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INTERACTIVE DEVICE OF PERSON'S CARRIAGE CORRECTION AND METHOD OF CARRIAGE CORRECTION

机译:人际交往的互动装置及交往的方法

摘要

FIELD: medicine.;SUBSTANCE: group of inventions relates to field of medicine, namely to traumatology and orthopedics, pediatrics, neurosurgery, as well as neuropathology, and is intended for performing correction and prevention of functional impairment of carriage by informing user about unacceptable change of their spine position in sagittal or frontal plane in order to develop in user experience of correct carriage, thus contributing to treatment of orthopedic diseases and mobile deformations of spine. Interactive device of person/s carriage correction contains, at least, one optic sensor of deformation, connected with system of control and processing of information and system of indication of information processing results via channels of communication, and fastening system, intended for fastening device components on person. Optic sensor of deformation is made flexible in form of longitudinal plate. Length of sensor constitutes the value not less than length of three adjacent vertebrae on controlled section of person/s spine, but not more than length of unidirectional curvature of person's trunk or spine. Width of optic sensor of deformation is less than width of interscapulum. Method of carriage correction consists in the following: elements of interactive device for person's carriage correction are fastened on patient. Setting of maximally permissible values of spine curvature is carried out in system of control and processing of information. Type of alarm signal is selected. After that, values of spine curvature are registered by means of optic sensor of deformation, registered values of spine curvature are compared with maximally permissible values and, in case if registered values of spine curvature are higher than maximally permissible values, alarm signal is formed and transmitted. In the process of fastening elements of interactive device of person's carriage correction optic sensor of deformation is installed in the place of controlled part of spine and pressed to it, plane of correction of assessed curvature of person's spine must be perpendicular to medium surface of plate of optic sensor of deformation. Registration of spine curvature values, performed by one sensor of deformation must be carried out on section with length not shorter than length of three adjacent vertebrae on controlled section, but not longer than length of unidirectional curvature.;EFFECT: increased convenience of exploitation, increased accuracy of measurements and reliability of device operation aimed at increase of therapeutic effect, aimed at efficient training of patient for prevention and treatment of incorrect carriage, as well as sagittal and/or frontal mobile deformation of spine.;18 cl, 6 dwg
机译:领域:发明领域本发明涉及医学领域,即涉及创伤学和骨科,儿科,神经外科以及神经病理学,并且旨在通过告知使用者不可接受的变化来进行校正和预防运输功能障碍。在矢状面或额面中确定其脊柱位置,以便在用户正确使用支架的过程中发展,从而有助于骨科疾病的治疗和脊柱的活动性变形。人车校正的交互式设备至少包含一个变形光学传感器,该传感器与信息的控制和处理系统以及通过通信通道的信息处理结果的指示系统以及用于紧固设备组件的紧固系统连接在一起对人。变形光学传感器以纵向板的形式制成柔性的。传感器的长度构成的值不小于人的脊柱受控部分上三个相邻椎骨的长度,但不大于人的躯干或脊柱的单向弯曲长度。变形光学传感器的宽度小于肩s骨的宽度。托架校正的方法包括以下内容:用于人的托架校正的交互式设备的元件固定在患者身上。脊柱曲率的最大允许值的设置在信息的控制和处理系统中进行。选择报警信号的类型。此后,通过变形光学传感器记录脊柱弯曲度的值,将脊柱弯曲度的记录值与最大允许值进行比较,如果脊柱弯曲度的记录值大于最大允许值,则形成警报信号并传输。在人车交互装置紧固元件的过程中,将变形的光学传感器安装在脊柱的受控部位并压在其上,人的脊柱弯曲度校正平面必须垂直于脊柱板的中表面光学传感器变形。由一个变形传感器执行的脊柱曲率值的记录必须在长度不小于受控段上三个相邻椎骨的长度但不长于单向曲率长度的段上进行;效果:增加了开发的便利性,增加了测量精度和设备操作的可靠性,旨在提高治疗效果,旨在有效培训患者,以预防和治疗错误的运输以及脊柱的矢状和/或额骨活动性变形; 18 cl,6 dwg

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