Spinal Cord Associative Plasticity in Cerebral Palsy
For patients and families
In plain language
An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.
- What is being studied
- The protocol lists: Paired brain and nerve stimulation.
- Who it may be relevant to
- Registry conditions: Hemiplegic Cerebral Palsy. Basic parameters: 18 years — 80 years · All.
- What needs checking
- Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
- Where it takes place
- United States
- Next step
- Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
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Official title
Paired Stimulation of Hand Motor Cortex and Median Nerve to Induce Spinal Cord Plasticity in Hemiplegic Cerebral Palsy
Overview
Associative plasticity has been used to promote functional recovery from conditions affecting movement. The long term goal of this project is to use electrical stimulation techniques to improve arm and hand function. The goal of this prospective experimental study in adults with hemiplegic cerebral palsy (hCP) is to test the effects of pairing hand motor cortical and median nerve stimulation targeted to induce plasticity in the cervical spinal cord. Based on preliminary data in neurotypical adults, the investigators are testing the effects of this approach in adults with hCP. This study will first verify the present stimulation parameters as sufficient to promote induction of associative plasticity of sensorimotor connections for manual dexterity in adults with hCP. This will be assessed through neurophysiological, biomechanical, and clinical functional outcome measures. Successful pairing showing meaningful improvements in dexterity could then be used as an impetus for a larger study examining the efficacy of SCAP in people with hCP.
Detailed description
Associative plasticity has been used to promote functional recovery in patient populations, such as adults with spinal cord injuries (SCI). Using safe and well-tolerated non-invasive neuromodulation approaches, pairing of motor cortical stimulation and peripheral nerve stimulation has been shown to augment motor responses and promote plasticity, primarily through the convergence of sensory afferent stimuli and descending cortical stimuli in the motor cortex.
Our laboratory has shown that paired associative stimulation timed to converge in the cervical spinal cord induces significantly larger upper limb motor responses than if timed to converge in the motor cortex. While paired associative stimulation has shown promise for strengthening motor responses, it is unclear if plasticity from convergence of non-invasive stimuli in the spinal cord (termed spinal cord associative plasticity or SCAP) instead of the motor cortex can produce greater motor effects, and potentially greater promotion of movement recovery.
The goal of this present study is to test the effects of pairing sub-threshold hand motor cortical and median nerve stimulation targeted to induce plasticity in the cervical spinal cord of adults with hemiplegic cerebral palsy. The investigators aim to fill a knowledge gap regarding the ideal target of non-invasive stimulation to maximize associative plasticity for upper limb movement recovery. The study hypothesis is that pairing stimulation of the hand motor cortex with median nerve stimulation will produce associative plasticity in the cervical spinal cord measured through augmentation of motor responses in upper limb muscles, leading to improvements in dexterity.
This study will first verify that the present stimulation parameters are sufficient to promote induction of associative plasticity of sensorimotor connections for manual dexterity. The outcomes from this study could be translated to an efficacy study in people with CP to test whether pairing brain and afferent-targeted nerve stimulation for convergence in the cervical spinal cord can lead to clinically meaningful improvements in manual dexterity.
Interventions
- Device Paired brain and nerve stimulation
This utilizes pairing of repetitive transcranial magnetic stimulation (rTMS) and peripheral nerve stimulation (rPNS) timed to converge in the cervical spinal cord.
Primary outcome measures
- Size of muscle response to brain stimulation after intervention (percentage) [Time frame: 30 minutes after intervention]
- Number of blocks moved during box and blocks testing (BBT) after intervention [Time frame: 30 minutes after intervention]
Eligibility criteria
Inclusion criteria
- Maintenance of caffeine and exercise levels at time of sessions
- Ability to provide informed consent
- Manual ability classification system (MACS) level I to III
Exclusion criteria
- History of seizures in last two years
- Use of medications that lower seizure threshold
- History of implanted equipment including stimulators/pacemakers
Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.
Healthy volunteers: No
Study design
- Allocation
- N/A
- Model
- Single group
- Masking
- Open label
- Primary purpose
- Treatment
Study locations
United States · 1 center
- Columbia University Irving Medical Center — New York
Publications
- Ling YT, Alam M, Zheng YP. Spinal Cord Injury: Lessons about Neuroplasticity from Paired Associative Stimulation. Neuroscientist. 2020 Jun;26(3):266-277. doi: 10.1177/1073858419895461. Epub 2019 Dec 31. PMID 31889474
- Gillick BT, Gordon AM, Feyma T, Krach LE, Carmel J, Rich TL, Bleyenheuft Y, Friel K. Non-Invasive Brain Stimulation in Children With Unilateral Cerebral Palsy: A Protocol and Risk Mitigation Guide. Front Pediatr. 2018 Mar 16;6:56. doi: 10.3389/fped.2018.00056. eCollection 2018. PMID 29616203
- Pal A, Park H, Ramamurthy A, Asan AS, Bethea T, Johnkutty M, Carmel JB. Spinal cord associative plasticity improves forelimb sensorimotor function after cervical injury. Brain. 2022 Dec 19;145(12):4531-4544. doi: 10.1093/brain/awac235. PMID 36063483
- Stefan K, Kunesch E, Cohen LG, Benecke R, Classen J. Induction of plasticity in the human motor cortex by paired associative stimulation. Brain. 2000 Mar;123 Pt 3:572-84. doi: 10.1093/brain/123.3.572. PMID 10686179
- McIntosh JR, Joiner EF, Goldberg JL, Greenwald P, Dionne AC, Murray LM, Thuet E, Modik O, Shelkov E, Lombardi JM, Sardar ZM, Lehman RA, Chan AK, Riew KD, Harel NY, Virk MS, Mandigo C, Carmel JB. Timing-dependent synergies between motor cortex and posterior spinal stimulation in humans. J Physiol. 2024 Jun;602(12):2961-2983. doi: 10.1113/JP286183. Epub 2024 May 17. PMID 38758005
- Murray LM, McIntosh JR, Goldsmith JA, Wu YK, Liu M, Sanford SP, Joiner EF, Mandigo C, Tyagi V, Virk MS, Carmel JB, Harel NY. Timing-dependent synergies between noninvasive motor cortex and spinal cord stimulation in chronic cervical spinal cord injury. Clin Neurophysiol. 2025 Dec;180:2111372. doi: 10.1016/j.clinph.2025.2111372. Epub 2025 Oct 10. PMID 41106070
- Shulga A, Lioumis P, Zubareva A, Brandstack N, Kuusela L, Kirveskari E, Savolainen S, Ylinen A, Makela JP. Long-term paired associative stimulation can restore voluntary control over paralyzed muscles in incomplete chronic spinal cord injury patients. Spinal Cord Ser Cases. 2016 Jul 14;2:16016. doi: 10.1038/scsandc.2016.16. eCollection 2016. PMID 28053760
Identifiers
NCT: NCT07607665 · AAAV2760-CP