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EEG Microstate Parameters and Neuroinflammatory Biomarkers in Patients With Treatment-Resistant Major Depressive Disorder Receiving ECT

2026年7月31日 更新者:Zeynep Ozge Dagoglu Sarac、Istanbul University - Cerrahpasa

The Relationship of EEG Microstate Parameters and Neuroinflammatory Biomarkers With Treatment Response in Patients With Treatment-Resistant Major Depressive Disorder Receiving Electroconvulsive Therapy

This study aims to investigate the neurophysiological and inflammatory changes associated with electroconvulsive therapy (ECT) in patients diagnosed with Major Depressive Disorder who are resistant to at least two antidepressant treatments, using microstate analysis derived from resting-state electroencephalography (EEG) recordings. Within this scope, EEG recordings obtained before and after ECT will be compared to determine the relationships between changes in microstate parameters and inflammatory marker levels, clinical variables, and psychometric scale scores reflecting clinical improvement.

Peripheral blood samples collected from the same patient group will be analyzed for complete blood count parameters as well as levels of interleukin-1 alpha (IL-1α), interleukin-1 beta (IL-1β), interleukin-2 (IL-2), interleukin-6 (IL-6), interleukin-8 (IL-8), interleukin-10 (IL-10), tumor necrosis factor-alpha (TNF-α), soluble glycoprotein 130 (sgp-130), soluble interleukin-6 receptor (sIL-6R), interferon gamma-induced protein 10 kDa (IP-10), and C-reactive protein (CRP). In addition, inflammatory indices, including the Neutrophil-to-Lymphocyte Ratio (NLR), Platelet-to-Lymphocyte Ratio (PLR), and Monocyte-to-Lymphocyte Ratio (MLR), will be calculated. The association between baseline levels of these biomarkers and treatment response will be evaluated. Moreover, changes in biomarker levels following ECT will be statistically examined in relation to clinical scale scores and EEG microstate parameters.

Although microstate analysis and inflammatory biomarkers have each been extensively investigated in psychiatric disorders, studies evaluating these two biomarkers together, particularly with the inclusion of healthy control participants, remain limited. In this regard, the present study aims to evaluate the effects of ECT on patients with treatment-resistant depression using objective neurophysiological indicators, to contribute to the understanding of the pathophysiology of depression at the level of brain networks, and to provide a scientific basis for the development of personalized treatment approaches in the future.

研究概览

详细说明

Treatment-resistant depression (TRD) is defined as the failure to achieve an adequate clinical response to at least two antidepressant medications administered at appropriate doses and durations in individuals diagnosed with Major Depressive Disorder (MDD). TRD is associated with an increased risk of suicide, impaired social functioning, higher rates of hospitalization, and substantial economic burden. For this patient population, in whom conventional pharmacotherapy and psychotherapy often fail to provide sufficient benefit, electroconvulsive therapy (ECT) remains one of the most effective treatment options available. However, the mechanisms underlying the therapeutic effects of ECT have not been fully elucidated, and numerous biological, neurochemical, and structural hypotheses have been proposed.

Electroencephalography (EEG) is a non-invasive neurophysiological method capable of measuring the brain's electrical activity with high temporal resolution. Microstate analysis of EEG data focuses on brief periods of stable scalp topographies that are thought to represent transient states of large-scale neural networks. Each microstate is considered a temporary representation of a specific neural network, and parameters such as duration, occurrence, coverage, and transition probabilities provide valuable information about the brain's functional organization and dynamic stability. Although EEG-based studies investigating the effects of ECT on neuroplasticity, neurotransmitter systems, hippocampal volume, functional connectivity, and electrophysiological dynamics have gained increasing attention in recent years, research specifically focusing on microstate analysis remains limited. Existing studies are often characterized by small sample sizes, heterogeneity in treatment parameters, and potential confounding effects on microstate measures, highlighting the need for more comprehensive and controlled investigations in this field.

Accordingly, the present study aims to investigate the neurophysiological changes induced by ECT in individuals diagnosed with treatment-resistant depression through resting-state EEG microstate analysis. EEG recordings obtained before and after ECT will be compared to evaluate whether significant changes occur in microstate parameters, including duration, occurrence, coverage, and transition probabilities. Furthermore, the relationships between changes in microstate parameters and psychometric scale scores reflecting clinical improvement, together with other clinical variables, will be examined. Thus, not only the neurophysiological effects of ECT but also their associations with clinical outcomes will be comprehensively evaluated.

