482
Views
27
CrossRef citations to date
0
Altmetric
Research Articles

Functional electrical stimulation post-spinal cord injury improves locomotion and increases afferent input into the central nervous system in rats

, , , , &

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Eda Gurcay, Ozgur Zeliha Karaahmet, Damla Cankurtaran, Fatma Nazlı, Ebru Umay, Şükran Güzel & Ahmet Gurhan Gurcay. (2022) Functional electrical stimulation cycling in patients with chronic spinal cord injury: a pilot study. International Journal of Neuroscience 132:4, pages 421-427.
Read now

Articles from other publishers (26)

Mohsen Nouri Yalghouzaqaji, Abbas Pourshahbaz, Shima Shakiba, Behnam Akhbari, Behrooz Dolatshahi & Sajede Rezaie. (2023) Effect of Facial Emotional Feedback Through Facial Electrical Stimulation on Mood Change and Its Clinical Application in Participants with Mild Depression: A Multiple Baseline Case Study. Iranian Journal of Psychiatry and Behavioral Sciences In Press:In Press.
Crossref
Ilya Demchenko, Naaz Desai, Stephanie N. Iwasa, Fatemeh Gholamali Nezhad, José Zariffa, Sidney H. Kennedy, Nicholas O. Rule, Jeffrey F. Cohn, Milos R. Popovic, Benoit H. Mulsant & Venkat Bhat. (2023) Manipulating facial musculature with functional electrical stimulation as an intervention for major depressive disorder: a focused search of literature for a proposal. Journal of NeuroEngineering and Rehabilitation 20:1.
Crossref
Gustavo Balbinot, Guijin Li, Cindy Gauthier, Kristin E. Musselman, Sukhvinder Kalsi-Ryan & José Zariffa. (2023) Functional electrical stimulation therapy for upper extremity rehabilitation following spinal cord injury: a pilot study. Spinal Cord Series and Cases 9:1.
Crossref
Katherine S. Rudolph, Matthew Cloutier & Scott Stackhouse. (2023) Pain inhibition—the unintended benefit of electrically elicited muscle strengthening contractions. BMC Musculoskeletal Disorders 24:1.
Crossref
Brian A. Karamian, Nicholas Siegel, Blake Nourie, Mijail D. Serruya, Robert F. Heary, James S. Harrop & Alexander R. Vaccaro. (2022) The role of electrical stimulation for rehabilitation and regeneration after spinal cord injury. Journal of Orthopaedics and Traumatology 23:1.
Crossref
Julio Cesar Furlan, Maureen Pakosh, Beverley Catharine Craven & Milos Radomir Popovic. (2022) Insights on the Potential Mechanisms of Action of Functional Electrical Stimulation Therapy in Combination With Task-Specific Training: A Scoping Review. Neuromodulation: Technology at the Neural Interface 25:8, pages 1280-1288.
Crossref
Zhengzhe Cui, Yongqiang Li, Sisi Huang, Xixi Wu, Xiangxiang Fu, Fei Liu, Xiaojiao Wan, Xue Wang, Yuting Zhang, Huaide Qiu, Fang Chen, Peijin Yang, Shiqiang Zhu, Jianan Li & Weidong Chen. (2022) BCI system with lower-limb robot improves rehabilitation in spinal cord injury patients through short-term training: a pilot study. Cognitive Neurodynamics 16:6, pages 1283-1301.
Crossref
Vanessa Hubertus, Lea Meyer, Laurens Roolfs, Lilly Waldmann, Melina Nieminen-Kelhä, Michael G. Fehlings & Peter Vajkoczy. (2022) In vivo imaging in experimental spinal cord injury – Techniques and trends. Brain and Spine 2, pages 100859.
Crossref
Bharadwaj Nandakumar, Gary H Blumenthal, Francois Philippe Pauzin & Karen A Moxon. (2021) Hindlimb Somatosensory Information Influences Trunk Sensory and Motor Cortices to Support Trunk Stabilization. Cerebral Cortex 31:11, pages 5165-5187.
Crossref
Cristian Gonzalez-Ruiz, Paola Cordero-Anguiano, Axayacatl Morales-Guadarrama, Rodrigo Mondragón-Lozano, Stephanie Sánchez-Torres, Hermelinda Salgado-Ceballos, Francisco Villarreal, Eduardo Meaney, Guillermo Ceballos & Nayelli Nájera. (2020) (−)-Epicatechin reduces muscle waste after complete spinal cord transection in a murine model: role of ubiquitin–proteasome system. Molecular Biology Reports 47:11, pages 8975-8985.
Crossref
Raymond C. Chou, J. Andrew Taylor & Ryan Solinsky. (2020) Effects of hybrid-functional electrical stimulation (FES) rowing whole-body exercise on neurologic improvement in subacute spinal cord injury: secondary outcomes analysis of a randomized controlled trial. Spinal Cord 58:8, pages 914-920.
