返回搜索
正在招募不适用编号 NCT03870230

Investigation of Neurovascular Coupling in Glaucoma Patients and Healthy Subjects

报名条件(概要)

  • 年龄:18 Years不限
  • 性别:不限
  • 健康志愿者:接受

完整入排标准请以官方页面为准。

开展国家/地区

Austria

研究药物 / 干预措施

Fourier Domain Doppler Optical Coherence Tomography (FDOCT)、Dynamic Vessel Analyzer (DVA)、Pattern Electroretinography (pERG)、Optical coherence tomography (OCT)、Laser Speckle Flowgraphy (LSFG)

申办方

Medical University of Vienna

研究简介(原文)

Glaucoma is characterized by a progressive loss of retinal ganglion cells (RGCs) leading to optic nerve head (ONH) damage and associated visual field defects. The main risk factor for glaucoma is elevated intraocular pressure (IOP). Reducing IOP slows down the progression of the disease as several large multicenter trials have shown. Some patients, however, still progress despite adequately controlled IOP. As such, there is considerable interest in approaches that rescue RGCs independent of IOP, a strategy called neuroprotection. Although this field was actively discovered in the last 20 years in the brain and the eye, no non-IOP related treatment is clinically available to date. Various approaches are currently studied in some detail. One interesting strategy focuses on the neurovascular unit. The blood flow of the human retina is controlled by complex mechanisms that include myogenic, metabolic and hormonal factors. The high consumption of oxygen in the human retina is crucial for normal functioning of the organ. As in the brain, blood flow in the retina is also controlled by neurovascular coupling. This means that the retina increases its blood flow to regions in which neurons are activated. This is done in an effort to provide more oxygen and glucose to the active neurons. In the recent years evidence has accumulated that astrocytes play a key role in mediating this vasodilator signal. In the brain, abnormalities in neurovascular coupling have been observed in diseases like stroke, hypertension, spinal-cord injury and Alzheimer's disease. This break-down of neurovascular coupling is considered to play a key role in neuronal death in these diseases. In the retina, abnormalities in neurovascular coupling have been observed in diseases as diabetes and glaucoma. Most of the data obtained in the human retina stem from a system that measures retinal vasodilatation during stimulation with flickering light. The investigators have previously shown that flicker stimulation of the retina is, however, also associated with a pronounced increase in retinal blood velocities. In this study the investigators employed laser Doppler velocimetry (LDV) for the measurement of retinal blood velocities, but this technique is not clinically applicable because it requires excellent fixation of the subject under study. In the present study, the investigators propose to use an alternative system for neurovascular coupling that they have developed recently. In this approach, the investigators use bi-directional Fourier-domain optical coherence tomography for the assessment of retinal blood flow. Optical coherence tomography (OCT) is a non-invasive optical imaging modality enabling cross-sectional tomographic in vivo visualization of internal microstructure in biological systems. In ophthalmology, OCT has become a standard tool in visualizing the retina and nowadays is considered also as a standard tool in the diagnosis of retinal disease. In the recent years, conventional time domain OCT was replaced by Fourier domain OCT providing significantly improved signal quality. This bidirectional system overcomes the limitations of previously realized techniques, which include doubtful validity and limited reproducibility. In addition, pattern ERG, multifocal ERG and oscillatory potentials will be measured to allow for concomitant assessment of neural function. The investigators seek to measure neurovascular coupling in the human retina in patients with early primary open angle glaucoma (POAG), normal tension glaucoma, ocular hypertension and a healthy control group. In order to obtain information on neurovascular coupling, both neuronal function as well as retinal blood flow need to be measured. In the present study, the investigators will employ pattern ERG, multifocal ERG as well as oscillatory potentials to assess the function of the inner retina. Retinal blood flow through major retinal arterial and venous branch vessels will be measured before, during and after flicker stimulation with the dual-beam bidirectional Fourier Domain Doppler OCT coupled to the commercially available Dynamic Vessel Analyzer (DVA) produced by IMEDOS, Jena, Germany, which provides adequate resolution to study the retinal circulation.

