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Ð’ данной работе раÑÑмотрен Ð²Ð¾Ð¿Ñ€Ð¾Ñ Ñ€Ð°ÑÑˆÐ¸Ñ€ÐµÐ½Ð¸Ñ Ñ„ÑƒÐ½ÐºÑ†Ð¸Ð¾Ð½Ð°Ð»ÑŒÐ½Ð¾Ñти лиц Ñ Ð¿Ð¾ÑледÑтвиÑми заболеваний различной Ñтиологии путем иÑÐ¿Ð¾Ð»ÑŒÐ·Ð¾Ð²Ð°Ð½Ð¸Ñ Ñпециальных техничеÑких ÑредÑтв реабилитации – ортезов. Объектом иÑÑÐ»ÐµÐ´Ð¾Ð²Ð°Ð½Ð¸Ñ Ð² данной работе ÑвлÑетÑÑ Ð²ÐµÑ€Ñ…Ð½ÑÑ ÐºÐ¾Ð½ÐµÑ‡Ð½Ð¾Ñть. Предметом иÑÑÐ»ÐµÐ´Ð¾Ð²Ð°Ð½Ð¸Ñ - Ñ„ÑƒÐ½ÐºÑ†Ð¸Ñ ÑÐ³Ð¸Ð±Ð°Ð½Ð¸Ñ Ð² локтевом ÑуÑтаве, ее воÑÑтановление. Целью работы ÑвлÑлаÑÑŒ разработка инновационной технологии Ð¿Ñ€Ð¾ÐµÐºÑ‚Ð¸Ñ€Ð¾Ð²Ð°Ð½Ð¸Ñ Ð¸Ð½Ð´Ð¸Ð²Ð¸Ð´ÑƒÐ°Ð»ÑŒÐ½Ð¾Ð³Ð¾ адаптивного аппарата на локтевой ÑуÑтав. РаÑÑмотрен иÑторичеÑкий аÑпект и обоÑнована актуальноÑть проводимой разработки конÑтрукции и технологии ортеза на локтевой ÑуÑтав. Предложена конÑÑ‚Ñ€ÑƒÐºÑ†Ð¸Ñ Ð°Ð´Ð°Ð¿Ñ‚Ð¸Ð²Ð½Ð¾Ð³Ð¾ ортеза на локтевой ÑуÑтав и Ñ‚ÐµÑ…Ð½Ð¾Ð»Ð¾Ð³Ð¸Ñ ÐµÐ³Ð¾ индивидуального Ð¸Ð·Ð³Ð¾Ñ‚Ð¾Ð²Ð»ÐµÐ½Ð¸Ñ Ð¿Ð¾ Ñлектронной геометричеÑкой модели (3D-модели) Ñегментов конечноÑти, полученной путем 3D-ÑÐºÐ°Ð½Ð¸Ñ€Ð¾Ð²Ð°Ð½Ð¸Ñ Ð¿Ð°Ñ†Ð¸ÐµÐ½Ñ‚Ð°. РаÑÑмотрен практичеÑкий аÑпект Ð¸Ð·Ð³Ð¾Ñ‚Ð¾Ð²Ð»ÐµÐ½Ð¸Ñ Ð¼Ð°ÐºÐµÑ‚Ð° и приведен пример иÑÐ¿Ð¾Ð»ÑŒÐ·Ð¾Ð²Ð°Ð½Ð¸Ñ Ñ‚Ð°ÐºÐ¾Ð³Ð¾ ортеза. Методики применÑемые в ходе Ð²Ñ‹Ð¿Ð¾Ð»Ð½ÐµÐ½Ð¸Ñ Ñ€Ð°Ð±Ð¾Ñ‚Ñ‹: 3D Ñканирование, 3D моделирование, 3D печать. Ð’ заключении приведены оÑновные ÑведениÑ, полученные в ходе работы, и Ñформулированы задачи Ð´Ð»Ñ Ð´Ð°Ð»ÑŒÐ½ÐµÐ¹ÑˆÐµÐ¹ научной и практичеÑкой работы.
In this work, we consider the issue of expanding the functionality of persons with the consequences of diseases of various etiologies by using special technical means of rehabilitation-orthoses. The upper limb is the object of research in this work. The subject of research is the function of flexion in the elbow joint, its restoration. The aim of the work is development an innovative technology for designing an individual adaptive device for the elbow joint. The historical aspect is considered and the relevance of the ongoing development of the design and technology of orthosis on the elbow joint is justified. The design of an adaptive orthosis for the elbow joint and the technology of its individual manufacturing based on an electronic geometric model (3D model) of limb segments obtained by 3D scanning of the patient are proposed. The practical aspect of making a layout is considered and an example of using such an orthosis is given. Methods used in the course of work: 3D scanning, 3D modeling, 3D printing. The main information obtained in the course of the work is presented, and the tasks for further scientific and practical work are formulated in conclusion.
3d моделиÑование, 3d modeling, 3d ÑканиÑование, адапÑаÑиÑ, аддиÑивное пÑоизводÑÑво, adaptation, ÑиÑÑема конÑÑолÑ, 3d scanning, elbow joint, rehabilitation, оÑÑез, elastic, локÑевой ÑÑÑÑав, ÑеабилиÑаÑиÑ, orthosis, control system, ÑлаÑÑиÑнÑй, additive manufacturing
3d моделиÑование, 3d modeling, 3d ÑканиÑование, адапÑаÑиÑ, аддиÑивное пÑоизводÑÑво, adaptation, ÑиÑÑема конÑÑолÑ, 3d scanning, elbow joint, rehabilitation, оÑÑез, elastic, локÑевой ÑÑÑÑав, ÑеабилиÑаÑиÑ, orthosis, control system, ÑлаÑÑиÑнÑй, additive manufacturing
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