跳至主要内容
临床试验/NCT07599150
NCT07599150招募中不适用

Intracranial CArtography of Cortical Contribution to Respiratory Load Compensation in Epilepsy

Hospices Civils de Lyon1 个研究点 分布在 1 个国家目标入组 20 人开始时间: 2026年9月17日最近更新:
适应症
干预措施

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
Cortical localization of pre-expiratory potentials (via SEEG) during HETL (20 cmH₂O) in drug-resistant epilepsy

研究概览

简要总结

30% of patients with epilepsy suffer from drug-resistant seizures and have a greater risk of premature mortality than the general population. Among all causes of death, the most frequent is SUDEP, for sudden and unexpected death in epilepsy patients. SUDEP typically occurs after a nocturnal seizure, and primarily results from a postictal central respiratory dysfunction in patients with generalized convulsive seizure (GCS), suggesting the critical role of seizure-related impairment of breathing control, and underscoring the importance of monitoring and preventive interventions during the post-ictal phase. Most of patients with drug-resistant seizures demonstrate transient peri-ictal apnea and hypoxemia especially in the aftermath of a GCS. Experimental and clinical data suggest that most SUDEP primarily result from a fatal seizure-related respiratory arrest 5. Apnea was the primary cause of death in several epilepsy models. In patients whose SUDEP had occurred during long-term video-EEG monitoring, we observed fatal postictal central apnea after a nocturnal GCS in all SUDEP. Accordingly, it is currently hypothesized that in a subgroup of patients, repetition of seizures may contribute to chronic alteration of respiratory regulation which may increase the risk of fatal postictal central respiratory arrest.

Central regulation of autonomic function is ensured by the so-called Central Autonomic Network (CAN), which anatomy in humans has primarily been investigated in neuroimaging studies or using intraEEG (iEEG) data in patients with drug-resistant focal epilepsy undergoing presurgical evaluation with intracerebral electrodes. Central regulation of breathing primarily rely on brainstem, especially the preBötzinger complex for rhythm generation and the retrotrapezoid nucleus and dorsal raphe for chemoreception, especially ventilatory response to hypercapnia. However, through an intricated structures connecting these regions, this respiratory signal projects to a network of cortical and subcortical regions mainly including the limbic and sensorimotor cortical areas. Studies in patients undergoing iEEG reinforced the role of limbic and paralimbic structures, with transient central apnea elicited by direct electrical stimulation of amygdala, hippocampus, anterior parahippocampal, and antero-mesial fusiform gyri. However, our group also reported transient hypoxemia could be elicited by cortical direct electrical stimulation outside the temporo-limbic structures, most commonly after stimulation of the perisylvian cortex. Importantly, our group recently showed that involvement of this perisylvian cortex in the epileptogenic zone is a strong risk factor of SUDEP, reinforcing the importance of further studying its integration in the cortical control of respiration.

The involvement of cortical control of ventilation is particularly important to ensure expiratory load compensation, a typical situation after GCS, which is associated with airway obstruction, especially when the face is positioned into the pillow. This cortical component of the physiological response to experimental expiratory loads was investigated in healthy subjects through the study of EEG activity during an expiratory load compensation protocol. Accordingly, EEGs were processed by ensemble averaging expiratory time-locked segments and examined for pre-expiratory EEG potentials, defined as a slow negative shift from the baseline signal preceding expiration, and suggestive of cortical preparation of expiration. Expiratory load compensation was associated with EEG premotor potential presumably involving the supplementary motor area. However, because of the limited spatial resolution of scalp EEG, the organization of cortical neural sources involved in this expiratory load compensation or during response to hypercapnia, especially the interaction between the premotor cortex, the sensorimotor cortical areas and the perisylvian cortex is unknown.

研究设计

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

入排标准

年龄范围
18 Years 至 55 Years(Adult)
性别
All
接受健康志愿者
否

入选标准

  • •Written informed consent obtained from study subject and ability for study subject to comply with the requirements of the study
  • •Aged 18 to 55 years old
  • •Diagnosis of drug-resistant focal epilepsy, as defined by the International League Against Epilepsy 20
  • •Patients undergoing SEEG as part of presurgical evaluation
  • •At least one SEEG electrode localized in the perisylvian cortex
  • •At least one SEEG electrode localized in the premotor cortex

排除标准

  • •1. Ongoing or chronic respiratory and/or cardiac insufficiency and/or ischemic cardiac disease
  • •History of stroke in the last 5 years
  • •Intracranial hypertension related to space-occupying lesion in the brain
  • •Pregnant, parturient, or breastfeeding women
  • •Individuals receiving psychiatric care
  • •Individuals deprived of their liberty by judicial or administrative decision
  • •Adults subject to legal protection measures (guardianship, curatorship)
  • •Individuals not affiliated with a social security scheme or beneficiaries of a similar scheme

研究组 & 干预措施

Patients with drug-resistant epilepsy

Experimental

Patients with drug-resistant focal epilepsy, as defined by the International League Against Epilepsy, who undergo SEEG as part of presurgical evaluation of epilepsy.