Another objective of the study is to investigate whether baseline EEG microstate characteristics may serve as potential biomarkers capable of predicting clinical response to ECT. By identifying neurophysiological indicators associated with favorable treatment outcomes, the study aims to advance predictive models for individualized treatment planning.

Through these aspects, the study seeks to evaluate the effects of ECT on patients with treatment-resistant depression using objective neurophysiological indicators, to contribute to the understanding of the pathophysiology of depression at the level of brain networks, and to provide a scientific basis for future personalized treatment approaches.

Materials and Methods

The study will include voluntary patients between 18 and 60 years of age diagnosed with Major Depressive Disorder according to DSM-5 criteria, who have failed to respond to at least two antidepressant treatments and have been referred for ECT at the Department of Psychiatry, Cerrahpaşa Faculty of Medicine. Written informed consent will be obtained from all participants before enrollment.

The healthy control group will consist of age- and sex-matched volunteers aged 18 to 60 years who do not use any medication that may significantly influence EEG activity or inflammatory biomarkers and who do not have a current neurological or psychiatric disorder. Healthy controls will also provide written informed consent before participation. EEG recordings will be obtained once and will serve as reference data for normal brain activity.

ECT will be administered using the Thymatron System IV Integrated ECT Device under general anesthesia according to standard clinical protocols. Treatments will be delivered using bilateral electrode placement with brief-pulse square-wave stimulation. The duration of treatment, number of sessions, and stimulation parameters will be determined according to each patient's clinical condition.

Resting-state EEG recordings will be obtained from all participants within one week before the initiation of ECT and again during the 14 days up to 6 days and 8 weeks up to 6 days following completion of the ECT course. EEG data will be recorded using a computerized 19-channel EEG system with Ag-AgCl disc electrodes placed according to the international 10-20 system. The average of the A1 and A2 earlobe electrodes will be used as the reference. Recordings will be sampled at 512 Hz, with a high-pass filter of 0.30 Hz, a low-pass filter of 70 Hz, and an additional 50 Hz notch filter.

Participants will be instructed to remain relaxed, quiet, and motionless under supervision during the recording procedure. EEG acquisition will consist of 5 minutes with eyes open, followed by 5 minutes with eyes closed. Raw EEG data will undergo preprocessing, including artifact removal, band-pass filtering, and re-referencing, before analysis.

Microstate analysis will be performed using MICROSTATELAB v2.1, an EEGLAB extension. Four canonical microstate classes (A, B, C, and D) will be identified. The following microstate parameters will be calculated for each participant and used in subsequent statistical analyses:

Duration: The average time (in milliseconds) during which a microstate remains stable once activated, reflecting the stability of the underlying neural network.

Occurrence: The average number of times a given microstate appears per second (Hz), reflecting the activation tendency of the associated neural network.

Coverage: The percentage of total recording time occupied by a specific microstate, indicating the relative contribution of that neural network over time.

Transition Probability (TP): The probability of transitioning from one microstate to another. For example, the transition probability from microstate A to microstate B is calculated as the number of A-to-B transitions divided by the total number of transitions from A to all other microstate classes. This parameter provides insight into the sequential activation dynamics of neural networks.

Before ECT initiation and 2 and 8 weeks after the cessation of ECT sessions, participants will complete a sociodemographic data form, the Hamilton Depression Rating Scale (HAM-D), Hamilton Anxiety Rating Scale (HAM-A), Beck Depression Inventory (BDI), Beck Anxiety Inventory (BAI), Beck Scale for Suicide Ideation (BSSI), Montgomery-Asberg Depression Rating Scale (MADRS), Clinical Global Impression Scale (CGI), the Mini-Mental State Examination (MMSE), and the Center for Epidemiologic Studies-Depression (CES-D). These assessments will be repeated before the post-treatment EEG recording.

Treatment response on the BDI will be defined as a reduction of at least 50% from baseline scores, while remission will be defined as a total score of 10 or lower. Similarly, for the HAM-D-17, treatment response will be defined as a reduction of at least 50% from baseline scores, and remission will be defined as a total score below 7.

