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Characterizing stroke lesions using digital templates and lesion quantification tools in a web-based imaging informatics system for a large-scale stroke rehabilitation clinical trial

机译:在大规模的中风康复临床试验的基于Web的影像学信息系统中,使用数字模板和病灶量化工具来表征中风病灶

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Previously, we presented an Interdisciplinary Comprehensive Arm Rehabilitation Evaluation (ICARE) imaging informatics system that supports a large-scale phase III stroke rehabilitation trial. The ePR system is capable of displaying anonymized patient imaging studies and reports, and the system is accessible to multiple clinical trial sites and users across the United States via the web. However, the prior multicenter stroke rehabilitation trials lack any significant neuroimaging analysis infrastructure. In stroke related clinical trials, identification of the stroke lesion characteristics can be meaningful as recent research shows that lesion characteristics are related to stroke scale and functional recovery after stroke. To facilitate the stroke clinical trials, we hope to gain insight into specific lesion characteristics, such as vascular territory, for patients enrolled into large stroke rehabilitation trials. To enhance the system's capability for data analysis and data reporting, we have integrated new features with the system: a digital brain template display, a lesion quantification tool and a digital case report form. The digital brain templates are compiled from published vascular territory templates at each of 5 angles of incidence. These templates were updated to include territories in the brainstem using a vascular territory atlas and the Medical Image Processing, Analysis and Visualization (MIPAV) tool. The digital templates are displayed for side-by-side comparisons and transparent template overlay onto patients' images in the image viewer. The lesion quantification tool quantifies planimetric lesion area from user-defined contour. The digital case report form stores user input into a database, then displays contents in the interface to allow for reviewing, editing, and new inputs. In sum, the newly integrated system features provide the user with readily-accessible web-based tools to identify the vascular territory involved, estimate lesion area, and store these results in a web-based digital format.
机译:此前,我们介绍了跨学科综合性康复评估(ICare)成像信息系统,支持大规模的III阶段中风康复审判。 EPR系统能够显示匿名的患者成像研究和报告,并且系统可通过Web通过Web进行多个临床试验站点和美国用户访问。然而,先前的多中心行程康复试验缺乏任何重要的神经影像分析基础设施。在卒中相关的临床试验中,鉴定行程病变特征可能是有意义的,因为最近的研究表明病变特征与中风后的卒中规模和功能恢复有关。为了促进卒中临床试验,我们希望能够深入了解患者患有大型中风康复试验的血管域等特定病变特征。为了增强系统的数据分析和数据报告的能力,我们将使用系统集成新功能:数字脑模板显示,病变量化工具和数字案例报告表单。数字脑模板从5个入射角的每个角度的血管领域模板编译。这些模板被更新为使用血管领域地图集和医学图像处理,分析和可视化(MIPAV)工具在脑干中包含地区。数字模板显示在图像查看器中的患者图像上以旁面比较和透明模板覆盖。 Lesion定量工具从用户定义的轮廓中量化平面图损伤区域。数字案例报告表单将用户输入存储到数据库中,然后在接口中显示内容以允许查看,编辑和新输入。总之,新集成的系统特征为用户提供了易于访问的基于Web的工具,以识别涉及的血管区域,估计病变区域,并以基于Web的数字格式存储这些结果。

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