R44NS139730
Project Grant
Overview
Grant Description
A novel method of non-invasive brain stimulation to enhance motor function in chronic stroke patients - Project summary/abstract
The discovery of more effective treatment for stroke is a pressing clinical demand.
Non-invasive brain stimulation (NIBS) offers a promising treatment for many neurological and psychiatric disorders.
However, to date, the clinical efficacy has proven highly variable.
This is likely because current NIBS approaches cannot precisely modulate patterns of brain activity at intensity levels sufficient to produce physiological and behavioral change that are clinically relevant.
The goal of this proposal is to test and validate a novel first-in-class non-invasive approach to enhance motor function in chronic stroke patients.
We have developed a kilohertz transcranial magnetic perturbation (KTMP) device, which allows to target frequency-specific neural activity non-invasively - with no patient discomfort - at and beyond stimulation intensities associated with enhanced recovery from stroke (up to 8 V/m), something that is not possible to achieve with existing NIBS methods.
The three-year funding period will be used to evaluate the preliminary efficacy of KTMP in improving upper limb motor performance in patients suffering from chronic stroke.
After confirming the safety and tolerability of KTMP in a larger cohort of chronic stroke patients, we will target the perilesional motor cortex and assess short-term (Aim 1) and long-term (Aim 2) improvement of motor performance, and corresponding physiological changes induced by KTMP stimulation.
If our expectations are confirmed, our novel NIBS system holds the promise of revolutionizing the treatment landscape for patients with debilitating dysfunction post-stroke, paving the way for a new era of enhanced recovery and improved quality of life.
The discovery of more effective treatment for stroke is a pressing clinical demand.
Non-invasive brain stimulation (NIBS) offers a promising treatment for many neurological and psychiatric disorders.
However, to date, the clinical efficacy has proven highly variable.
This is likely because current NIBS approaches cannot precisely modulate patterns of brain activity at intensity levels sufficient to produce physiological and behavioral change that are clinically relevant.
The goal of this proposal is to test and validate a novel first-in-class non-invasive approach to enhance motor function in chronic stroke patients.
We have developed a kilohertz transcranial magnetic perturbation (KTMP) device, which allows to target frequency-specific neural activity non-invasively - with no patient discomfort - at and beyond stimulation intensities associated with enhanced recovery from stroke (up to 8 V/m), something that is not possible to achieve with existing NIBS methods.
The three-year funding period will be used to evaluate the preliminary efficacy of KTMP in improving upper limb motor performance in patients suffering from chronic stroke.
After confirming the safety and tolerability of KTMP in a larger cohort of chronic stroke patients, we will target the perilesional motor cortex and assess short-term (Aim 1) and long-term (Aim 2) improvement of motor performance, and corresponding physiological changes induced by KTMP stimulation.
If our expectations are confirmed, our novel NIBS system holds the promise of revolutionizing the treatment landscape for patients with debilitating dysfunction post-stroke, paving the way for a new era of enhanced recovery and improved quality of life.
Awardee
Funding Goals
