Understanding the financial aspects of digital pathology: A dynamic customizable return on investment calculator for informed decision-making

Orly Ardon , Sylvia L. Asa , Mark C. Lloyd , Giovanni Lujan , Anil Parwani , Juan C. Santa-Rosario , Bryan Van Meter , Jennifer Samboy , Danielle Pirain , Scott Blakely , Matthew G. Hanna
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A dynamic cost calculator to estimate the financial implications of deploying digital pathology systems was needed to estimate the financial effects on transitioning to a digital workflow.</p></div><div><h3>Methods</h3><p>A systematic approach was used to comprehensively assess the various components involved in implementing and maintaining a digital pathology system. This consisted of: (1) identification of key cost categories associated with digital pathology implementation; (2) data collection and analysis of cost estimation; (3) cost categorization and quantification of direct and indirect costs associated with different use cases, allowing customization of each factor based on specific intended uses and market rates, industry standards, and regional variations; (4) opportunities for savings realized by digitization of glass slides and (5) integration of the cost calculator into a unified framework for a holistic view of the financial implications associated with digital pathology implementation. The online tool enables the user to test various scenarios specific to their institution and provides adjustable parameters to assure organization specific relatability.</p></div><div><h3>Results</h3><p>The Digital Pathology Association has developed a web-based calculator as a companion tool to provide an exhaustive list of the necessary concepts needed when assessing the financial implications of transitioning to a digital pathology system. The dynamic return on investment (ROI) calculator successfully integrated relevant cost and cost-saving components associated with digital pathology implementation and maintenance. Considerations include factors such as digital pathology infrastructure, clinical operations, staffing, hardware and software, information technology, archive and retrieval, medical–legal, and potential reimbursements. 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引用次数: 0

Abstract

Background

The adoption of digital pathology has transformed the field of pathology, however, the economic impact and cost analysis of implementing digital pathology solutions remain a critical consideration for institutions to justify. Digital pathology implementation requires a thorough evaluation of associated costs and should identify and optimize resource allocation to facilitate informed decision-making. A dynamic cost calculator to estimate the financial implications of deploying digital pathology systems was needed to estimate the financial effects on transitioning to a digital workflow.

Methods

A systematic approach was used to comprehensively assess the various components involved in implementing and maintaining a digital pathology system. This consisted of: (1) identification of key cost categories associated with digital pathology implementation; (2) data collection and analysis of cost estimation; (3) cost categorization and quantification of direct and indirect costs associated with different use cases, allowing customization of each factor based on specific intended uses and market rates, industry standards, and regional variations; (4) opportunities for savings realized by digitization of glass slides and (5) integration of the cost calculator into a unified framework for a holistic view of the financial implications associated with digital pathology implementation. The online tool enables the user to test various scenarios specific to their institution and provides adjustable parameters to assure organization specific relatability.

Results

The Digital Pathology Association has developed a web-based calculator as a companion tool to provide an exhaustive list of the necessary concepts needed when assessing the financial implications of transitioning to a digital pathology system. The dynamic return on investment (ROI) calculator successfully integrated relevant cost and cost-saving components associated with digital pathology implementation and maintenance. Considerations include factors such as digital pathology infrastructure, clinical operations, staffing, hardware and software, information technology, archive and retrieval, medical–legal, and potential reimbursements. The ROI calculator developed for digital pathology workflows offers a comprehensive, customizable tool for institutions to assess their anticipated upfront and ongoing annual costs as they start or expand their digital pathology journey. It also offers cost-savings analysis based on specific user case volume, institutional geographic considerations, and actual costs. In addition, the calculator also serves as a tool to estimate number of required whole slide scanners, scanner throughput, and data storage (TB). This tool is intended to estimate the potential costs and cost savings resulting from the transition to digital pathology for business plan justifications and return on investment calculations.

Conclusions

The digital pathology online cost calculator provides a comprehensive and reliable means of estimating the financial implications associated with implementing and maintaining a digital pathology system. By considering various cost factors and allowing customization based on institution-specific variables, the calculator empowers pathology laboratories, healthcare institutions, and administrators to make informed decisions and optimize resource allocation when adopting or expanding digital pathology technologies. The ROI calculator will enable healthcare institutions to assess the financial feasibility and potential return on investment on adopting digital pathology, facilitating informed decision-making and resource allocation.

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了解数字病理学的财务方面:用于知情决策的动态可定制投资回报计算器
背景数字病理学的采用改变了病理学领域,然而,实施数字病理学解决方案的经济影响和成本分析仍是各机构需要考虑的重要问题。实施数字病理需要对相关成本进行全面评估,并应确定和优化资源分配,以促进知情决策。我们需要一个动态成本计算器来估算部署数字病理系统的财务影响,以估算过渡到数字工作流程的财务影响。我们采用了一种系统方法来全面评估实施和维护数字病理系统所涉及的各个环节。这包括:(1) 确定与数字病理实施相关的关键成本类别;(2) 成本估算的数据收集和分析;(3) 成本分类以及与不同使用案例相关的直接和间接成本量化,允许根据具体的预期用途和市场费率、行业标准以及地区差异对每个因素进行定制;(4) 通过玻璃切片数字化实现节约的机会;(5) 将成本计算器整合到一个统一的框架中,以全面了解与数字病理实施相关的财务影响。数字病理协会开发了一个基于网络的计算器,作为评估过渡到数字病理系统的财务影响所需的必要概念的详尽清单。动态投资回报率(ROI)计算器成功整合了与数字病理实施和维护相关的成本和成本节约要素。考虑因素包括数字病理基础设施、临床操作、人员配备、硬件和软件、信息技术、归档和检索、医疗法律以及潜在报销等。为数字病理工作流程开发的投资回报率计算器提供了一个全面、可定制的工具,供机构在开始或扩展数字病理旅程时评估其预期的前期和持续的年度成本。它还能根据具体用户病例量、机构地理考虑因素和实际成本提供成本节约分析。此外,计算器还可用作估算所需整张玻片扫描仪数量、扫描仪吞吐量和数据存储(TB)的工具。该工具旨在估算向数字病理过渡可能产生的成本和节约的成本,以用于商业计划论证和投资回报计算。结论数字病理在线成本计算器提供了一种全面可靠的方法,用于估算与实施和维护数字病理系统相关的财务影响。该计算器考虑了各种成本因素,并允许根据机构的具体变量进行定制,从而使病理实验室、医疗机构和管理者在采用或扩展数字病理技术时能够做出明智的决策并优化资源分配。投资回报率计算器将使医疗机构能够评估采用数字病理技术的财务可行性和潜在投资回报率,促进知情决策和资源分配。
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来源期刊
Journal of Pathology Informatics
Journal of Pathology Informatics Medicine-Pathology and Forensic Medicine
CiteScore
3.70
自引率
0.00%
发文量
2
审稿时长
18 weeks
期刊介绍: The Journal of Pathology Informatics (JPI) is an open access peer-reviewed journal dedicated to the advancement of pathology informatics. This is the official journal of the Association for Pathology Informatics (API). The journal aims to publish broadly about pathology informatics and freely disseminate all articles worldwide. This journal is of interest to pathologists, informaticians, academics, researchers, health IT specialists, information officers, IT staff, vendors, and anyone with an interest in informatics. We encourage submissions from anyone with an interest in the field of pathology informatics. We publish all types of papers related to pathology informatics including original research articles, technical notes, reviews, viewpoints, commentaries, editorials, symposia, meeting abstracts, book reviews, and correspondence to the editors. All submissions are subject to rigorous peer review by the well-regarded editorial board and by expert referees in appropriate specialties.
期刊最新文献
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