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Search Results - deep+brain+stimulation
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Device and Method for Recording-Guided Neuromodulation via the Olfactory Cleft (Case No. 2026-077)
Summary: UCLA researchers in the Department of Neurology have developed a minimally invasive, recording-guided closed-loop neuromodulation device enabling transnasal access to olfactory-cleft pathways for targeted modulation of deep limbic brain circuits. Background: The olfactory bulb provides direct anatomical and functional pathways to the limbic...
Published: 6/3/2026
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Updated: 5/28/2026
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Inventor(s):
Kevin Bickart
,
Mahmoud Omidbeigi
Keywords(s):
Brain
,
Deep Brain Stimulation
,
Deep Brain Stimulation
Current Mirror Output Impedance
,
device stability
,
Electrical Brain Stimulation
,
Electrical stimulation
,
minimally invasive device
,
neural stimulation
,
Neuromodulation
,
Neurostimulation
,
noninvasive
,
non-invasive
,
non-invasive monitoring
,
Transcutaneous Electrical Nerve Stimulation
Category(s):
Software & Algorithms > Bioinformatics
,
Therapeutics > CNS and Neurology
,
Software & Algorithms > Digital Health
,
Electrical
,
Life Science Research Tools
,
Medical Devices
,
Medical Devices > Monitoring And Recording Systems
,
Medical Devices > Neural Stimulation
Broad-Band Frequency Repetitive Transcranial Magnetic Stimulation for the Treatment of Neuropsychiatric Disorders (Case No. 2025-99J)
Summary: Researchers in UCLA's Semel Institute and Department of Psychiatry have developed an innovative approach to treating depression by optimizing repetitive Transcranial Magnetic Stimulation (rTMS), improving its effectiveness for the treatment of Major Depressive Disorder (MDD) and possibly diseases of the mind and brain. Background: Depression...
Published: 10/16/2025
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Updated: 10/9/2025
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Inventor(s):
Andrew Leuchter
,
Juliana Corlier
,
Thomas Valles
Keywords(s):
Bioelectromagnetics
,
Brain
,
Deep Brain Stimulation
,
Electrical Brain Stimulation
,
energy-efficient
,
frequency modulation
,
Magnetic Field
,
Medical Device
,
medication efficacy
,
neural information
,
neural network
,
neural networks
,
neural signals
,
neural stimulation
,
neurobehavioral impairment
,
Neurocognitive
,
neurological disorders
,
Neuromodulation
,
Neuron
,
neurons
,
neuroscience
,
Neurostimulation
,
pulsed load modulation
,
therapy
,
treatment efficacy
Category(s):
Medical Devices
,
Medical Devices > Neural Stimulation
,
Life Science Research Tools
,
Therapeutics > CNS and Neurology
,
Therapeutics
2021-278 Enhancement of Human Memory and Treatment of Alzheimer’s Disease by Closed -Loop Phase-Locked Brain Electric Stimulation During Sleep
SUMMARY: UCLA researchers in the department of Neurosurgery have developed an implantable brain electrode system which can modulate the brain’s activity to improve sleep and consolidation of memory, several important activities in the treatment of Alzheimer’s Disease. BACKGROUND: Sleep is universally understood to be beneficial to...
Published: 7/17/2025
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Updated: 6/29/2022
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Inventor(s):
Itzhak Fried
,
Yuval Nir
,
Maya Geva-Sagiv
Keywords(s):
Deep Brain Stimulation
,
Deep Brain Stimulation
Current Mirror Output Impedance
,
Electrical Brain Stimulation
,
Memory
,
Neurocognitive
,
Neurodegeneration
,
Neurodegeneration Alzheimer's Disease Predictive Testing
,
Neuromodulation
,
Neurostimulation
Category(s):
Medical Devices > Neural Stimulation
,
Medical Devices > Monitoring And Recording Systems
Method for noninvasive focalized
deep brain stimulation
INV-21009 Background The clinical use of Transcranial Magnetic Stimulation (TMS) is among the most prominent achievements in the field of neuroscience in the past two decades. The use of TMS to intervene with malfunctioning brain circuits has revolutionized the way neural disorders are treated and understood. TMS, as an FDA-approved technique, has...
Published: 4/15/2026
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Updated: 10/20/2020
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Inventor(s):
Nian-Xiang Sun
,
Mohsen Zaeimbashi
Keywords(s):
Brain modulation
,
Deep brain stimulation
,
High resolution
deep brain stimulation
,
Noninvasive
deep brain stimulation
,
Transcranial Magnetic Stimulation
Category(s):
Not in use > -Devices
,
Not in use > -Magnetics