In addition to SEEG monitoring, the following procedures will be carried out as part of the research:

  • Comprehensive respiratory monitoring
  • Cardio-respiratory monitoring
  • Expiratory load compensation
  • Hypercapnic challenge
  • Questionnaires completion.

干预措施: Comprehensive respiratory monitoring (Procedure)

Patients with drug-resistant epilepsy

Experimental

Patients with drug-resistant focal epilepsy, as defined by the International League Against Epilepsy, who undergo SEEG as part of presurgical evaluation of epilepsy.

In addition to SEEG monitoring, the following procedures will be carried out as part of the research:

  • Comprehensive respiratory monitoring
  • Cardio-respiratory monitoring
  • Expiratory load compensation
  • Hypercapnic challenge
  • Questionnaires completion.

干预措施: Cardio-respiratory monitoring (Procedure)

Patients with drug-resistant epilepsy

Experimental

Patients with drug-resistant focal epilepsy, as defined by the International League Against Epilepsy, who undergo SEEG as part of presurgical evaluation of epilepsy.

In addition to SEEG monitoring, the following procedures will be carried out as part of the research:

  • Comprehensive respiratory monitoring
  • Cardio-respiratory monitoring
  • Expiratory load compensation
  • Hypercapnic challenge
  • Questionnaires completion.

干预措施: Expiratory load compensation (Procedure)

Patients with drug-resistant epilepsy

Experimental

Patients with drug-resistant focal epilepsy, as defined by the International League Against Epilepsy, who undergo SEEG as part of presurgical evaluation of epilepsy.

In addition to SEEG monitoring, the following procedures will be carried out as part of the research:

  • Comprehensive respiratory monitoring
  • Cardio-respiratory monitoring
  • Expiratory load compensation
  • Hypercapnic challenge
  • Questionnaires completion.

干预措施: Hypercapnic challenge (Procedure)

Patients with drug-resistant epilepsy

Experimental

Patients with drug-resistant focal epilepsy, as defined by the International League Against Epilepsy, who undergo SEEG as part of presurgical evaluation of epilepsy.

In addition to SEEG monitoring, the following procedures will be carried out as part of the research:

  • Comprehensive respiratory monitoring
  • Cardio-respiratory monitoring
  • Expiratory load compensation
  • Hypercapnic challenge
  • Questionnaires completion.

干预措施: Questionnaires (Other)

Patients with drug-resistant epilepsy

Experimental

Patients with drug-resistant focal epilepsy, as defined by the International League Against Epilepsy, who undergo SEEG as part of presurgical evaluation of epilepsy.

In addition to SEEG monitoring, the following procedures will be carried out as part of the research:

  • Comprehensive respiratory monitoring
  • Cardio-respiratory monitoring
  • Expiratory load compensation
  • Hypercapnic challenge
  • Questionnaires completion.

干预措施: SEEG monitoring (Procedure)

结局指标

主要结局

Cortical localization of pre-expiratory potentials (via SEEG) during HETL (20 cmH₂O) in drug-resistant epilepsy

时间窗: Through study completion, an average of 1 year

Localization of SEEG contacts will use the anatomical MRI images performed in clinical routine. Pre-expiratory potentials are defined as a slow negative shift from the baseline signal starting between 2 and 0.5 s before the onset of expiration. Both visual and statistical analyses will be used to conclude on the presence of significant pre-expiratory potentials over each recording contact, using the same approach as the one our group used in the past in another physiological paradigm.

次要结局

  • Latency (ms) of the pre-expiratory potentials in each condition (HETL, LETL, HyperCO2)(Through study completion, an average of 1 year)
  • dentification of cortical SEEG contacts showing pre-expiratory potentials under 10 cmH₂O low expiratory threshold load (LETL) in drug-resistant epilepsy(Through study completion, an average of 1 year)
  • Cortical localization of SEEG contacts exhibiting pre-expiratory potentials during a hypercapnic challenge (HyperCO₂) in patients with drug-resistant epilepsy.(Through study completion, an average of 1 year)
  • Value of hypercapnic ventilatory response (HCVR)* in each condition (HETL, LETL, HyperCO2)(Through study completion, an average of 1 year)
  • Number of focal to bilateral tonic-clonic seizures during the 18 months preceding the SEEG(Inclusion visit)
  • Localization of the SEEG contacts included in the epileptogenic zone (EZ)(Inclusion visit)
  • Current and past mean daily intake of caffeine (mg/day)(Inclusion visit)
  • Respiratory discomfort of the experiment during each condition (HETL, LETL, HyperCO2)(Immediately after the respiratory challenges.)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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