of tremor suppression: a pilot healthy subject study. Annu Int Conf IEEE Eng Med Biol Soc. 2019;2019:6267–72.PubMed Pascual-Valdunciel A, Barroso FO, Muceli S, Taylor J, Farina D, Pons JL. Modulation of reciprocal inhibition at the wrist as a neurophysiological correlate of tremor suppression: a pilot healthy subject study. Annu Int Conf IEEE Eng Med Biol Soc. 2019;2019:6267–72.PubMed
50.
go back to reference Hao M, He X, Xiao Q, Alstermark B, Lan N. Corticomuscular transmission of tremor signals by propriospinal neurons in Parkinson’s disease. PLoS ONE. 2013;8(11):e79829.PubMedPubMedCentralCrossRef Hao M, He X, Xiao Q, Alstermark B, Lan N. Corticomuscular transmission of tremor signals by propriospinal neurons in Parkinson’s disease. PLoS ONE. 2013;8(11):e79829.PubMedPubMedCentralCrossRef
51.
go back to reference Nielsen J, Pierrot-Deseilligny E. Pattern of cutaneous inhibition of the propriospinal-like excitation to human upper limb motoneurones. J Physiol. 1991;434:169–82.PubMedPubMedCentralCrossRef Nielsen J, Pierrot-Deseilligny E. Pattern of cutaneous inhibition of the propriospinal-like excitation to human upper limb motoneurones. J Physiol. 1991;434:169–82.PubMedPubMedCentralCrossRef
52.
go back to reference Pol S, Vidailhet M, Meunier S, Mazevet D, Agid Y, Pierrot-Deseilligny E. Overactivity of cervical premotor neurons in Parkinson’s disease. J Neurol Neurosurg Psychiatry. 1998;64(2):166–71.PubMedPubMedCentralCrossRef Pol S, Vidailhet M, Meunier S, Mazevet D, Agid Y, Pierrot-Deseilligny E. Overactivity of cervical premotor neurons in Parkinson’s disease. J Neurol Neurosurg Psychiatry. 1998;64(2):166–71.PubMedPubMedCentralCrossRef
53.
go back to reference Prochazka A, Elek J, Javidan M. Attenuation of pathological tremors by functional electrical stimulation I: method. Ann Biomed Eng. 1992;20(2):205–24.PubMedCrossRef Prochazka A, Elek J, Javidan M. Attenuation of pathological tremors by functional electrical stimulation I: method. Ann Biomed Eng. 1992;20(2):205–24.PubMedCrossRef
54.
go back to reference Bó APL, Poignet P, Zhang D, Ang WT. FES-controlled co-contraction strategies for pathological tremor compensation. IEEE/RSJ Int Conf Intell Robot Syst IROS. 2009;2009:1633–8. Bó APL, Poignet P, Zhang D, Ang WT. FES-controlled co-contraction strategies for pathological tremor compensation. IEEE/RSJ Int Conf Intell Robot Syst IROS. 2009;2009:1633–8.
55.
go back to reference Gallego JA, Rocon E, Ibáñez J, Dideriksen JL, Koutsou AD, Paradiso R, et al. A soft wearable robot for tremor assessment and suppression. Proc IEEE Int Conf Robot Autom. 2011;2011:2249–54.CrossRef Gallego JA, Rocon E, Ibáñez J, Dideriksen JL, Koutsou AD, Paradiso R, et al. A soft wearable robot for tremor assessment and suppression. Proc IEEE Int Conf Robot Autom. 2011;2011:2249–54.CrossRef
56.
go back to reference Dideriksen JL, Gianfelici F, Maneski LZP, Farina D. EMG-based characterization of pathological tremor using the iterated hilbert transform. IEEE Trans Biomed Eng. 2011;58(10):2911–21.PubMedCrossRef Dideriksen JL, Gianfelici F, Maneski LZP, Farina D. EMG-based characterization of pathological tremor using the iterated hilbert transform. IEEE Trans Biomed Eng. 2011;58(10):2911–21.PubMedCrossRef
57.
go back to reference Mang CS, Lagerquist O, Collins DF. Changes in corticospinal excitability evoked by common peroneal nerve stimulation depend on stimulation frequency. Exp brain Res Germany. 2010;203(1):11–20.CrossRef Mang CS, Lagerquist O, Collins DF. Changes in corticospinal excitability evoked by common peroneal nerve stimulation depend on stimulation frequency. Exp brain Res Germany. 2010;203(1):11–20.CrossRef
58.
go back to reference Gil-Castillo J, Alnajjar F, Koutsou A, Torricelli D, Moreno JC. Advances in neuroprosthetic management of foot drop: a review. J Neuroeng Rehabil. 2020;17:46.CrossRefPubMedPubMedCentral Gil-Castillo J, Alnajjar F, Koutsou A, Torricelli D, Moreno JC. Advances in neuroprosthetic management of foot drop: a review. J Neuroeng Rehabil. 2020;17:46.CrossRefPubMedPubMedCentral
59.