Crossref
Matthew R. Zahner & Eric Beaumont. (2020) Intermittent Fasting After Spinal Cord Injury Does Not Improve the Recovery of Baroreflex Regulation in the Rat. Frontiers in Physiology 11.
Crossref
Gang Li, Zhong-Kai Fan, Guang-Fei Gu, Zhi-Qiang Jia, Qiang-Qiang Zhang, Jun-Yu Dai & Shi-Sheng He. (2019) Epidural Spinal Cord Stimulation Promotes Motor Functional Recovery by Enhancing Oligodendrocyte Survival and Differentiation and by Protecting Myelin after Spinal Cord Injury in Rats. Neuroscience Bulletin 36:4, pages 372-384.
Crossref
Naaz Kapadia, Vera Zivanovic, Bastien Moineau, Jonathan Downar, Jose Zariffa & Milos R. Popovic. (2019) Functional electrical stimulation of the facial muscles to improve symptoms in individuals with major depressive disorder: pilot feasibility study. BioMedical Engineering OnLine 18:1.
Crossref
Lenny T Vasanthan, Arun Nehrujee, John Solomon & Merlyn Tilak. (2019) Electrical stimulation for people with spinal cord injury. Cochrane Database of Systematic Reviews.
Crossref
Sheng-Long Jiang, Zhongpeng Wang, Weibo Yi, Feng He, Hongzhi Qi & Dong Ming. (2019) Current Change Rate Influences Sensorimotor Cortical Excitability During Neuromuscular Electrical Stimulation. Frontiers in Human Neuroscience 13.
Crossref
Aurelie Selfslagh, Solaiman Shokur, Debora S. F. Campos, Ana R. C. Donati, Sabrina Almeida, Seidi Y. Yamauti, Daniel B. Coelho, Mohamed Bouri & Miguel A. L. Nicolelis. (2019) Non-invasive, Brain-controlled Functional Electrical Stimulation for Locomotion Rehabilitation in Individuals with Paraplegia. Scientific Reports 9:1.
Crossref
Maria Bacova, Katarina Bimbova, Jana Fedorova, Nadezda Lukacova & Jan Galik. (2019) Epidural oscillating field stimulation as an effective therapeutic approach in combination therapy for spinal cord injury. Journal of Neuroscience Methods 311, pages 102-110.
Crossref
Krista Niebaum, Laurie McCauley & Carolina Medina. 2018. Canine Sports Medicine and Rehabilitation. Canine Sports Medicine and Rehabilitation 136 176 .
Gabriel R de Freitas, Caroline C do Espírito Santo, Nicolas A M M de Machado-Pereira, Franciane Bobinski, Adair R S dos Santos & Jocemar Ilha. (2018) Early Cyclical Neuromuscular Electrical Stimulation Improves Strength and Trophism by Akt Pathway Signaling in Partially Paralyzed Biceps Muscle After Spinal Cord Injury in Rats. Physical Therapy 98:3, pages 172-181.
Crossref
Eric B. Knudsen & Karen A. Moxon. (2017) Restoration of Hindlimb Movements after Complete Spinal Cord Injury Using Brain-Controlled Functional Electrical Stimulation. Frontiers in Neuroscience 11.
Crossref
Eric BeaumontRegenia P. Campbell, Michael C. AndresenStephanie ScofieldKrishna Singh, Imad Libbus, Bruce H. KenKnight, Logan SnyderNathan Cantrell. (2017) Cervical vagus nerve stimulation augments spontaneous discharge in second- and higher-order sensory neurons in the rat nucleus of the solitary tract. American Journal of Physiology-Heart and Circulatory Physiology 313:2, pages H354-H367.
Crossref
Reza Salarinia, Hamid Reza Sadeghnia, Daryoush Hamidi Alamdari, Seyed Javad Hoseini, Asghar Mafinezhad & Mahmoud Hosseini. (2017) Platelet rich plasma: Effective treatment for repairing of spinal cord injury in rat. Acta Orthopaedica et Traumatologica Turcica 51:3, pages 254-257.
Crossref
Mary K. Nagai, Cesar Marquez-Chin & Milos R. Popovic. 2016. Translational Neuroscience. Translational Neuroscience 479 498 .
Brianna C. Thompson, Eoin Murray & Gordon G. Wallace. (2015) Graphite Oxide to Graphene. Biomaterials to Bionics. Advanced Materials 27:46, pages 7563-7582.
Crossref
J.-H. Jing, J. Qian, N. Zhu, W.-B. Chou & X.-J. Huang. (2015) Improved differentiation of oligodendrocyte precursor cells and neurological function after spinal cord injury in rats by oscillating field stimulation. Neuroscience 303, pages 346-351.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.