Patriarca Riccardo, Di Gravio Giulio, Costantino Francesco, Falegnami Andrea, Bilotta Federico
Department of Mechanical and Aerospace Engineering, Sapienza University of Rome, Rome, Italy.
Department of Anesthesiology, Critical Care and Pain Medicine, Sapienza University of Rome, Rome, Italy.
Saf Health Work. 2018 Sep;9(3):265-276. doi: 10.1016/j.shaw.2017.10.005. Epub 2017 Nov 2.
Resilience engineering is a paradigm for safety management that focuses on coping with complexity to achieve success, even considering several conflicting goals. Modern sociotechnical systems have to be resilient to comply with the variability of everyday activities, the tight-coupled and underspecified nature of work, and the nonlinear interactions among agents. At organizational level, resilience can be described as a combination of four cornerstones: monitoring, responding, learning, and anticipating.
Starting from these four categories, this article aims at defining a semiquantitative analytic framework to measure organizational resilience in complex sociotechnical systems, combining the resilience analysis grid and the analytic hierarchy process.
This article presents an approach for defining resilience abilities of an organization, creating a structured domain-dependent framework to define a resilience profile at different levels of abstraction, and identifying weaknesses and strengths of the system and potential actions to increase system's adaptive capacity. An illustrative example in an anesthesia department clarifies the outcomes of the approach.
The outcome of the resilience analysis grid, i.e., a weighed set of probing questions, can be used in different domains, as a support tool in a wider Safety-II oriented managerial action to bring safety management into the core business of the organization.
弹性工程是一种安全管理范式,专注于应对复杂性以取得成功,即便要考虑多个相互冲突的目标。现代社会技术系统必须具备弹性,以适应日常活动的多变性、工作的紧密耦合且未明确规定的性质,以及各主体之间的非线性相互作用。在组织层面,弹性可被描述为四个基石的组合:监测、响应、学习和预测。
从这四个类别出发,本文旨在定义一个半定量分析框架,结合弹性分析网格和层次分析法,来衡量复杂社会技术系统中的组织弹性。
本文提出了一种方法,用于定义组织的弹性能力,创建一个结构化的领域相关框架,以在不同抽象层次定义弹性概况,并识别系统的弱点和优势以及提高系统适应能力的潜在行动。麻醉科的一个示例阐明了该方法产生的结果。
弹性分析网格的结果,即一组经过加权的探测性问题,可用于不同领域,作为更广泛的面向安全-II的管理行动中的支持工具,将安全管理纳入组织的核心业务。