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MedTech Outlook | Tuesday, September 21, 2021
Neuromodulation is a fast-growing discipline that involves using targeted electrical, magnetic, mechanical, or thermal stimulation of the nervous system to change firing neuronal and interneuronal connection features to treat various neurological diseases.
FREMONT, CA: Changing the central nervous system's enormously intricate connectivity and output is one of the most exciting developments in medical technology. It has the potential to cure and modify a variety of neurological disorders and diseases, including Parkinson's disease and Alzheimer's disease, and aid medicine delivery to previously unreachable areas of the brain through the opening of the blood-brain barrier. In the last few years, neuromodulation techniques have advanced significantly. They have gotten more focused and less intrusive. Invasive, minimally invasive, and non-invasive neuromodulation procedures are now available.
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The usage of one of these technologies is determined by the indication and the targeted location of the central or peripheral nervous system. Technological advancements and the need to reduce the surgical and long-term problems of hardware implantation have driven the neurosurgical community to adopt non-invasive neuromodulation techniques more frequently in the previous decade.
Neuromodulation is a fast-growing discipline that involves using targeted electrical, magnetic, mechanical, or thermal stimulation of the nervous system to change firing neuronal and interneuronal connection features to treat various neurological diseases. The nervous system circuits will be modulated by altering or modulating function by producing an anatomical or functional change. These interventions have been proven to be responsive to the brain, spinal cord, and peripheral nerve circuits, with any portion of the nervous system as an optional target.
There are three types of neuromodulation approaches: invasive (DBS, deep brain stimulation, and SCS, spinal cord stimulation), minimally invasive (like VNS, vagal nerve stimulation), and non-invasive (such as Trans magnetic stimulation). Electroconvulsive Therapy (ECT), Transcranial Magnetic Stimulation (TMS), Transcranial Electrical Stimulation (TES), static magnet stimulation, transcranial Alternating Current Stimulation (tACS), transcranial Direct Current Stimulation (tDCS), random noise stimulation, peripheral nerve stimulation, and ultrasound and Focused Ultrasound (FUS), including stim, are all examples of non-invasive neuromodulatory devices.
The field of psychiatry has the most advanced non-invasive neuromodulation techniques. However, neurorehabilitation and the treatment of a variety of neurologic illnesses have a wide range of uses. While invasive neuromodulation's accuracy and long-term effects have been shown, intraoperative risks such as bleeding, hardware failure, and infection must be considered. Non-invasive procedures have emerged as a viable alternative due to their high level of safety and feasibility.
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