Peripheral venous blood samples will be collected from all patients at three time points: within one week before the initiation of ECT and during the second and eighth weeks following completion of the ECT treatment course. All blood samples will be obtained in the morning after an overnight fast.

A total of 10 mL of venous blood will be collected from each participant between 7.30-9.30 am in the fasting state. Blood samples will be divided into EDTA-containing tubes for complete blood count analyses and serum separator tubes for biochemical and inflammatory biomarker measurements.

Following collection, serum samples will be centrifuged and aliquoted according to standard laboratory procedures. All serum specimens will be stored at -80°C until biochemical analyses are performed.

Study Timeline

Ethics committee approval is planned during the first month of the study. Participant recruitment will take place between months 2 and 6, followed by data analysis and completion of the study between months 6 and 8.

Statistical Analysis

Sample size estimation will be performed using G*Power v3.1.9 (Faul et al., 2009), assuming an effect size of 0.70 and a statistical power (1-β) of 0.85. The power analysis indicated that a minimum of 31 patients and 31 healthy controls are required. The sample size calculation was based on clinical treatment response as the primary outcome measure.

EEG data will be analyzed using EEGLAB running on MATLAB. Statistical analyses will be conducted using SPSS version 27. Continuous variables will be analyzed using one-way analysis of variance (ANOVA) when comparing more than two groups. Appropriate post-hoc analyses will follow significant findings. Categorical variables will be analyzed using chi-square tests. Relationships between continuous variables will be evaluated using Pearson correlation coefficients. Independent group comparisons will be performed using the Paired Samples t-test. For within-subject comparisons of pre- and post-treatment measures, paired-samples t-tests or non-parametric equivalents will be employed as appropriate.

研究类型

观察性的

注册 (估计的)

62

联系人和位置

本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。

学习联系方式

  • 姓名:Zeynep Özge Dagoglu Sarac, Dr
  • 电话号码:+905365942469
  • 邮箱:zod395@gmail.com

研究联系人备份

学习地点

    • Bakırköy
      • Istanbul、Bakırköy、土耳其(türkiye)
        • 招聘中
        • İstanbul University- Cerrahpasa, Cerrahpasa Medicine Faculty, Psychiatry Department
        • 接触:

参与标准

研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。

资格标准

适合学习的年龄

  • 成人

接受健康志愿者

是的

取样方法

非概率样本

研究人群

Patients between 18 and 60 years of age diagnosed with Treatment-Resistant Major Depressive Disorder and suggested ECT sessions.

描述

Inclusion Criteria:

Patient Group

  • Age 18-60 years
  • Diagnosis of Major Depressive Disorder, current major depressive episode, according to DSM-5 criteria.
  • Clinical indication for electroconvulsive therapy (ECT).
  • Ability to provide written informed consent.
  • Willingness to participate in the study.

Healthy Control Group:

  • Age ≥55 years.
  • No current psychiatric disorder.
  • No known neurological disorder.
  • Good general physical health.
  • No current use of medications known to affect EEG activity or inflammatory biomarkers significantly.
  • Ability to provide written informed consent.
  • Willingness to participate in the study.

Exclusion Criteria:

  • Primary neurological disorders (e.g., dementia or traumatic brain injury).
  • Schizophrenia or other psychotic disorders.
  • Bipolar disorder diagnosis,
  • Intracranial space-occupying lesions.
  • Increased intracranial pressure.
  • Myocardial infarction within the previous 3 months.
  • Cerebrovascular disease within the previous month.
  • Unstable cerebral aneurysm.
  • Pheochromocytoma.
  • Electroconvulsive therapy (ECT) or transcranial magnetic stimulation (TMS) within the previous month.
  • Cognitive impairment severe enough to prevent adequate cooperation during EEG recording.
  • Current alcohol or substance use disorder.
  • Active infectious disease.
  • Autoimmune or chronic inflammatory disorders.
  • Current use of systemic corticosteroids, immunosuppressive agents, or other medications known to affect inflammatory biomarkers significantly.

学习计划

本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。

研究是如何设计的?

