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多模态治疗胶囊内窥镜中的声传感和超声药物输送。

Acoustic Sensing and Ultrasonic Drug Delivery in Multimodal Theranostic Capsule Endoscopy.

机构信息

School of Life Sciences, University of Dundee, Dundee DD1 5EH, Scotland, UK.

School of Engineering, University of Glasgow, Glasgow G12 8QQ, Scotland, UK.

出版信息

Sensors (Basel). 2017 Jul 3;17(7):1553. doi: 10.3390/s17071553.

Abstract

Video capsule endoscopy (VCE) is now a clinically accepted diagnostic modality in which miniaturized technology, an on-board power supply and wireless telemetry stand as technological foundations for other capsule endoscopy (CE) devices. However, VCE does not provide therapeutic functionality, and research towards therapeutic CE (TCE) has been limited. In this paper, a route towards viable TCE is proposed, based on multiple CE devices including important acoustic sensing and drug delivery components. In this approach, an initial multimodal diagnostic device with high-frequency quantitative microultrasound that complements video imaging allows surface and subsurface visualization and computer-assisted diagnosis. Using focused ultrasound (US) to mark sites of pathology with exogenous fluorescent agents permits follow-up with another device to provide therapy. This is based on an US-mediated targeted drug delivery system with fluorescence imaging guidance. An additional device may then be utilized for treatment verification and monitoring, exploiting the minimally invasive nature of CE. While such a theranostic patient pathway for gastrointestinal treatment is presently incomplete, the description in this paper of previous research and work under way to realize further components for the proposed pathway suggests it is feasible and provides a framework around which to structure further work.

摘要

视频胶囊内镜(VCE)现在是一种被临床认可的诊断方式,其微型化技术、板载电源和无线遥测技术是其他胶囊内镜(CE)设备的技术基础。然而,VCE 不提供治疗功能,针对治疗性 CE(TCE)的研究也受到限制。本文提出了一种可行的 TCE 途径,该途径基于包括重要的声学感应和药物输送组件在内的多种 CE 设备。在这种方法中,最初的多模态诊断设备具有高频定量微超声,可补充视频成像,从而实现表面和次表面可视化和计算机辅助诊断。使用聚焦超声(US)用外源性荧光剂标记病理部位,允许使用另一个设备进行后续治疗。这基于具有荧光成像引导的超声介导靶向药物输送系统。然后可以使用另一个设备进行治疗验证和监测,利用 CE 的微创性质。虽然这种胃肠道治疗的治疗-诊断患者途径目前还不完整,但本文对以前的研究和正在进行的工作的描述,以实现拟议途径的进一步组件,表明它是可行的,并提供了一个框架,以围绕该框架进一步开展工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5b4/5539857/8530649eb003/sensors-17-01553-g001.jpg

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