DOI QR코드

DOI QR Code

The Effect of Trunk Position on the Stress Distribution of Low-back and on the Spondylolisis (I) -Development on the Photoelastic Experimental Model and Device for the Stress Analysis of Low-Lumbar Spine-

체간 위치가 하요추부의 응력상태와 척추분리증에 미치는 영향 (I) -하요추부의 응력 상태 측정용 광탄성 실험 모델 재료개발과 장치개발-

  • 황재석 (영남대학교 기계공학과) ;
  • 최영철 (영남대학교 대학원) ;
  • 안면환 (영남대학교 의대 정형외과학) ;
  • 권재도 (영남대학교 기계설계학과) ;
  • 최선호 (영남대학교 기계설계학과)
  • Published : 1992.04.01

Abstract

Most degeneating diseases and back pains in the orthopaedic disease are originated from the unbalance of stress distribution in the low-lumbar spine. Therefore the stress analysis of lowerback is indispensible to the clinical diagnosis for the developing reason and the developing process of diseases. Therefore the same model materials as following are eveloped to analyze the stress distributions of lower-back by photoelastic experiment. The verterbral body and the process are molded from epoxy resin(the weight ratio of Araldite and hardner is 10 to 3), models are geometrically identical to them in vivo respectively and the ratio of their elastic modulus to that of model material is 1 to 10. It is assured that KE-1300 Silicon(E=0.8MPa), TSE-3562 Silicon(0.5MPa) and the composite silicon(3MPa) (the weight ratio of KE-1300 silicon and Jioreal : 10 to 4) are respectively effective as the model materials of ligament, musles and intervertevral disc which is essential to the movement of low-lumbar spine. All the elements associated with the movement of the low-lumbar spine are molded through the molding method developed in this research and assembled with the angles between the verterbra and the disc in the normal human lumbosacral spine. The stress distributions of the assembled model are analyzed by photoelastic experiment. It is certified by comparing the results of photoelastic experimebt with the clinical situations that the loading dveice and the loading conceptions used in this paper are effective.

본 연구에서는 복압력(abdominal pressure) 및 복근(abdominal musles)만을 제외(하중의 계산시 이들의 역활을 포함하였다.) 한 요추골 운동에 관계하는 모든 역 학적 요소를 포함시키고 해부학적으로 매우 충실한 실험용 광탄성 모델과 하중장치를 개발하여, 이러한 모델과 하중장치의 유효성을 임상의학적으로 규명 하는것을 본 연구 의 목적으로 한다.

Keywords