📖 NEWLY PUBLISHED IN NEUROMODULATION 📖 "Non-invasive Transcutaneous Spinal Cord Stimulation Programming Recommendations for the Treatment of Upper Extremity Impairment in Tetraplegia" 👉 https://lnkd.in/gr_g9ZCE HOW TO CITE 👉 Gelenitis K, Santamaria A, Pradarelli J, Rieger M, Inanici F, Tefertiller C, Field-Fote E, Guest J, Suggitt J, Turner A, D'Amico JM, Moritz C. Non-invasive Transcutaneous Spinal Cord Stimulation Programming Recommendations for the Treatment of Upper Extremity Impairment in Tetraplegia. Neuromodulation. 2024 Jul 2:S1094-7159(24)00111-9. doi: 10.1016/j.neurom.2024.05.005. Epub ahead of print. PMID: 38958629 #OpenAccess #SCS #INS
International Neuromodulation Society’s Post
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📖 NEWLY PUBLISHED IN NEUROMODULATION 📖 "Non-invasive Transcutaneous Spinal Cord Stimulation Programming Recommendations for the Treatment of Upper Extremity Impairment in Tetraplegia" 👉 https://lnkd.in/gr_g9ZCE HOW TO CITE 👉 Gelenitis K., Santamaria A., Pradarelli J., Rieger M., Inanici F., Tefertiller C., Field-Fote E., Guest J., Suggitt J., Turner A., D’Amico J.M., Moritz C. 2024. Non-invasive Transcutaneous Spinal Cord Stimulation Programming Recommendations for the Treatment of Upper Extremity Impairment in Tetraplegia. Neuromodulation 2024; -: 1–12. #OpenAccess #SCS
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🧠 B2: Brain Tissue, Nuclei, Fluid & RAS - Fluid Dynamics and Fascia Release of the CNS 🧠 Join our B2 class and learn to release primary restrictions affecting the entire body. Master hands-on techniques, explore spinal cord pathways, and improve your patient's overall well-being! When: Jun 14th-16th, 2024 Where: Atlanta, GA Register: https://bit.ly/3HSC10U Note: You must take B1 in order to participate in this class! #braintherapy #braincourse
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🧠 B2: Brain Tissue, Nuclei, Fluid & RAS - Fluid Dynamics and Fascia Release of the CNS 🧠 Join our B2 class and learn to release primary restrictions affecting the entire body. Master hands-on techniques, explore spinal cord pathways, and improve your patient's overall well-being! When: Jun 14th-16th, 2024 Where: Atlanta, GA Register: https://bit.ly/3HSC10U Note: You must take B1 in order to participate in this class! #braintherapy #braincourse
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MY CT BRAIN ANGIO- Mild luminal narrowing of M3 segment of RT MCA.
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Professor of Anesthesiology and Pain Medicine. Vice Chairman of the Board, The American Society of Pain and Neuroscience (ASPN). Chief of Pain Medicine, The University of Kansas Health System.
