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临床试验/NCT07610850
NCT07610850招募中不适用

Brain-controlled Spinal Cord Stimulation in Participants With Chronic Stroke for Lower and Upper Limb Rehabilitation

Ecole Polytechnique Fédérale de Lausanne1 个研究点 分布在 1 个国家目标入组 3 人开始时间: 2026年9月1日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
入组人数
3
试验地点
1

研究概览

简要总结

The purpose of this clinical study is to evaluate the preliminary safety and effectiveness of using a cortical recording device (ECoG) combined with cervical and lumbar targeted epidural electrical stimulation (EES) of the spinal cord to restore voluntary motor functions of upper and lower limbs in participants with chronic stroke suffering from mobility impairment.

The goal is to establish a direct bridge between the motor intention of the participant and the spinal cord, which should not only improve or restore voluntary control of arm and leg movement and support immediate mobility, but also promote neurological recovery when combined with neurorehabilitation.

详细描述

In a current first-in-human clinical trial, called STIMO (ClinicalTrials.gov, NCT02936453), Electrical Epidural Stimulation (EES) of the spinal cord is applied to enable individuals with chronic severe spinal cord injury (SCI) to complete intensive locomotor neurorehabilitation training. In this clinical feasibility study, EES immediately enhances walking function and, with repeated use as part of the EES-assisted neurorehabilitation program, improves leg motor control and neurological recovery in severe SCI participants to a certain extent. Linking brain activity to spinal stimulation, as shown in preclinical and clinical studies, enhances usability of EES and neurological recovery.

Clinatec (CEA, Grenoble, France) has developed an implantable electrocorticogram (ECoG) recording device with a 64-channel epidural electrode array called WIMAGINE capable of recording electrical signals from the motor cortex for an extended period and with a high signal to noise ratio. This ECoG-based system allowed tetraplegic patients to control an exoskeleton (Clinicaltrials.gov, NCT 02550522) with up to 8 degrees of freedom for the upper limb control. This device has been implanted in 5 chronic participants so far; one of them has been using this system both at the hospital and at home for more than 3 years.

The WIMAGINE ECoG technology has been integrated with epidural electrical stimulation (EES) across multiple clinical trials exploring implantable brain-spine interfaces. In the STIMO-BSI trial (NCT04632290), real-time decoding of cortical motor intentions for leg movements was used to modulate lumbar EES, enabling a chronic SCI participant to regain volitional control of standing and walking, with neurological improvements persisting even without the system after three years. In the UP2 trial (NCT05665998), two participants with incomplete C3/C4 SCI received cervical EES arrays and a WIMAGINE implant to decode up to six upper-limb motor states; brain-controlled cervical EES was shown to be safe, feasible, and supportive of neurological recovery of arm and hand function. In the Think2Go trial (NCT06243952), two participants with complete motor paraplegia received a WIMAGINE implant paired with the ARC-IM lumbar EES system, enabling lower-limb movement within days and leading to restored voluntary leg control and unsupported walking after months of rehabilitation. Together, these studies demonstrate that implantable ECoG-based brain-spine interfaces can safely decode motor intentions and drive targeted EES to restore multi-limb motor functions and promote neurological recovery across a range of SCI severities.

In this study, the investigators will assess the preliminary safety and effectiveness of ECoG-controlled EES in individuals with chronic stroke who suffer from hemiplegia, to establish a direct bridge between the motor intention and the spinal cord. This could improve or restore voluntary control of arm and leg movement as well as promote neurological recovery when combined with neurorehabilitation. The WIMAGINE ECoG system will be coupled with the ARC-IM purpose-built spinal cord stimulation technology in the ARC-BSI Stroke system, which is equivalent technology to systems currently used in the UP2 (ARC-BSI Cervical system) and Think2Go (ARC-BSI Lumbar system) clinical studies.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Treatment
盲法
None

入排标准

年龄范围
18 Years 至 70 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Must be between 18-70 years old at the time of enrolment.
  • Must have suffered from a subcortical including brain stem stroke that occurred at least 9 months but not more than 10 years prior to enrolment.
  • Must have a score lower than 25 on the Fugl-Meyer upper-limb scale.
  • Must be able to stand with or without assistive device for 30 seconds.
  • Must have a score higher than 22 at the Montreal Cognitive Assessment.
  • Must present right or left hemiplegia.
  • Must have completed primary standard of care rehabilitation.
  • Must provide and sign the study's Informed Consent prior to any study-related procedures.
  • Must be able to understand and interact with the study team in French or English.
  • Must agree to comply in good faith with all conditions of the study and to attend all scheduled appointments.
  • Must use effective contraception for women of childbearing capacity.
  • Must be able to withhold antiplatelet/anticoagulation agents perioperatively for the time of the surgeries (if applicable).

排除标准

  • Must not be pregnant or breast feeding (if applicable).
  • Must not have the intention to become pregnant during the study (if applicable).
  • Must not have any diseases and conditions that would increase the morbidity and mortality of the implantation surgery.
  • Must not have any mental instability, including a diagnosis of personality disorder, psychosis, substance abuse, or severe depression as assessed by the psychologist.
  • Must not have any other medical conditions that would make the subject unable to participate in testing in the judgment of the investigators (e.g., major cognitive disorder, renal failure, hepatic dysfunction, epilepsy, etc.).
  • Must not have ongoing significant dysphagia or aspiration difficulties or require ventilator support.
  • Must not have any active implanted device, such as a pacemaker or other neurostimulator.
  • Must not have any spinal anatomical abnormalities or incompatibilities with the implanted system precluding surgery.
  • Must not have severe spasticity of the upper limb or lower limb (Modified Ashworth Scale > 3).
  • Must not have indication requiring frequent MRIs.
  • Must not participate in another clinical study using drugs or medical devices that might interfere with the outcomes of the study.
  • Must not be the investigator him/herself, his/her family members, employees, and other dependent persons.

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Jocelyne Bloch

Prof.

Centre Hospitalier Universitaire Vaudois

研究点 (1)

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