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一种用于化疗引起的周围神经病变的肢体低温可穿戴设备:医疗产品开发中的混合方法研究。

A Limb Hypothermia Wearable for Chemotherapy-Induced Peripheral Neuropathy: A Mixed-Methods Approach in Medical Product Development.

作者信息

Binder Jonathan, Unver Ertu, Clayton Jane, Burke Patrick, Paxman Richard, Sundar Raghav, Bandla Aishwarya

机构信息

Department of Architecture and 3D Design, University of Huddersfield, Huddersfield, United Kingdom.

Paxman Coolers Ltd., Huddersfield, United Kingdom.

出版信息

Front Digit Health. 2020 Dec 15;2:573234. doi: 10.3389/fdgth.2020.573234. eCollection 2020.

Abstract

Chemotherapy-Induced Peripheral Neuropathy (CIPN) is a common dose-limiting side-effect of taxane-based chemotherapy, causing progressive and often irreversible pain/sensitivity in the hands and feet. Prevention/treatments for CIPN are not well-developed and urgently needed. Limb cryocompression during chemotherapy has demonstrated promising early data of preventing/reducing CIPN severity. Currently there are no medical devices available that are dedicated to the specific requirements of CIPN prevention. As part of our ongoing development of a dedicated CIPN-prevention limb cryocompression system, this study documents the design & development of the wearable arm wrap, a central component of the system, from initial concept to a trial-ready prototype. A collaborative and multidisciplinary approach was adopted to address the complex and high-risk nature of this SME (Small Medium Enterprise)-centered medical device design & development process. The complementary collaboration unites multidisciplinary expertise spanning the scope of the project. Alongside the clinical, academic, and design & development expertise, the integration of commercial expertise is imperative to promote the market viability, and ultimate success, of the development. As the global leading experts in scalp cooling specializing in the prevention of chemotherapy-induced alopecia, UK-based SME Paxman Coolers Ltd is optimally positioned to support the commercial and regulatory dimensions. Development and adoption of a novel mixed-methodology (HudPAX) facilitated the integration of evidence-based and user-centered techniques to optimize the design & development approach and ensure integration of all critical design inputs. Alpha prototypes were designed through evidence-based approaches, with data from existing clinical trials utilized to determine the preliminary design inputs, alongside 3D ergonomic data. Investigations utilized computer-aided design, rapid prototyping, additive manufacturing, sketch modeling, and fast ideation. User-based approaches facilitated stakeholder-feedback through expert focus groups, informing further design & development and projecting the design into the next stage, Beta prototyping, for use in large-scale efficacy trials and upscaling manufacturing. This paper demonstrates a novel mixed-methods approach, which promotes cross-sector multidisciplinary collaboration, to address the complex multi-layered challenges posed by an early-stage medical device design & development process.

摘要

化疗引起的周围神经病变(CIPN)是紫杉烷类化疗常见的剂量限制性副作用,会导致手部和足部逐渐出现且通常不可逆的疼痛/敏感症状。CIPN的预防/治疗方法尚不完善,急需改进。化疗期间进行肢体冷冻加压已显示出预防/减轻CIPN严重程度的早期数据,前景乐观。目前尚无专门满足CIPN预防特定需求的医疗设备。作为我们正在进行的专用CIPN预防肢体冷冻加压系统开发的一部分,本研究记录了该系统核心部件——可穿戴手臂护套从最初概念到可用于试验的原型的设计与开发过程。我们采用了协作式多学科方法,以应对这个以中小企业(SME)为中心的医疗设备设计与开发过程的复杂性和高风险性。这种互补性协作汇聚了涵盖项目范围的多学科专业知识。除了临床、学术以及设计与开发专业知识外,商业专业知识的融入对于提升该产品的市场可行性及最终成功至关重要。作为全球头皮冷却领域预防化疗引起脱发的领先专家,英国中小企业Paxman Coolers Ltd在支持商业和监管方面具有最佳优势。一种新颖的混合方法(HudPAX)的开发与应用促进了基于证据和以用户为中心的技术整合,以优化设计与开发方法,并确保整合所有关键设计输入。通过基于证据的方法设计了alpha原型,利用现有临床试验数据确定初步设计输入,并结合3D人体工程学数据。研究采用了计算机辅助设计、快速成型制作、增材制造、草图建模和快速构思等方法。基于用户的方法通过专家焦点小组促进了利益相关者的反馈,为进一步的设计与开发提供信息,并将设计推进到下一阶段——beta原型制作,用于大规模疗效试验和扩大生产规模。本文展示了一种新颖的混合方法,该方法促进跨部门多学科协作,以应对早期医疗设备设计与开发过程带来的复杂多层次挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b87/8521967/772a37704b9d/fdgth-02-573234-g0004.jpg

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