设计细节

队列和干预

团体/队列
干预/治疗
Patients between 18 and 60 years of age diagnosed with Treatment Resistant Major Depressive Disorder
ECT will be administered using the Thymatron System IV Integrated ECT Device under general anesthesia, in accordance with standard clinical protocols. Treatments will be delivered using bilateral electrode placement with brief-pulse square-wave stimulation, and if side effects are seen, right unilateral electrode placement will be applied. The duration of treatment, number of sessions, and stimulation parameters will be determined according to each patient's clinical condition.
Healthy control
The healthy control group will consist of age- and sex-matched volunteers between 18 and 60 years of age who do not use any medication that may significantly influence EEG activity or inflammatory biomarkers, and who do not have a current neurological or psychiatric disorder. Healthy controls will also provide written informed consent before participation. EEG recordings will be obtained once and will serve as reference data for normal brain activity.

研究衡量的是什么?

主要结果指标

结果测量
措施说明
大体时间
Clinical Response and Remission Assessed by the Montgomery-Åsberg Depression Rating Scale
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Before ECT initiation and 2 and 8 weeks after the cessation of ECT sessions, depressive symptom severity will be assessed using the Montgomery-Åsberg Depression Rating Scale. Montgomery-Åsberg Depression Rating Scale total score ranges from 0 to 60, with higher scores indicating greater severity of depressive symptoms. Change in total score from baseline will be assessed following electroconvulsive therapy (ECT).Clinical response will be defined as a ≥50% reduction in MADRS total score from baseline. Remission will be defined as a MADRS total score ≤7.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Clinical Response Assessed by Hamilton Depression Rating Scale
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Before ECT initiation and 2 and 8 weeks after the cessation of ECT sessions, depressive symptom severity will be assessed using the Hamilton Depression Rating Scale. The total score of scale ranges from 0 to 52, with higher scores indicating greater severity of depressive symptoms. Change in Hamilton Depression Rating Scale total score from baseline will be assessed following electroconvulsive therapy (ECT).Clinical response will be defined as a ≥50% reduction in total score from baseline. Remission will be defined as a total score ≤7.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
EEG Microstate Duration
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Participants will be instructed to remain relaxed, quiet, and motionless during EEG recording. EEG acquisition will consist of 5 minutes with eyes open followed by 5 minutes with eyes closed. Raw EEG data will undergo preprocessing, including artifact removal, band-pass filtering, and re-referencing. Microstate analysis will be performed using MICROSTATELAB v2.1, an EEGLAB extension. Four canonical microstate classes (A, B, C, and D) will be identified. For each microstate class, duration will be calculated as the mean time for which the microstate remains stable following its onset and will be reported in milliseconds (ms).
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
EEG Microstate Occurrence
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Participants will be instructed to remain relaxed, quiet, and motionless during EEG recording. EEG acquisition will consist of 5 minutes with eyes open followed by 5 minutes with eyes closed. Raw EEG data will undergo preprocessing, including artifact removal, band-pass filtering, and re-referencing. Microstate analysis will be performed using MICROSTATELAB v2.1, an EEGLAB extension. Four canonical microstate classes (A, B, C, and D) will be identified. For each microstate class, occurrence will be calculated as the mean number of times the microstate occurs per second and will be reported in Hertz (Hz).
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
EEG Microstate Coverage
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Participants will be instructed to remain relaxed, quiet, and motionless during EEG recording. EEG acquisition will consist of 5 minutes with eyes open followed by 5 minutes with eyes closed. Raw EEG data will undergo preprocessing, including artifact removal, band-pass filtering, and re-referencing. Microstate analysis will be performed using MICROSTATELAB v2.1, an EEGLAB extension. Four canonical microstate classes (A, B, C, and D) will be identified. For each microstate class, coverage will be calculated as the percentage of the total EEG recording time occupied by that microstate class and will be reported as a percentage (%).
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
EEG Microstate Transition Probability
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Participants will be instructed to remain relaxed, quiet, and motionless during EEG recording. EEG acquisition will consist of 5 minutes with eyes open followed by 5 minutes with eyes closed. Raw EEG data will undergo preprocessing, including artifact removal, band-pass filtering, and re-referencing. Microstate analysis will be performed using MICROSTATELAB v2.1, an EEGLAB extension. Four canonical microstate classes (A, B, C, and D) will be identified. For each pair of microstate classes, transition probability will be calculated as the proportion of transitions from a given microstate class to a specific subsequent microstate class relative to all transitions originating from that microstate class. Transition probability will be reported as a proportion ranging from 0 to 1.
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.

