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Multi-disciplinary data organization and visualization models for clinical and pre-clinical studies; A Case Study in the application of proton beam radiosurgery for treating spinal cord injury related pain

机译:临床和前期研究的多学科数据组织和可视化模型;质子束放射前术治疗脊髓损伤相关疼痛的案例研究

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An increasing adoption of electronic medical records has made information more accessible to clinicians and researchers through dedicated systems such as HIS, RIS and PACS. The speed and the amount at which information are generated in a multi-institutional clinical study make the problem complicated compared to day-to-day hospital workflow. Often, increased access to the information does not translate into the efficient use of that information. Therefore, it becomes crucial to establish models which can be used to organize and visualize multi-disciplinary data. Good visualization in turn makes it easy for clinical decision-makers to reach a conclusion within a small span of time. In a clinical study involving multi-disciplinary data and multiple user groups who need access to the same data and presentation states based on the stage of the clinical trial or the task are crucial within the workflow. Therefore, in order to demonstrate the conceptual system design and system workflow, we will be presenting a clinical trial based on application of proton beam for radiosurgery which will utilize our proposed system. For demonstrating user role and visualization design purposes, we will be focusing on three different user groups which are researchers involved in patient enrollment and recruitment, clinicians involved in treatment and imaging review and lastly the principle investigators involved in monitoring progress of clinical study. Also datasets for each phase of the clinical study including preclinical and clinical data as it related to subject enrollment, subject recruitment (classifier), treatment (DICOM), imaging, and pathological analysis (protein staining) of outcomes.
机译:越来越多的电子医疗记录通过专门的系统,临床医生和研究人员通过他,RIS和PAC。在多制度临床研究中产生信息的速度和金额使得与日常医院工作流程相比复杂的问题。通常,增加对信息的访问不会转化为这些信息的有效使用。因此,建立可以用于组织和可视化多学科数据的模型变得至关重要。良好的可视化反过来使临床决策者容易达到一小跨度的结论。在涉及多学科数据和多个用户组的临床研究中,他们需要基于临床试验的阶段访问相同的数据和演示状态,或者任务在工作流程中至关重要。因此,为了展示概念系统设计和系统工作流程,我们将基于应用质子束用于放射外科的临床试验,这将利用我们所提出的系统。为了展示用户角色和可视化设计目的,我们将专注于三种不同的用户组,这些用户群体是参与患者入学和招聘的研究人员,参与治疗和影像学审查的临床医生,最后是参与临床研究进展的原则调查人员。此外,临床研究的每个阶段的数据集包括临床前和临床数据,因为它与受试者注册有关,主题招生(分类剂),治疗(DICOM),成像和病理分析(蛋白质染色)的结果。

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