Using AutoCAD Application as Instrument for Biomechanical Assessment of Orthopedic Impairments

The aim of our study was to identify if the AutoCAD application may be useful for evaluation during active movements of the body segments (lower limb), and how an orthopedic problem influence the normal pathway. The assement of range of motion is still problematic, especially when the body component...

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Veröffentlicht in:Applied Mechanics and Materials 2013-10, Vol.436 (Engineering Decisions and Scientific Research in Aerospace, Robotics, Biomechanics, Mechanical Engineering and Manufacturing), p.277-284
Hauptverfasser: Raveica, Gabriela, Pena, Andra Elena, Mohora, Cristina, Raveica, Ionel Crinel
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container_end_page 284
container_issue Engineering Decisions and Scientific Research in Aerospace, Robotics, Biomechanics, Mechanical Engineering and Manufacturing
container_start_page 277
container_title Applied Mechanics and Materials
container_volume 436
creator Raveica, Gabriela
Pena, Andra Elena
Mohora, Cristina
Raveica, Ionel Crinel
description The aim of our study was to identify if the AutoCAD application may be useful for evaluation during active movements of the body segments (lower limb), and how an orthopedic problem influence the normal pathway. The assement of range of motion is still problematic, especially when the body components is moving. Determining changes in the angles of motion dynamic is important in guiding the intervention plan. The evaluation methods are not enough objective all the time and many details could be not observed during different ADL (activities daily living). The AutoCAD (Auto Computer Aid Design) application was a valid instrument in order to realise the biomechanical analyse in case of knee arthritis. The analyze of moving components is possible using video frames and AutoCAD processing.
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source Scientific.net Journals
subjects Arthritis
Assessments
Automotive engineering
Biomechanics
Computer aided design
Design analysis
Impairment
Orthopedics
title Using AutoCAD Application as Instrument for Biomechanical Assessment of Orthopedic Impairments
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