Paired Non-invasive Stimulation of Hand Motor Cortex and Median Nerve to Induce Plasticity in the Cervical Spinal Cord
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 20
- 试验地点
- 1
- 主要终点
- Size of muscle response to brain stimulation after SCAP (percentage)
研究概览
简要总结
Associative plasticity has been used to promote functional recovery from conditions affecting movement. Prior work from the Carmel laboratory has shown that paired associative stimulation protocols timed to converge in the cervical spinal cord induce significantly larger upper limb motor responses than if timed to converge in the motor cortex.
The goal of this prospective experimental study in typically developing adults 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, rather than in the motor cortex. Based on preliminary data, the investigators are performing a confirmatory study to test the physiological and behavioral effects of the paired brain and peripheral nerve protocol, called the SCAP-Nerve protocol.
This study will first be conducted in typically developing adults to confirm the cervical spinal cord as the ideal target and verify the present stimulation parameters are sufficient to promote induction of associative plasticity of sensorimotor connections for manual dexterity. The outcomes from this study could then be translated to efficacy studies in people with spinal cord injury and cerebral palsy to promote clinically meaningful improvements in dexterity.
详细描述
Associative plasticity has been used to promote functional recovery in patient populations, such as adults with spinal cord injuries (SCI). Using 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.
However, prior work from the Carmel 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, rather than in the motor cortex. 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 low-intensity stimulation of the hand motor cortex with low-intensity median nerve stimulation will produce associative plasticity in the cervical spinal cord measured through augmentation of motor responses in upper limb muscles.
Based on preliminary data, the investigators are performing a confirmatory study to test the physiological and behavioral effects of the paired brain and peripheral nerve protocol, called the SCAP-Nerve protocol. This protocol uses a specific set of TMS (transcranial magnetic stimulation) and PNS (peripheral nerve stimulation) parameters: targeting hand motor cortex at 90% resting motor threshold and targeting median nerve sensory afferents (with a nerve stimulus pulse duration of 1000 microseconds) at 90% resting motor threshold, precisely timed to converge in the cervical spinal cord.
This study will first be conducted with a single session of 90 trials of pairing in typically developing adults to confirm the cervical spinal cord as the ideal target and verify the present stimulation parameters as sufficient to promote induction of associative plasticity of sensorimotor connections for manual dexterity. Prior work from the Carmel laboratory has shown that the magnitude and duration of lasting effects of paired motor cortex and afferent stimulation is similar in rodents with and without neural injury.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Crossover
- 主要目的
- Basic Science
- 盲法
- None
入排标准
- 年龄范围
- 18 Years 至 80 Years(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Willingness to participate in up to 4 sessions
- •Maintenance of caffeine and exercise levels at time of sessions
- •Ability to provide informed consent
- •No known central or peripheral neurological disease or injury
- •No known musculoskeletal injury of the tested arm or hand
排除标准
- •Personal or family history of seizures
- •Use of medications that lower seizure threshold
- •History of implanted equipment including stimulators/pacemakers
研究组 & 干预措施
SCAP
With this session, participants will receive 90 trials of 0.1hz paired motor cortical stimulation and median nerve stimulation for 15 minutes at sub-threshold intensities, timed to converge in the cervical spinal cord simultaneously.
干预措施: SCAP (Other)
Cortical stimulation only
With this session, participants will receive 90 trials of 0.1hz motor cortical stimulation for 15 minutes at sub-threshold intensities.
干预措施: MagPro X100 (Device)
Median nerve stimulation only
With this session, participants will receive 90 trials of 0.1hz median nerve stimulation for 15 minutes at sub-threshold intensities.
干预措施: Digitimer DS8R (Device)
Paired non-associative stimulation
With this session, participants will receive 90 trials of 0.1hz paired motor cortical stimulation and median nerve stimulation for 15 minutes at sub-threshold intensities, timed to be 40 milliseconds apart in the cervical spinal cord.
干预措施: Paired non-associative stimulation (Other)
结局指标
主要结局
Size of muscle response to brain stimulation after SCAP (percentage)
时间窗: 30 minutes after SCAP
Size of muscle response will be measured in response to brain stimulation. This value will be normalized to the equivalent measure taken before the SCAP protocol.
次要结局
- Size of muscle response to nerve stimulation during combined brain and nerve stimulation after SCAP (percentage)(Immediately after intervention, up to 1 minute)
- Size of muscle response to nerve stimulation during combined brain and nerve stimulation (percentage)(Immediately after intervention, up to 1 minute)
- Size of muscle response to nerve stimulation during combined brain and nerve stimulation after SCAP (percentage)(30 minutes after SCAP)
- Duration of effect of SCAP on subsequent responses to brain stimulation(30 minutes after SCAP)
- Pinch force variability(30 minutes after SCAP)
- Pinch force speed(30 minutes after SCAP)
研究者
Jason Carmel
Weinberg Family Associate Professor of Neurology (in Orthopedic Surgery); Chief of the Division of Child Neurology
Columbia University
