Department for Orthopedics and Sports Orthopedics, Technical University Munich, Munich, Germany
Institute for Medical Microbiology, Immunology and Hygiene, Technical University Munich, Munich, Germany.
In Vivo. 2019 Sep-Oct;33(5):1625-1633. doi: 10.21873/invivo.11647.
BACKGROUND/AIM: Prosthetic joint infections (PJI) are difficult to diagnose and treat. For a correct diagnosis, an array of information has to be processed and weighted. Successful treatment depends on the diagnosis, timing, and surgical strategy paired with treatment of the infectious agent. The complexity and interdisciplinarity needed cause difficulties concerning decision-making, the communication between disciplines, and the execution of a treatment strategy. The aim of this study was to develop a software platform to enhance the collection of information for the diagnosis of PJI, the interdisciplinary decision-making process, the communication between team members, and continuous evaluation of treatment.
In regular planning sessions with an information technology (IT) specialist, a concept for an IT solution was chosen and the tool was designed in an interdisciplinary approach.
The tool has been used as a trial version since June 2017. It consists of 14 user interfaces with 431 items. A total of 117 patients with 118 infections have been entered and the strategy decided upon and communicated using 298 infection board documents outlining the treatment. The tool is now being used to organize the infections board agenda, schedule patient case discussions, document the relevant data and treatment plan, as well as communicate with the other teams involved in the treatment.
Using the developed tool enables the infections team to work collaboratively and under division of labor on each case, rendering the work flow more efficient for each team member.
背景/目的:人工关节感染(PJI)的诊断和治疗较为困难。为了正确诊断,需要处理和权衡大量信息。成功的治疗取决于诊断、时机和手术策略,以及对感染病原体的治疗。诊断、跨学科决策过程、团队成员之间的沟通以及治疗策略的持续评估等方面的复杂性和跨学科性都给决策、学科间沟通和治疗策略的执行带来了困难。本研究旨在开发一个软件平台,以加强 PJI 诊断的信息收集、跨学科决策过程、团队成员之间的沟通以及治疗效果的持续评估。
与信息技术(IT)专家定期规划会议,选择 IT 解决方案的概念,并采用跨学科的方法设计工具。
该工具自 2017 年 6 月以来一直作为试用版使用。它由 14 个用户界面和 431 个项目组成。共输入了 117 名患有 118 例感染的患者,通过 298 份感染委员会文件决定并沟通了治疗策略,这些文件概述了治疗方案。该工具目前用于组织感染委员会的议程、安排患者病例讨论、记录相关数据和治疗计划,并与参与治疗的其他团队进行沟通。
使用开发的工具可以使感染团队在每个病例上进行协作和分工,使每个团队成员的工作流程更加高效。