次要结果测量

结果测量
措施说明
大体时间
Correlation between baseline neuroinflammatory biomarkers and treatment response
大体时间:These assessments will be repeated at three time points: within 1 week before ECT starts, 14+6 days and 8 weeks + 6 days after ECT cessation.
Correlation coefficients between baseline concentrations of neuroinflammatory biomarkers and change in Hamilton Depression Rating Scale scores following ECT will be calculated.
These assessments will be repeated at three time points: within 1 week before ECT starts, 14+6 days and 8 weeks + 6 days after ECT cessation.
Correlation between baseline neuroinflammatory biomarkers and treatment response
大体时间:These assessments will be repeated at three time points: within 1 week before ECT starts, 14+6 days and 8 weeks + 6 days after ECT cessation.
Correlation coefficients between baseline concentrations of neuroinflammatory biomarkers and change in Montgomery-Asberg Depression Rating Scale scores following ECT will be calculated.
These assessments will be repeated at three time points: within 1 week before ECT starts, 14+6 days and 8 weeks + 6 days after ECT cessation.
Correlation between changes in neuroinflammatory biomarkers and EEG microstate parameters
大体时间:These assessments will be repeated at three time points: within one week before ECT starts, 14+6 days and 8 weeks + 6 days after ECT cessation.
Correlation coefficients between changes in neuroinflammatory biomarker concentrations and changes in EEG microstate parameters (duration, occurrence, coverage, and transition probabilities) following ECT will be calculated.
These assessments will be repeated at three time points: within one week before ECT starts, 14+6 days and 8 weeks + 6 days after ECT cessation.
Inflammatory indices derived from complete blood count
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Neutrophil-to-Lymphocyte Ratio (NLR) will be calculated from complete blood count parameters and expressed as ratios.
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Inflammatory indices derived from complete blood count
大体时间:These assessments will be repeated within 1 week before ECT starts, and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Platelet-to-Lymphocyte Ratio (PLR) will be calculated from complete blood count parameters and expressed as ratios.
These assessments will be repeated within 1 week before ECT starts, and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Inflammatory indices derived from complete blood count
大体时间:These assessments will be repeated within 1 week before ECT starts, at 14+6 days and 8 weeks + 6 days after ECT cessation.
Monocyte-to-Lymphocyte Ratio (MLR) will be calculated from complete blood count parameters and expressed as ratios.
These assessments will be repeated within 1 week before ECT starts, at 14+6 days and 8 weeks + 6 days after ECT cessation.
Clinical Response Assessed by Clinical Global Impression- Severity
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Overall illness severity will be assessed using the Clinical Global Impression-Severity scale before ECT initiation and at 2 and 8 weeks after the cessation of ECT sessions. The scale is a 7-point clinician-rated scale ranging from 3 to 18, with higher scores indicating greater overall illness severity. Changes in CGI-S the scale scores from baseline will be evaluated following ECT.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Clinical Response Assessed by Beck Scale for Suicidal Ideation
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Suicidal ideation will be assessed using the Beck Scale for Suicide Ideation before ECT initiation and at 2 and 8 weeks after the cessation of ECT sessions. The Beck Scale for Suicide Ideation consists of 19 scored items, with a total score ranging from 0 to 38; higher scores indicate greater severity of suicidal ideation. A ≥50% reduction in the Beck Scale for Suicide Ideation total score from baseline will be used to define treatment response, and a total score ≤6 will be used to define remission.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Clinical Response Assessed by Hamilton Anxiety Scale
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Anxiety symptoms will be assessed using the Hamilton Anxiety Rating Scale before ECT initiation and at 2 and 8 weeks after the cessation of ECT sessions. The Hamilton Anxiety Rating Scale consists of 14 items, with a total score ranging from 0 to 56; higher scores indicate greater severity of anxiety symptoms. A ≥50% reduction in the total score from baseline will be used to define treatment response, and a total score ≤7 will be used to define remission.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Clinical Response Assessed by Beck Anxiety Scale
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Anxiety symptoms will be assessed using the Beck Anxiety Inventory before ECT initiation and at 2 and 8 weeks after the cessation of ECT sessions. The Beck Anxiety Inventory consists of 21 items, with a total score ranging from 0 to 63; higher scores indicate greater severity of anxiety symptoms. A ≥50% reduction in the total score from baseline will be used to define treatment response, and a total score ≤10 will be used to define remission.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Clinical Response Assessed by Beck Depression Inventory
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Depressive symptoms will be assessed using the Beck Depression Inventory before ECT initiation and at 2 and 8 weeks after the cessation of ECT sessions. The Beck Depression Inventory consists of 21 items, with a total score ranging from 0 to 63; higher scores indicate greater severity of depressive symptoms. A ≥50% reduction in the total score from baseline will be used to define treatment response, and a total score ≤9 will be used to define remission.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Clinical Response Assessed by Center for Epidemiologic Studies Depression Scale
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Depressive symptoms will be assessed using the Center for Epidemiologic Studies Depression Scale before ECT initiation and at 2 and 8 weeks after the cessation of ECT sessions. The scale consists of 20 items, with a total score ranging from 0 to 60; higher scores indicate greater severity of depressive symptoms. Changes in the total scores from baseline will be evaluated following ECT.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Concentration of peripheral neuroinflammatory biomarkers
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Concentrations of soluble glycoprotein 130 (sgp130) and soluble interleukin-6 receptor (sIL-6R) will be measured from peripheral blood samples using ELISA assays. (ng/ml).
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Concentration of peripheral neuroinflammatory biomarkers
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Concentrations of IL-1α, IL-1β, IL-2, IL-6, IL-8, IL-10, TNF-α, interferon gamma-induced protein-10 (IP-10), will be measured from peripheral blood samples using ELISA assays ( pg/mL).
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Concentration of peripheral neuroinflammatory biomarkers
大体时间:These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.
Concentrations of C-reactive protein (CRP) will be measured from peripheral blood samples using ELISA assays ( mg/L).
These assessments will be repeated within 1 week before ECT starts and 14+6 days and 8 weeks + 6 days after ECT cessation.

