Magnetic microcoils unlock targeted single-neuron therapies for neurodegenerative disorders

Medicine Research News News

Magnetic microcoils unlock targeted single-neuron therapies for neurodegenerative disorders
Medicine ResearchHealth Research NewsHealth Research
  • 📰 medical_xpress
  • ⏱ Reading Time:
  • 46 sec. here
  • 7 min. at publisher
  • 📊 Quality Score:
  • News: 39%
  • Publisher: 51%

Neural stimulation is a medical technique used to treat many illnesses affecting the nervous system. It involves applying energy to neurons to encourage them to grow and make connections with their neighbors.

Magnetic microcoils unlock targeted single-neuron therapies for neurodegenerative disorders retrieved 23 April 2024 from https://medicalxpress.com/news/2024-04-magnetic-microcoils-neuron-therapies-neurodegenerative.html

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.52 minutes ago Use this form if you have come across a typo, inaccuracy or would like to send an edit request for the content on this page. For general inquiries, please use ourThank you for taking time to provide your feedback to the editors.

Your feedback is important to us. However, we do not guarantee individual replies due to the high volume of messages.to let the recipient know who sent the email. Neither your address nor the recipient's address will be used for any other purpose. The information you enter will appear in your e-mail message and is not retained by Medical Xpress in any form.Get weekly and/or daily updates delivered to your inbox.

We have summarized this news so that you can read it quickly. If you are interested in the news, you can read the full text here. Read more:

medical_xpress /  🏆 101. in UK

Medicine Research Health Research News Health Research Health Science Medicine Science

United States Latest News, United States Headlines

Similar News:You can also read news stories similar to this one that we have collected from other news sources.

Neural implants face ethical hurdles, study findsNeural implants face ethical hurdles, study findsStudy delves into the ethical, design, and clinical trial challenges of AI-driven neural implants, highlighting the need for advancements in accuracy, user privacy, and societal acceptance.
Read more »

Researchers develop neural decoding that can give back lost speechResearchers develop neural decoding that can give back lost speechLosing the ability to speak due to neurological damage can be incredibly isolating. But thanks to recent advancements in technology, there's hope on the horizon. Scientists have been working on neural speech prostheses, special devices that can help people who have trouble speaking by translating brain activity into speech.
Read more »

Neural circuitry in the spinal cord allows brain-independent motor learningNeural circuitry in the spinal cord allows brain-independent motor learningAya Takeoka at the RIKEN Center for Brain Science (CBS) in Japan and colleagues have discovered the neural circuitry in the spinal cord that allows brain-independent motor learning.
Read more »

How blocking a neural receptor responsible for addiction could reduce alcohol useHow blocking a neural receptor responsible for addiction could reduce alcohol useScripps Research scientists have found that LY2444296—a compound that selectively blocks the kappa opioid receptor (KOP)—may reduce drinking in cases of alcohol dependence in animal studies.
Read more »

Magnetic Resonance-Guided Focused Ultrasound in Intracranial DiseasesMagnetic Resonance-Guided Focused Ultrasound in Intracranial DiseasesMagnetic resonance-guided focused ultrasound (MRgFUS) is a promising technique for the treatment of various intracranial diseases. This non-invasive procedure uses focused ultrasound waves to precisely target and destroy abnormal tissue in the brain. MRgFUS has shown potential in the treatment of brain tumors, essential tremor, and Parkinson's disease.
Read more »

Long-distance and low-attenuation magnetic energy focusing technology for deep-tissue wireless poweringLong-distance and low-attenuation magnetic energy focusing technology for deep-tissue wireless poweringResearchers have developed a long-distance and low-attenuation magnetic energy focusing technology for deep-tissue wireless powering. This technology has the potential to revolutionize medical implants and devices by enabling wireless charging from outside the body.
Read more »



Render Time: 2025-02-25 21:26:57