Our publication on 5-year outcomes on the use of Restorative peripheral nerve stimulation for low back pain from multifidus dysfunction. Congratulations to all of the investigators across the globe and lead PI Christopher Gilligan, M.D. for maintaining these outcomes over this time span. A positive development in setting new long-term standards in neuromodulation. https://lnkd.in/gfmmfASt
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SPINAL CORD NEUROMODULATION... 🌠 Recent advancements in electrical neuromodulation have shown to restore sensorimotor function in people with spinal cord injury (SCI). Check out Dr Monzurul Alam’s paper on, “Restoration of Overground Walking via Non-Invasive Neuromodulation Therapy: A Single-Case Study”, which sheds light on how non-invasive spinal cord neuromodulation, via transcutaneous electrical stimulation of the spinal cord, is an effective treatment for functional recovery after SCI. Read his paper here: ⬇ JCM | Free Full-Text | Restoration of Over-Ground Walking via Non-Invasive Neuromodulation Therapy: A Single-Case Study (mdpi.com)https://lnkd.in/gDSC665X Griffith University | Gold Coast Health and Knowledge Precinct #spinalcordneuromodulation #tsDCS #tsPCS #ProjectBioSpine #SpinalCordInjury #Neuromodulation
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What does the future of spinal cord injury (SCI) rehabilitation look like? Traditionally, SCIs have been considered permanent, but several groundbreaking projects are aiming to change that. One such project, Project BioSpine, has shared a paper by Dr. Monzural Alam showcasing promising results using a non-invasive technique called transcutaneous electrical stimulation (tES). This method helped a person with chronic paralysis walk again after 21 years. Over 66 weeks of rehabilitation, which included exercises like standing, walking on a treadmill, and biking, the participant saw significant improvements in movement and touch sensation. By the end of the study, they were able to walk a 4m test with the help of a frame and ankle supports. This breakthrough offers hope for future non-invasive treatments for people with spinal cord injuries. Discover more about the project and the paper below. 👇 #sci #spinalcordinjury #curesci #projectbiospine #carecommunity
SPINAL CORD NEUROMODULATION... 🌠 Recent advancements in electrical neuromodulation have shown to restore sensorimotor function in people with spinal cord injury (SCI). Check out Dr Monzurul Alam’s paper on, “Restoration of Overground Walking via Non-Invasive Neuromodulation Therapy: A Single-Case Study”, which sheds light on how non-invasive spinal cord neuromodulation, via transcutaneous electrical stimulation of the spinal cord, is an effective treatment for functional recovery after SCI. Read his paper here: ⬇ JCM | Free Full-Text | Restoration of Over-Ground Walking via Non-Invasive Neuromodulation Therapy: A Single-Case Study (mdpi.com)https://lnkd.in/gDSC665X Griffith University | Gold Coast Health and Knowledge Precinct #spinalcordneuromodulation #tsDCS #tsPCS #ProjectBioSpine #SpinalCordInjury #Neuromodulation
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Dystonia's ailment is a neurological condition characterized by involuntary muscle contractions that are beyond one's control. There are various therapeutic avenues available for managing this condition, including surgical interventions, functional electrical stimulation (FES), botulinum toxin injections, and transcranial magnetic stimulation (TMS). FES employs electrical impulses to stimulate the muscles, whereas TMS stimulates the brain. Both approaches are non-invasive and hold significant medical potential. FES offers a range of electrode variations, communication systems, and sensor choices. Power supply alternatives for FES encompass rechargeable batteries or disposable ones. TMS precisely targets the skull to ensure optimal depth of stimulation. #Dystonia #FES #TMS #DBS
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Brain and Spinal Neurosurgeon, Back Pain NeuroHAB Rehabilitation Specialist, Olympic Weightlifting Coach, Functional Movement Clinician, CrossFit Athlete, Semifinalist (Masters) 2024 CrossFit Games
I know which cohort I'd want to be randomised to. This method of studying the effect of RFA on Multifidus hasn't been done yet. The critical difference being the normal Multifidus m. integrity prior to the procedure. Researching the difference between capsular br targets and the conventional medial branch nerve target would also be valuable. My hypothesis is that Group 4 would have far superior primary and secondary outcomes as this treats the root cause of mechanical #lowbackpain symptoms. Regardless, we would still be able to discern the effect of RFA on the relatively healthy Multifidus muscles. Zane Sherif we may need your superb MRI machine and analysis please 😉 #functionalmovementtherapy = #NeuroHAB
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Physiotherapist Clinica CEMTRO | BSc Physiotherapy & Sports Science | MSc | PhD Candidate in Health Science URJC.
Ultrasound-Guided Percutaneous Electrical Nerve Stimulation (US- PENS) of the Sciatic and Inferior Gluteal Nerve for a Patient With Periacetabular osteotomy (PAO). Objectives: - To reduce post-surgical pain. - Increase neuromuscular activation. - Improvement of post-treatment ROM.
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