Effects of Screw Diameter and Thread Shape on the Strength of Transpedicular Screw Fixation in Posterior Spinal Fusion

후방 척추고정술에서 척추경 나사못의 크기와 형태가 척추 고정력에 미치는 영향에 대한 연구

  • Mun, Mu-S. (Korean Orthopedics and Rehabilitation Engineering Center) ;
  • Ryu, Jei-C. (Korean Orthopedics and Rehabilitation Engineering Center) ;
  • Yoo, Myung-C. (Department of Orthopedic Surgery, School of Medicine, Kyung Hee University) ;
  • Kim, Ki-T. (Department of Orthopedic Surgery, School of Medicine, Kyung Hee University)
  • 문무성 (근로복지공단 재활공학연구센터) ;
  • 류제청 (근로복지공단 재활공학연구센터) ;
  • 유명철 (경희대학교 의과대학 정형외과학교실) ;
  • 김기택 (경희대학교 의과대학 정형외과학교실)
  • Published : 1995.05.12

Abstract

The objectives of the present study are 1)to find the effect of the diameter of transpedicular screws on their fixational strength in pedicles under static pull-out loading, 2)to determine the biomechanical correlation between the pedicle diameter and the screw diameter, and 3)to find the effects of other factors in the screw design, such as materials, screw pitch, thread height and shape on their fixational strength. Biomechanical tests (Test I) were performed to evaluate the effect of the screw diameter on pull-out strength by using 60 porcine pedicls and six groups of custom-made pedicle screws with different diameters (the major and the minor diameter of the screws used in the testing varied from 4mm upto 9mm and from 3mm upto 8mm, respectively) while all other factors (materials, screw pitch, thread height and shape etc.) were fixed. In Test II, by using 61 porcine pedicles, the relationship between the ratio of the pedicle diameter and the screw diameter(=aspect ratio) of the custum-made screw and the pull-out strength of the screw was investigated. Test III was performed with 94 porcine pedicles and 8 different types of the commercial screws from 6 major productors in order to determine the effect of the screw diameter, pitch and the thread shape on the pull-out strength of the screw, respectively. The results of Test I showed that the axial pull-out resistance of the screw could be increased prportionaly to the screw diameter(P<0.05). But this increase in the pull-out resistance did not found when the screws of 4mm or 9mm in the diameter were employed. It was found from the results of Test II that the screws had its maximum pull-out resistant force when the aspect ratio ranging 40 - 69% (P<0.05). based on the results for the major diameter against the minor diameter of screw, the maximal pull-out resistance was found at 60-65% (P<0.05). According to these biomechanical testing results, it seems that the screw with a moderately large pitch is more desirable and the buttress-shaped screw can provide stronger fixation than the V-shape one can, if other designal factor and conditions were fixed.

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