其他结果措施

结果测量
措施说明
大体时间
Clinical Cognitive Assessment
大体时间:These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.
Cognitive function will be assessed using the Mini-Mental State Examination before ECT initiation and at 2 and 8 weeks after the cessation of ECT sessions. The scale is a clinician-administered cognitive assessment with a total score ranging from 0 to 30, with higher scores indicating better cognitive function. Changes in the total scores from baseline will be evaluated following ECT.
These assessments will be repeated within 1 week before ECT starts and at 14+6 days and 8 weeks + 6 days after ECT cessation.

合作者和调查者

在这里您可以找到参与这项研究的人员和组织。

调查人员

  • 研究主任:Burc Cagrı Poyraz, Professor、Istanbul University - Cerrahpasa
  • 研究主任:Alperen Kılıc、Associate professor

出版物和有用的链接

负责输入研究信息的人员自愿提供这些出版物。这些可能与研究有关。

研究记录日期

这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。

研究主要日期

学习开始 (实际的)

2026年1月1日

初级完成 (估计的)

2026年12月1日

研究完成 (估计的)

2027年3月1日

研究注册日期

首次提交

2026年7月5日

首先提交符合 QC 标准的

2026年7月31日

首次发布 (实际的)

2026年8月5日

研究记录更新

最后更新发布 (实际的)

2026年8月5日

上次提交的符合 QC 标准的更新

2026年7月31日

最后验证

2026年7月1日

更多信息

与本研究相关的术语

其他研究编号

  • CerrahpasaMED
  • E-24687260-604.01-1463071 (其他标识符:Istanbul University-Cerrahpaşa Rectorate Medical Research Ethics Committee)

计划个人参与者数据 (IPD)

计划共享个人参与者数据 (IPD)?

是的

IPD 共享支持信息类型

  • 研究方案
  • 树液
  • 国际碳纤维联合会
  • 分析代码
  • 企业社会责任

药物和器械信息、研究文件

研究美国 FDA 监管的药品

不

研究美国 FDA 监管的设备产品

是的

此信息直接从 clinicaltrials.gov 网站检索,没有任何更改。如果您有任何更改、删除或更新研究详细信息的请求,请联系 register@clinicaltrials.gov. clinicaltrials.gov 上实施更改,我们的网站上也会自动更新.

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