(1) TO SUPPORT EXTRAMURAL RESEARCH FUNDED BY THE NATIONAL INSTITUTE OF NEUROLOGICAL DISORDERS AND STROKE (NINDS) INCLUDING: BASIC RESEARCH THAT EXPLORES THE FUNDAMENTAL STRUCTURE AND FUNCTION OF THE BRAIN AND THE NERVOUS SYSTEM, RESEARCH TO UNDERSTAND THE CAUSES AND ORIGINS OF PATHOLOGICAL CONDITIONS OF THE NERVOUS SYSTEM WITH THE GOAL OF PREVENTING THESE DISORDERS, RESEARCH ON THE NATURAL COURSE OF NEUROLOGICAL DISORDERS, IMPROVED METHODS OF DISEASE PREVENTION, NEW METHODS OF DIAGNOSIS AND TREATMENT, DRUG DEVELOPMENT, DEVELOPMENT OF NEURAL DEVICES, CLINICAL TRIALS, AND RESEARCH TRAINING IN BASIC, TRANSLATIONAL AND CLINICAL NEUROSCIENCE. THE INSTITUTE IS THE LARGEST FUNDER OF BASIC NEUROSCIENCE IN THE US AND SUPPORTS RESEARCH ON TOPICS INCLUDING BUT NOT LIMITED TO: DEVELOPMENT OF THE NERVOUS SYSTEM, INCLUDING NEUROGENESIS AND PROGENITOR CELL BIOLOGY, SIGNAL TRANSDUCTION IN DEVELOPMENT AND PLASTICITY, AND PROGRAMMED CELL DEATH, SYNAPSE FORMATION, FUNCTION, AND PLASTICITY, LEARNING AND MEMORY, CHANNELS, TRANSPORTERS, AND PUMPS, CIRCUIT FORMATION AND MODULATION, BEHAVIORAL AND COGNITIVE NEUROSCIENCE, SENSORIMOTOR LEARNING, INTEGRATION AND EXECUTIVE FUNCTION, NEUROENDOCRINE SYSTEMS, SLEEP AND CIRCADIAN RHYTHMS, AND SENSORY AND MOTOR SYSTEMS. IN ADDITION, THE INSTITUTE SUPPORTS BASIC, TRANSLATIONAL AND CLINICAL STUDIES ON A NUMBER OF DISORDERS OF THE NERVOUS SYSTEM INCLUDING (BUT NOT LIMITED TO): STROKE, TRAUMATIC INJURY TO THE BRAIN, SPINAL CORD AND PERIPHERAL NERVOUS SYSTEM, NEURODEGENERATIVE DISORDERS, MOVEMENT DISORDERS, BRAIN TUMORS, CONVULSIVE DISORDERS, INFECTIOUS DISORDERS OF THE BRAIN AND NERVOUS SYSTEM, IMMUNE DISORDERS OF THE BRAIN AND NERVOUS SYSTEM, INCLUDING MULTIPLE SCLEROSIS, DISORDERS RELATED TO SLEEP, AND PAIN. PROGRAMMATIC AREAS, WHICH ARE PRIMARILY SUPPORTED BY THE DIVISION OF NEUROSCIENCE, ARE ALSO SUPPORTED BY THE DIVISION OF EXTRAMURAL ACTIVITIES, THE DIVISION OF TRANSLATIONAL RESEARCH, THE DIVISION OF CLINICAL RESEARCH, THE OFFICE OF TRAINING AND WORKFORCE DEVELOPMENT, THE OFFICE OF PROGRAMS TO ENHANCE NEUROSCIENCE WORKFORCE DEVELOPMENT, AND THE OFFICE OF INTERNATIONAL ACTIVITIES. (2) TO EXPAND AND IMPROVE THE SMALL BUSINESS INNOVATION RESEARCH (SBIR) PROGRAM, TO INCREASE PRIVATE SECTOR COMMERCIALIZATION OF INNOVATIONS DERIVED FROM FEDERAL RESEARCH AND DEVELOPMENT, TO INCREASE SMALL BUSINESS PARTICIPATION IN FEDERAL RESEARCH AND DEVELOPMENT, AND TO FOSTER AND ENCOURAGE PARTICIPATION OF SOCIALLY AND ECONOMICALLY DISADVANTAGED SMALL BUSINESS CONCERNS AND WOMEN-OWNED SMALL BUSINESS CONCERNS IN TECHNOLOGICAL INNOVATION. TO UTILIZE THE SMALL BUSINESS TECHNOLOGY TRANSFER (STTR) PROGRAM, TO STIMULATE AND FOSTER SCIENTIFIC AND TECHNOLOGICAL INNOVATION THROUGH COOPERATIVE RESEARCH AND DEVELOPMENT CARRIED OUT BETWEEN SMALL BUSINESS CONCERNS AND RESEARCH INSTITUTIONS, TO FOSTER TECHNOLOGY TRANSFER BETWEEN SMALL BUSINESS CONCERNS AND RESEARCH INSTITUTIONS, TO INCREASE PRIVATE SECTOR COMMERCIALIZATION OF INNOVATIONS DERIVED FROM FEDERAL RESEARCH AND DEVELOPMENT, AND TO FOSTER AND ENCOURAGE PARTICIPATION OF SOCIALLY AND ECONOMICALLY DISADVANTAGED SMALL BUSINESS CONCERNS AND WOMEN-OWNED SMALL BUSINESS CONCERNS IN TECHNOLOGICAL INNOVATION.
Grant Program (CFDA)
Awarding / Funding Agency
Place of Performance
California
United States
Geographic Scope
State-Wide
Magnetic Tides was awarded
Project Grant R44NS139730
worth $936,787
from the National Institute of Neurological Disorders and Stroke in September 2025 with work to be completed primarily in California United States.
The grant
has a duration of 3 years and
was awarded through assistance program 93.853 Extramural Research Programs in the Neurosciences and Neurological Disorders.
The Project Grant was awarded through grant opportunity NINDS Exploratory Clinical Trials for Small Business (R43/R44 Clinical Trial Required).
Status
(Ongoing)
Last Modified 9/5/25
Period of Performance
9/1/25
Start Date
8/31/28
End Date
Funding Split
$936.8K
Federal Obligation
$0.0
Non-Federal Obligation
$936.8K
Total Obligated
Activity Timeline
Additional Detail
Award ID FAIN
R44NS139730
SAI Number
R44NS139730-2226326624
Award ID URI
SAI UNAVAILABLE
Awardee Classifications
Small Business
Awarding Office
75NQ00 NIH National Institute of Neurological Disorders and Stroke
Funding Office
75NQ00 NIH National Institute of Neurological Disorders and Stroke
Awardee UEI
CNZJNM3JF2G5
Awardee CAGE
89S86
Performance District
CA-90
Senators
Dianne Feinstein
Alejandro Padilla
Alejandro Padilla
Modified: 9/5/25