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内窥镜终身系统架构:审视过去以诊断未来技术。

Endoscopy Lifetime Systems Architecture: Scoping Out the Past to Diagnose the Future Technology.

作者信息

Browning Craig M, Cloutier Robert, Rich Thomas C, Leavesley Silas J

机构信息

Department of Chemical and Biomolecular Engineering, University of South Alabama, Mobile, AL 36688, USA.

Department of Systems Engineering, University of South Alabama, Mobile, AL 36688, USA.

出版信息

Systems (Basel). 2022 Oct;10(5). doi: 10.3390/systems10050189. Epub 2022 Oct 14.

Abstract

Systems engineering captures the desires and needs of the customer to conceptualize a system from the overall goal down to the small details prior to any physical development. While many systems projects tend to be large and complicated (i.e., cloud-based infrastructure, long-term space travel shuttles, missile defense systems), systems engineering can also be applied to smaller, complex systems. Here, the system of interest is the endoscope, a standard biomedical screening device used in laparoscopic surgery, screening of upper and lower gastrointestinal tracts, and inspection of the upper airway. Often, endoscopic inspection is used to identify pre-cancerous and cancerous tissues, and hence, a requirement for endoscopic systems is the ability to provide images with high contrast between areas of normal tissue and neoplasia (early-stage abnormal tissue growth). For this manuscript, the endoscope was reviewed for all the technological advancements thus far to theorize what the next version of the system could be in order to provide improved detection capabilities. Endoscopic technology was decomposed into categories, using systems architecture and systems thinking, to visualize the improvements throughout the system's lifetime from the original to current state-of-the-art. Results from this review were used to identify trends in subsystems and components to estimate the theoretical performance maxima for different subsystems as well as areas for further development. The subsystem analysis indicated that future endoscope systems will focus on more complex imaging and higher computational requirements that will provide improved contrast in order to have higher accuracy in optical diagnoses of early, abnormal tissue growth.

摘要

系统工程在任何实体开发之前,从总体目标到细微细节,捕捉客户的期望和需求,以对系统进行概念化设计。虽然许多系统项目往往规模大且复杂(例如,基于云的基础设施、长期太空旅行航天飞机、导弹防御系统),但系统工程也可应用于较小的复杂系统。这里,感兴趣的系统是内窥镜,一种用于腹腔镜手术、上下消化道筛查以及上呼吸道检查的标准生物医学筛查设备。通常,内窥镜检查用于识别癌前组织和癌组织,因此,内窥镜系统的一个要求是能够提供正常组织区域与瘤形成(早期异常组织生长)之间具有高对比度的图像。对于本手稿,回顾了内窥镜迄今为止的所有技术进步,以推测该系统的下一版本可能是什么样的,以便提供更好的检测能力。利用系统架构和系统思维,将内窥镜技术分解为不同类别,以可视化整个系统从原始状态到当前最先进状态的改进情况。此次回顾的结果用于确定子系统和组件的趋势,以估计不同子系统的理论性能最大值以及进一步发展的领域。子系统分析表明,未来的内窥镜系统将专注于更复杂的成像和更高的计算要求,这将提供更好的对比度,以便在早期异常组织生长的光学诊断中具有更高的准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96cd/9627979/4f575bbd9f63/nihms-1845036-f0001.jpg

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