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医学中的微技术:概述

Microtechnologies in medicine: an overview.

作者信息

Schurr Marc O, Schostek Sebastian, Ho Chi-Nghia, Rieber Fabian, Menciassi Arianna

机构信息

Institute of Healthcare Industries (IHCI), Steinbeis University Berlin, Germany.

出版信息

Minim Invasive Ther Allied Technol. 2007;16(2):76-86. doi: 10.1080/13645700701266917.

DOI:10.1080/13645700701266917
PMID:17474050
Abstract

Microsystems technology (MST) has become a significant enabler of novel medical devices and implants over the last years. Typical examples are MST units in cardiac rhythm management devices or in hearing implants. A classification of medical MST applications can be made according to their relationship with the anatomy that is based on the kind and duration of interaction with the human body: Class 1: Extra-corporeal devices such as telemetric health monitoring systems or point of care testing systems. Class 2: Intra-corporeal devices such as intelligent surgical instruments. Class 3: Temporarily incorporated or ingested devices, such as telemetric endoscopes. Class 4: Long-term implantable devices such as telemetric implants. Medical applications of MST are growing at double-digit compounded growth rates, leading to a forecasted global market volume of over USD 1 billion in 2006 or 2007, making MST devices a relevant segment of the medical technology market. The clinical foundation for promoting the use of MST in medicine is mainly based on the significant potential of MST to enable products that improve early disease detection and the monitoring of chronic illnesses. This refers to a number of the most important health problems such as cardiovascular disease, hypertension, diabetes and cancer, to name just a few. More recently microrobotics has become a relevant research area for enabling the atraumatic transport of MST-enhanced diagnostic and therapeutic devices inside the human body.

摘要

在过去几年中,微系统技术(MST)已成为新型医疗设备和植入物的重要推动因素。典型的例子是心律管理设备或听力植入物中的MST单元。可以根据医疗MST应用与人体解剖结构的关系进行分类,这基于与人体相互作用的类型和持续时间:1类:体外设备,如遥测健康监测系统或即时检测系统。2类:体内设备,如智能手术器械。3类:临时植入或摄入的设备,如遥测内窥镜。4类:长期可植入设备,如遥测植入物。MST的医疗应用正以两位数的复合增长率增长,预计到2006年或2007年全球市场规模将超过10亿美元,使MST设备成为医疗技术市场的一个相关领域。推动MST在医学中应用的临床基础主要基于MST在开发能够改善疾病早期检测和慢性病监测的产品方面的巨大潜力。这涉及到一些最重要的健康问题,如心血管疾病、高血压、糖尿病和癌症等等。最近,微型机器人技术已成为一个相关的研究领域,用于实现MST增强的诊断和治疗设备在人体内的无创运输。

相似文献

1
Microtechnologies in medicine: an overview.医学中的微技术:概述
Minim Invasive Ther Allied Technol. 2007;16(2):76-86. doi: 10.1080/13645700701266917.
2
MST development for medical applications: results of the German Research Programme on MST over ten years.用于医学应用的微系统技术发展:德国微系统技术十年研究计划的成果
Minim Invasive Ther Allied Technol. 2007;16(2):87-90. doi: 10.1080/13645700701275462.
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The Korean research & development program on micro-electro-mechanical systems (MEMS) in medical applications.韩国关于微机电系统(MEMS)在医学应用方面的研发项目。
Minim Invasive Ther Allied Technol. 2007;16(2):109-19. doi: 10.1080/13645700701267071.
4
Microsystems technology for medical applications.
Minim Invasive Ther Allied Technol. 2007;16(2):75. doi: 10.1080/13645700701266909.
5
Principles of development and design of microsystems.微系统的开发与设计原理
Endosc Surg Allied Technol. 1995 Aug;3(4):204-9.
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Microsystems: applications in diagnostic and monitoring devices.微系统:在诊断和监测设备中的应用。
Med Device Technol. 2000 Oct;11(8):20-2.
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Wearable and implantable monitoring systems: 10 years experience at University of Ulster.可穿戴和植入式监测系统:阿尔斯特大学的十年经验
Stud Health Technol Inform. 2004;108:203-8.
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Engineering novel diagnostic modalities and implantable cytomimetic nanomaterials for next-generation medicine.为下一代医学设计新型诊断方法和可植入的细胞模拟纳米材料。
Biol Blood Marrow Transplant. 2006 Jan;12(1 Suppl 1):92-9. doi: 10.1016/j.bbmt.2005.09.013.
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Potential applications of microsystems engineering in minimal invasive surgery.微系统工程在微创手术中的潜在应用。
Endosc Surg Allied Technol. 1993 Jun;1(3):171-80.
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[Medical devices vigilance].[医疗器械警戒]
Ann Dermatol Venereol. 2008 Jan;135(1 Pt 2):1S70-2. doi: 10.1016/S0151-9638(08)70215-1.

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