Kauw Frans, van Ommen Fasco, Bennink Edwin, Cramer Maarten J, Kappelle L Jaap, Takx Richard Ap, Velthuis Birgitta K, Viergever Max A, Wouter van Es H, Schonewille Wouter J, Coutinho Jonathan M, Majoie Charles Blm, Marquering Henk A, de Jong Hugo Wam, Dankbaar Jan W
Department of Radiology, University Medical Center Utrecht, Utrecht University, Utrecht, The Netherlands.
Image Sciences Institute, University Medical Center Utrecht, Utrecht, The Netherlands.
Eur Stroke J. 2020 Dec;5(4):432-440. doi: 10.1177/2396987320966420. Epub 2020 Oct 23.
Computed tomography is the most frequently used imaging modality in acute stroke imaging protocols. Detection of small volume infarcts in the brain and cardioembolic sources of stroke is difficult with current computed tomography protocols. Furthermore, the role of computed tomography findings to predict recurrent ischemic stroke is unclear. With ENCLOSE, we aim to improve (1) the detection of small volume infarcts with thin slice computed tomography perfusion (CTP) images and thromboembolic source with cardiac computed tomography techniques in the acute stage of ischemic stroke and (2) prediction of recurrent ischemic stroke with computed tomography-derived predictors.Methods/design: ENCLOSE is a prospective multicenter observational cohort study, which will be conducted in three Dutch stroke centers (ClinicalTrials.gov Identifier: NCT04019483). Patients (≥18 years) with suspected acute ischemic stroke who undergo computed tomography imaging within 9 h after symptom onset are eligible. Computed tomography imaging includes non-contrast CT, CTP, and computed tomography angiography (CTA) from base of the heart to the top of the brain. Dual-energy CT data will be acquired when possible, and thin-slice CTP reconstructions will be obtained in addition to standard 5 mm CTP data. CTP data will be processed with commercially available software and locally developed model-based methods. The post-processed thin-slice CTP images will be compared to the standard CTP images and to magnetic resonance diffusion-weighted imaging performed within 48 h after admission. Detection of cardioembolic sources of stroke will be evaluated on the CTA images. Recurrence will be evaluated 90 days and two years after the index event. The added value of imaging findings to prognostic models for recurrent ischemic stroke will be evaluated.
The aim of ENCLOSE is to improve early detection of small volume stroke and thromboembolic sources and to improve prediction of recurrence in patients with acute ischemic stroke.
计算机断层扫描是急性中风成像方案中最常用的成像方式。目前的计算机断层扫描方案很难检测出脑内小体积梗死灶和中风的心源性栓塞源。此外,计算机断层扫描结果对预测复发性缺血性中风的作用尚不清楚。通过ENCLOSE研究,我们旨在:(1)利用薄层计算机断层扫描灌注(CTP)图像改善小体积梗死灶的检测,并在缺血性中风急性期利用心脏计算机断层扫描技术改善血栓栓塞源的检测;(2)利用计算机断层扫描衍生的预测指标改善复发性缺血性中风的预测。
方法/设计:ENCLOSE是一项前瞻性多中心观察性队列研究,将在荷兰的三个中风中心进行(ClinicalTrials.gov标识符:NCT04019483)。症状发作后9小时内接受计算机断层扫描成像的疑似急性缺血性中风患者(≥18岁)符合条件。计算机断层扫描成像包括从心底到脑顶的非增强CT、CTP和计算机断层扫描血管造影(CTA)。如有可能,将获取双能CT数据,除标准的5毫米CTP数据外,还将获得薄层CTP重建图像。CTP数据将使用商用软件和本地开发的基于模型的方法进行处理。将处理后的薄层CTP图像与标准CTP图像以及入院后48小时内进行的磁共振扩散加权成像进行比较。将在CTA图像上评估中风的心源性栓塞源的检测情况。将在索引事件发生后90天和两年评估复发情况。将评估成像结果对复发性缺血性中风预后模型的附加值。
ENCLOSE的目的是改善小体积中风和血栓栓塞源的早期检测,并改善急性缺血性中风患者复发的预测。