Araştırma Makalesi

Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point

Cilt: 6 Sayı: 2 30 Kasım 2023
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Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point

Öz

There is increasing interest in using transcutaneous electrical stimulation to treat or suppress brain-related disorders. Primary headache disorder is a socioeconomic burden whose pharmaceutical and invasive treatment method may have troublesome side effects. There are various transcutaneous electrical nerve stimulation neuromodulation systems that are used for health-related disorders. TMany factors may affect these systems’ efficiency, including stimulus current levels. A device for primary headaches showed mixed results. This may be related to the higher stimulus current levels that are applied through the electrodes. A feasible solution to reduce the required current levels is considering the geometrical features of the target nerve bending and nerve termination trajectories. In this study, the impact of the geometrical features of the nerve, such as nerve bending and nerve termination, on the stimulus current thresholds were analyzed based on FEM hybrid models. Twenty nerve models were generated considering statistical variations to assess the effect of the nerve geometrical features on the target neuromodulatory system. Finally, the safety parameters were calculated based on the target neuromodulator settings. The results showed that the geometric features of the target nerve have a significant effect on the required stimulus current thresholds. These results may provide important guidance mainly for transcutaneous nerve stimulation and future electrical nerve stimulation design.

Anahtar Kelimeler

Kaynakça

  1. [1] Johnson M. I. and Bjordal J. M., 2011. Transcutaneous electrical nerve stimulation for the management of painful conditions: focus on neuropathic pain, Expert Rev. Neurother., 11(5), pp. 735–753.
  2. [2] Headache Classification Committee of the International Headache Society (IHS)., 2013. The International Classification of Headache Disorders, 3rd edition (beta version), Cephalalgia, 33(9), pp. 629–808.
  3. [3] Magis D. et al., 2016. Cerebral metabolism before and after external trigeminal nerve stimulation in episodic migraine, Cephalalgia, 37(9), pp. 1–11.
  4. [4] Riederer F., Penning S., and Schoenen J., 2015. Transcutaneous Supraorbital Nerve Stimulation (t-SNS) with the Cefaly(®) Device for Migraine Prevention: A Review of the Available Data, Pain Therapy., 4(2), pp. 135–147.
  5. [5] Magis D., Sava S., d’Elia T. S., Baschi R., and Schoenen J., 2013. Safety and patients’ satisfaction of transcutaneous supraorbital neurostimulation (tSNS) with the Cefaly® device in headache treatment: a survey of 2,313 headache sufferers in the general population, J. Headache Pain, 14, p. 95.
  6. [6] Schoenen J. et al., 2013. Migraine prevention with a supraorbital transcutaneous stimulator: A randomized controlled trial, Neurology, 80(8), pp. 697–704.
  7. [7] Salkim E., Shiraz A. N., and Demosthenous A., 2017. Effect of Nerve Variations on the Stimulus Current Level in a Wearable Neuromodulator for Migraine: A Modeling Study, in 8th International IEEE EMBS Conference on Neural Engineering, pp. 239–242.
  8. [8] Schiefer M. A. and Grill W. M., 2006. Sites of Neuronal Excitation by Epiretinal Electrical Stimulation, 14(1), pp. 5–13.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Biyomedikal Mühendisliği

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

24 Ekim 2023

Yayımlanma Tarihi

30 Kasım 2023

Gönderilme Tarihi

13 Ocak 2023

Kabul Tarihi

4 Mayıs 2023

Yayımlandığı Sayı

Yıl 2023 Cilt: 6 Sayı: 2

Kaynak Göster

APA
Salkım, E. (2023). Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point. Kocaeli Journal of Science and Engineering, 6(2), 162-171. https://doi.org/10.34088/kojose.1233583
AMA
1.Salkım E. Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point. KOJOSE. 2023;6(2):162-171. doi:10.34088/kojose.1233583
Chicago
Salkım, Enver. 2023. “Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point”. Kocaeli Journal of Science and Engineering 6 (2): 162-71. https://doi.org/10.34088/kojose.1233583.
EndNote
Salkım E (01 Kasım 2023) Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point. Kocaeli Journal of Science and Engineering 6 2 162–171.
IEEE
[1]E. Salkım, “Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point”, KOJOSE, c. 6, sy 2, ss. 162–171, Kas. 2023, doi: 10.34088/kojose.1233583.
ISNAD
Salkım, Enver. “Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point”. Kocaeli Journal of Science and Engineering 6/2 (01 Kasım 2023): 162-171. https://doi.org/10.34088/kojose.1233583.
JAMA
1.Salkım E. Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point. KOJOSE. 2023;6:162–171.
MLA
Salkım, Enver. “Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point”. Kocaeli Journal of Science and Engineering, c. 6, sy 2, Kasım 2023, ss. 162-71, doi:10.34088/kojose.1233583.
Vancouver
1.Enver Salkım. Transcutaneous Nerve Stimulation Current Thresholds Based on Nerve Bending Angle and Nerve Termination Point. KOJOSE. 01 Kasım 2023;6(2):162-71. doi:10.34088/kojose.1233583

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