A Comparison of Bone Mineral Density in Osteoporotic Facture of the Proximal Femur Using Dual Energy X-ray Absorptiometry

대퇴 근위부 골절환자에서 이중에너지 방사선흡수계측법을 이용한 부위별 골밀도 비교

  • Lee, Jong-Seok (Dept. of Radiotechnology, Wonkwang Health Science College) ;
  • Kim, Keung-Sik (Dept. of Diagnostic Radiology. Yonsei University Yong Dong Severance Hospital) ;
  • Yoo, Beong-Gyu (Dept. of Radiotechnology, Wonkwang Health Science College)
  • 이종석 (원광보건대학 방사선과) ;
  • 김긍식 (연세대학교 영동세브란스병원 진단방사선과) ;
  • 유병규 (원광보건대학 방사선과)
  • Published : 2000.12.30

Abstract

There were some controversies about direct cause of hip fracture. We attempted to look at 40 osteoporotic proximal femur fractures in women over 50 years between March in 1999 and Febuary in 2000. The bone density of the fracture group and the healthy 85 control group was measured by Dual Energy X-ray absorptiometry(DEXA). The result was compared using age matched paired T test. The results were as follows ; 1. The femoral neck fractures were 14 cases and the trochanteric fractures were 26 cases. Mean age at a fracture was 67.1 years in neck fracture group and 76.5 years in trochanteric fracture. 2. In the control group, the bone density of both side of the proximal femur was measured and it showed statistically no difference between both sides in same person. 3. The bone density of neck, Ward's triangle, trochanter(P<0.05) and lumbar spine(P<0.001) was significantly reduced in the proximal femoral fracture group comparing with the control group. 4. The bone density of neck, Ward's triangle, trochanter(P<0.05) was significantly reduced in the proximal femoral neck fracture group comparing with the control group, but there was no statistical difference in lumbar spine comparing with the control group. 5. The bone density of neck, Ward's triangle, trochanter and lumbar spine(P<0.001) was significantly reduced in the proximal femoral neck fracture group comparing with the control group. We concluded that the bone mineral densities(BMD) of proximal femur and lumbar spine had decreased in hip fractures but that the bone mineral density and T-score % of the proximal femur were statistically lower than that of the lumbar spine. We suggest that measuring the bone mineral density of the proximal femur may reflect the weakness of the proximal femur more precisely than measuring the bone mineral density of the lumbar spine.

Keywords