go back to reference Corie TH, Charles SK. Simulated tremor propagation in the upper limb: from muscle activity to joint displacement. J Biomech Eng. 2019;141(8):0810011–08100117.PubMedCentralCrossRef Corie TH, Charles SK. Simulated tremor propagation in the upper limb: from muscle activity to joint displacement. J Biomech Eng. 2019;141(8):0810011–08100117.PubMedCentralCrossRef
60.
go back to reference Struppler A. Tremor and skeletal muscle tone. Stereotact Funct Neurosurg Switzerland. 1993;60(1–3):152–6.CrossRef Struppler A. Tremor and skeletal muscle tone. Stereotact Funct Neurosurg Switzerland. 1993;60(1–3):152–6.CrossRef
61.
go back to reference Xia R, Rymer WZ. The role of shortening reaction in mediating rigidity in Parkinson’s disease. Exp Brain Res. 2004;156(4):524–8.PubMedCrossRef Xia R, Rymer WZ. The role of shortening reaction in mediating rigidity in Parkinson’s disease. Exp Brain Res. 2004;156(4):524–8.PubMedCrossRef
63.
go back to reference Meunier S, Bleton JP, Mazevet D, Sangla S, Grabli D, Roze E, et al. TENS is harmful in primary writing tremor. Clin Neurophysiol. 2011;122(1):171–5.PubMedCrossRef Meunier S, Bleton JP, Mazevet D, Sangla S, Grabli D, Roze E, et al. TENS is harmful in primary writing tremor. Clin Neurophysiol. 2011;122(1):171–5.PubMedCrossRef
64.
go back to reference Lora-Millán JS, López-Blanco R, Gallego JÁ, Méndez-Guerrero A, González de la Aleja J, Rocon E. Mechanical vibration does not systematically reduce the tremor in essential tremor patients. Sci Rep. 2019;9(1):16476.PubMedPubMedCentralCrossRef Lora-Millán JS, López-Blanco R, Gallego JÁ, Méndez-Guerrero A, González de la Aleja J, Rocon E. Mechanical vibration does not systematically reduce the tremor in essential tremor patients. Sci Rep. 2019;9(1):16476.PubMedPubMedCentralCrossRef
65.
go back to reference Chan PY, Mohd Ripin Z, Abdul Halim S, Kamarudin MI, Ng KS, Eow GB, et al. Biomechanical system versus observational rating scale for Parkinson’s disease tremor assessment. Sci Rep. 2019;9(1):8117.PubMedPubMedCentralCrossRef Chan PY, Mohd Ripin Z, Abdul Halim S, Kamarudin MI, Ng KS, Eow GB, et al. Biomechanical system versus observational rating scale for Parkinson’s disease tremor assessment. Sci Rep. 2019;9(1):8117.PubMedPubMedCentralCrossRef
66.
go back to reference Ivorra A, Becerra-Fajardo L, Castellví Q. In vivo demonstration of injectable microstimulators based on charge-balanced rectification of epidermically applied currents. J Neural Eng. 2015;12(6):066010.CrossRef Ivorra A, Becerra-Fajardo L, Castellví Q. In vivo demonstration of injectable microstimulators based on charge-balanced rectification of epidermically applied currents. J Neural Eng. 2015;12(6):066010.CrossRef
67.
go back to reference Becerra-Fajardo L, Garcia-Arnau R, Ivorra A. Injectable stimulators based on rectification of high frequency current bursts: power efficiency of 2 mm thick prototypes. In: Ibáñez J, González-Vargas J, Azorín JM, Akay M, Pons JL, editors. Converging Clin Eng Res Neurorehabilitation II. Cham: Springer International Publishing. 2017;667–71.CrossRef Becerra-Fajardo L, Garcia-Arnau R, Ivorra A. Injectable stimulators based on rectification of high frequency current bursts: power efficiency of 2 mm thick prototypes. In: Ibáñez J, González-Vargas J, Azorín JM, Akay M, Pons JL, editors. Converging Clin Eng Res Neurorehabilitation II. Cham: Springer International Publishing. 2017;667–71.CrossRef
Metadata
Title
Peripheral electrical stimulation to reduce pathological tremor: a review
Authors
Alejandro Pascual-Valdunciel
Grace W. Hoo
Simon Avrillon
Filipe Oliveira Barroso
Jennifer G. Goldman
Julio C. Hernandez-Pavon
José L. Pons
Publication date
01-12-2021
Publisher
BioMed Central
Published in
Journal of NeuroEngineering and Rehabilitation / Issue 1/2021
Electronic ISSN: 1743-0003
DOI
https://doi.org/10.1186/s12984-021-00811-9

Other articles of this Issue 1/2021

Journal of NeuroEngineering and Rehabilitation 1/2021 Go to the issue