适应症

Glaucoma, Open-AngleNormal Tension GlaucomaOcular Hypertension

主动联系研究团队

这项试验目前在中国大陆没有研究中心

这种情况下,直接发"入组咨询"往往会被回复"您所在地区没有中心"。更有效的做法是申请同情用药/扩展准入(由主治医生一同提出),或询问能否到最近的境外中心参加。下面已为您切换到对应的信件版本。

查看完整申请路径与成功率说明 →

总联系人(申办方/研究总部)

问自己是否符合条件、如何预筛

我的病情档案

管理档案

档案只保存在您自己的浏览器里,不会上传,任何人(包括本站)都看不到。

英文版(发给研究团队)

Dear Study Team,

I am a patient in China and I am interested in participating in your clinical trial:

Study Title: Investigation of Neurovascular Coupling in Glaucoma Patients and Healthy Subjects
ClinicalTrials.gov Identifier: NCT03870230
Sponsor: Medical University of Vienna
Investigational product: Fourier Domain Doppler Optical Coherence Tomography (FDOCT), Dynamic Vessel Analyzer (DVA), Pattern Electroretinography (pERG), Optical coherence tomography (OCT), Laser Speckle Flowgraphy (LSFG)

About me:
- Age: (please fill in)
- Sex: (please fill in)
- Confirmed diagnosis and stage: (please fill in)
- Biomarkers / genetic testing: not available
- Prior and current treatments: (please fill in)
- Performance status (ECOG): not assessed
- Current location: China
- Travel ability: (please fill in)

Could you please let me know:
1. Whether I might be eligible for this study;
2. Which site would be closest and most practical for me, and whether remote pre-screening is possible;
3. What documents (medical records, pathology or imaging reports, recent labs) I should prepare for pre-screening.

I can provide English translations of my medical records. Thank you very much for your time and help.

Kind regards,
(your name)
(your email / phone with country code)

中文对照(供您核对)

尊敬的研究团队:

我是一位来自中国的患者,希望咨询参加以下临床试验的可能:

研究名称:Investigation of Neurovascular Coupling in Glaucoma Patients and Healthy Subjects
试验编号:NCT03870230
申办方:Medical University of Vienna
研究药物:Fourier Domain Doppler Optical Coherence Tomography (FDOCT)、Dynamic Vessel Analyzer (DVA)、Pattern Electroretinography (pERG)、Optical coherence tomography (OCT)、Laser Speckle Flowgraphy (LSFG)

我的基本情况:
- 年龄:(请填写)
- 性别:(请填写)
- 确诊疾病与分期:(请填写)
- 基因/标志物检测:暂无
- 既往及当前治疗:(请填写)
- 体能状态(ECOG):未评估
- 目前所在城市:中国
- 可前往范围:(请填写)

想请教三个问题:
1. 我是否可能符合本研究的入组标准?
2. 哪个中心对我最方便可行?能否远程预筛?
3. 预筛需要准备哪些资料(病历、病理、影像、近期化验)?

我可以提供英文翻译版病历。感谢您的时间与帮助。

顺祝安康
(您的姓名)
(您的邮箱/带国际区号的电话)
用邮件客户端发送给 gerhard.garhoefer@meduniwien.ac.at

提示:请与主治医生一起发信——由医生署名的申请,回复率远高于患者单独发信。首封邮件不要附身份证号等敏感信息。研究团队通常在 3–10 个工作日内回复,两周无回音可礼貌追问一次。

下一步怎么做?

  1. 把本页信息带给您的主治医生,评估是否适合参加。
  2. 点击下方按钮打开官方注册页,查看研究中心联系方式。
  3. 直接联系研究团队咨询报名事宜(通常有中文同声翻译服务可协助沟通)。
在 ClinicalTrials.gov 查看官方页面