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实时分析和显示定量指标,以跟踪和改进临床工作流程。

Real-time analysis and display of quantitative measures to track and improve clinical workflow.

机构信息

Department of Radiation Oncology, Alpert Medical School of Brown University, Providence, Rhode Island, USA.

Department of Radiation Oncology, Columbia University Irving Medical Center, New York, New York, USA.

出版信息

J Appl Clin Med Phys. 2022 Sep;23(9):e13610. doi: 10.1002/acm2.13610. Epub 2022 Aug 3.

Abstract

PURPOSE

Radiotherapy treatment planning is a complex process with multiple, dependent steps involving an interdisciplinary patient care team. Effective communication and real-time tracking of resources and care path activities are key for clinical efficiency and patient safety.

MATERIALS AND METHODS

We designed and implemented a secure, interactive web-based dashboard for patient care path, clinical workflow, and resource utilization management. The dashboard enables visualization of resource utilization and tracks progress in a patient's care path from the time of acquisition of the planning CT to the time of treatment in real-time. It integrates with the departmental electronic medical records (EMR) system without the creation and maintenance of a separate database or duplication of work by clinical staff. Performance measures of workflow were calculated.

RESULTS

The dashboard implements a standardized clinical workflow and dynamically consolidates real-time information queried from multiple tables in the EMR database over the following views: (1) CT Sims summarizes patient appointment information on the CT simulator and patient load; (2) Linac Sims summarizes patient appointment times, setup history, and notes, and patient load; (3) Task Status lists the clinical tasks associated with a treatment plan, their due date, status and ownership, and patient appointment details; (4) Documents provides the status of all documents in the patients' charts; and (5) Diagnoses and Interventions summarizes prescription information, imaging instructions and whether the plan was approved for treatment. Real-time assessment and quantification of progress and delays in a patient's treatment start were achieved.

CONCLUSIONS

This study indicates it is feasible to develop and implement a dashboard, tailored to the needs of an interdisciplinary team, which derives and integrates information from the EMR database for real-time analysis and display of resource utilization and clinical workflow in radiation oncology. The framework developed facilitates informed, data-driven decisions on clinical workflow management as we seek to optimize clinical efficiency and patient safety.

摘要

目的

放射治疗计划是一个复杂的过程,涉及多个相互依赖的步骤,涉及跨学科的患者护理团队。有效的沟通和实时跟踪资源和护理路径活动是临床效率和患者安全的关键。

材料和方法

我们设计并实现了一个安全的、交互式的基于网络的患者护理路径、临床工作流程和资源利用管理仪表板。该仪表板能够可视化资源利用情况,并实时跟踪患者从获取计划 CT 到治疗时间的护理路径进展情况。它与部门电子病历(EMR)系统集成,而无需创建和维护单独的数据库或由临床工作人员重复工作。计算了工作流程的绩效指标。

结果

仪表板实现了标准化的临床工作流程,并通过以下视图动态合并从 EMR 数据库中的多个表查询的实时信息:(1)CT Sims 总结了 CT 模拟器上的患者预约信息和患者负荷;(2)Linac Sims 总结了患者预约时间、设置历史和笔记以及患者负荷;(3)任务状态列出了与治疗计划相关的临床任务、其截止日期、状态和所有权以及患者预约详细信息;(4)文档提供了患者图表中所有文档的状态;(5)诊断和干预总结了处方信息、成像说明以及计划是否获准进行治疗。实现了对患者治疗开始时进度和延迟的实时评估和量化。

结论

本研究表明,开发和实施一个仪表板是可行的,该仪表板针对跨学科团队的需求定制,从 EMR 数据库中获取和整合信息,用于实时分析和显示放射肿瘤学中的资源利用和临床工作流程。所开发的框架促进了基于数据的临床工作流程管理决策,因为我们力求优化临床效率和患者安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d3f/9512345/f200c0af4897/ACM2-23-e13610-g006.jpg

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