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医疗应用功能整合袖套的研制。

Development of a Function-Integrative Sleeve for Medical Applications.

机构信息

Institute of Lightweight Engineering and Polymer Technology (ILK), Technische Universität Dresden, 01307 Dresden, Germany.

Institute of Textile Machinery and High Performance Material Technology (ITM), Technische Universität Dresden, 01307 Dresden, Germany.

出版信息

Sensors (Basel). 2019 Jun 6;19(11):2588. doi: 10.3390/s19112588.

Abstract

Function-integrative textiles bear the potential for a variety of applications in the medical field. Recent clinical investigations suggest that the application of a function-integrative fabric could have a positive impact on currently applied diagnostic procedures of a specific type of tumour. In this context, the fabric should enable local warming of a patient's upper extremity as well as blood flow measurement. Existing solutions comprise a warming a warming system but lack a measuring apparatus for blood flow determination. With regard to the quality of results of current diagnostic procedures, the local warming of the patients' upper extremity and the simultaneous determination of the blood flow plateau are crucial. In the present paper, the development process of a function-integrative sleeve is introduced. Besides the development of an adaptable sleeve-design, the manufacturing process of an integrated warming system was also addressed. Furthermore, the identification of crucial physiological effects, using a Laser Doppler Perfusion Monitor, is introduced. During testing of the function-integrative sleeve, modulation of the desired physiological effects was observed. The results support the initial assumptions and dictate further investigations on increasing user-friendliness and cost-efficiency during adjusting and determining the physiological effects in the course of tumour diagnosis.

摘要

功能整合纺织品在医学领域具有多种应用潜力。最近的临床研究表明,应用功能整合织物可能对目前特定类型肿瘤的诊断程序产生积极影响。在这种情况下,织物应该能够实现患者上肢的局部加热和血流测量。现有的解决方案包括一个加热系统,但缺乏用于血流测量的仪器。就当前诊断程序的结果质量而言,患者上肢的局部加热和同时确定血流平台至关重要。本文介绍了一种功能整合袖套的开发过程。除了开发适应性袖套设计外,还解决了集成加热系统的制造过程。此外,还介绍了使用激光多普勒灌注监测器识别关键生理效应的方法。在对功能整合袖套进行测试时,观察到了所需生理效应的调节。结果支持最初的假设,并指导在肿瘤诊断过程中调整和确定生理效应时进一步研究提高用户友好性和成本效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ed1/6603732/0b034dbb0501/sensors-19-02588-g001.jpg

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