微波刺激组织再生的自舒张治疗运动器官功能障碍

B. Dmitriyev, L. Zavgorodny, V. Pokatayev, V. Tkalych, Y. Litvinov, V. Kozlov, A. Kuchnirenco, I. Chabanenco, A. Yatsunenko, P. Zabolotny, B. Nalivaiko
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引用次数: 0

摘要

本报告考虑了运动器官功能障碍患者的康复,包括那些伴有炎症过程的疾病。该系统通过三个具有独特运动学特性的独立驱动器提供了所需的断裂分离碎片的相互定位以及它们的运动。执行器在0.05- 5mm /24小时的范围内产生三个运动对中的任何一个的指定运动速度。我们提出了用辐射强度高达10 mW/cm/sup / /的微波刺激骨组织的独特方法。采用微波刺激再生结合恒磁场模拟和生物活性点微电泳(例如使用mumye溶液)的自动分散系统实验模型已在乌克兰获得专利。已经制造和测试了一些实验实验室元件的自动分心系统。需要完成的任务如下:完成自动自动牵拉系统的原理图和结构设计,提供分离骨折碎片的运动,优化骨编织;广泛引入刺激组织再生过程的元素,微波辐射、恒磁场、微电泳等多种物理因素对断裂处和生物活性点的复杂影响,使组织再生速度加快10倍;发展国内利用制度;制造自动分散系统的中试模型,测试,并准备批量生产的文件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autodistracktoric treatment of locomotor apparatus dysfunction by microwave stimulation of tissue regeneration
This report considers the rehabilitation of people with locomotor apparatus dysfunction including those diseases complicated by inflammatory processes. The proposed system provides required mutual location of fracture separate fragments as well as their movement by three independent actuators with unique kinematics. The actuators generate specified movement velocity of either of three kinematics pairs within the range 0.05-5 mm/24 hours. We have proposed unique methods of bone tissue stimulation by microwaves with radiation intensity up to 10 mW/cm/sup 2/. Experimental models of the autodistracktoric system with microwave stimulation of regeneration in combination with simulation by a constant magnetic field and microelectrophoresis in biologically active points (e.g. using mumye solution) are patented in Ukraine. Some experimental laboratory elements of the autodistracktoric system have been manufactured and tested. The following tasks are to be fulfilled: development of both schematic and structure of the automatic autodistracktoric system, providing movement of separate fracture fragments to optimize the bones knitting; wide introduction of elements stimulating processes of tissues regeneration, where the regeneration is accelerated by 10 times owing to the complex influence on the fracture region and biologically active points of various physical factors, such as microwave radiation, constant magnetic fields, and microelectrophoresis; development of a system for domestic utilization; manufacture of autodistracktoric system pilot models, testing, and preparation of documents for batch production.
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