生物医学科学家对临床实验室需求的分析和评估:以活动为基础的管理作为一种评估方法。

IF 4.3 3区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Frontiers in Bioengineering and Biotechnology Pub Date : 2025-05-13 eCollection Date: 2025-01-01 DOI:10.3389/fbioe.2025.1569800
Claudia Bizzoni, Gavino Napolitano, Simonetta Cesa, Luca Sacella, Caterina Bianciardi, Cosimo Ottomano, Rita Mancini, Giorgio Da Rin
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引用次数: 0

摘要

导论:医疗保健系统必须保护公民的健康发展模式结合概念的效率,有效性和质量的护理。后covid -19大流行背景突出了有效管理和分配人力资源的重要性。在这种情况下,人员需求的分析和计算具有战略重要性。该项目旨在提出一种确定生物医学科学家需求的方法。目标是创建一个适用于不同上下文的标准模型。方法:该项目是与意大利临床生物化学和临床分子生物学学会合作开发的,它创建了一种遵循“基于活动的管理”方法的新格式。它的特点是持续改进,基于对过程的分析,分解成子过程和活动。在格式发展阶段之后,应用于不同环境的阶段,如生物化学和血液学部门,随之而来。结果:建议的方法可以估计实验室过程管理所需的全职等效人员的数量。此外,还获得了客观的分析性数据,因为它是根据包括不同活动的生产率和执行时间在内的及时数字调查得出的。讨论:使用该格式对流程的分析、效率和可能的改进有相关的影响。这种方法允许评价和改进分析和“生产外”活动,这些活动往往被低估,但在过程中具有决定性作用。建议的格式可以被认为是实验室管理人员分析和评估实验室生物医学科学家需求的有效工具。基于活动的管理使我们能够获得精确和客观的数据,同时专注于任何临床实验室的主要目标:通过安全可靠的实验室测试,通过支持诊断和治疗途径,为患者创造价值,这取决于正确分配人力资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and assessment of biomedical scientists' needs for clinical laboratory: activity-based management as an evaluation methodology.

Introduction: Healthcare systems have to protect citizens' health by developing models combining concepts of efficiency, effectiveness and quality of care. The post-Covid-19 pandemic context has highlighted the relevance of efficiently managing and allocating human resources. In this scenario, the analysis and calculation of personnel needs take on strategic importance. The project aims to suggest a methodology to define the needs of Biomedical Scientists. The goal is to create a standard model adaptable to different contexts.

Methods: This project, developed in cooperation with the Italian Society of Clinical Biochemistry and Clinical Molecular Biology, has created a new format following the "Activity Based Management" approach. It is characterized by continuous improvements, based on analysis of processes, broken down into sub-processes and activities. After the phase of format development, a phase of application to different contexts, such as biochemistry and the hematology sectors, followed.

Results: The suggested methodology allows to estimate the number of Full Time Equivalents necessary for the management of the laboratory processes. Furthermore, an objective and analytical data is obtained, because it is based on timely numerical surveys that included productivity and execution times of the different activities.

Discussion: Using the format had a relevant impact on the analysis of the processes, their efficiency, and their possible improvement. This method allowed to evaluate and improve the analytical and "extra-production" activities, often underestimated but having a decisive role in the process. The proposed format can be considered a valid tool for laboratory managers to analyze and evaluating the needs of Biomedical Scientists in the laboratory. Activity Based Management allowed us to obtain precise and objective data and, at the same time, to focus on the main objective of any clinical laboratory: to create value for the patient by supporting diagnosis and treatment of paths through safe and reliable laboratory tests, which depends on a correct allocation of human resources.

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来源期刊
Frontiers in Bioengineering and Biotechnology
Frontiers in Bioengineering and Biotechnology Chemical Engineering-Bioengineering
CiteScore
8.30
自引率
5.30%
发文量
2270
审稿时长
12 weeks
期刊介绍: The translation of new discoveries in medicine to clinical routine has never been easy. During the second half of the last century, thanks to the progress in chemistry, biochemistry and pharmacology, we have seen the development and the application of a large number of drugs and devices aimed at the treatment of symptoms, blocking unwanted pathways and, in the case of infectious diseases, fighting the micro-organisms responsible. However, we are facing, today, a dramatic change in the therapeutic approach to pathologies and diseases. Indeed, the challenge of the present and the next decade is to fully restore the physiological status of the diseased organism and to completely regenerate tissue and organs when they are so seriously affected that treatments cannot be limited to the repression of symptoms or to the repair of damage. This is being made possible thanks to the major developments made in basic cell and molecular biology, including stem cell science, growth factor delivery, gene isolation and transfection, the advances in bioengineering and nanotechnology, including development of new biomaterials, biofabrication technologies and use of bioreactors, and the big improvements in diagnostic tools and imaging of cells, tissues and organs. In today`s world, an enhancement of communication between multidisciplinary experts, together with the promotion of joint projects and close collaborations among scientists, engineers, industry people, regulatory agencies and physicians are absolute requirements for the success of any attempt to develop and clinically apply a new biological therapy or an innovative device involving the collective use of biomaterials, cells and/or bioactive molecules. “Frontiers in Bioengineering and Biotechnology” aspires to be a forum for all people involved in the process by bridging the gap too often existing between a discovery in the basic sciences and its clinical application.
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