Lateral Cortical Thickening and Bone Heterogeneity of the Subtrochanteric Femur Measured With Quantitative CT as Indicators for Early Detection of Atypical Femoral Fractures in Long-Term Bisphosphonate Users.

Lee, Seung Hyun; Lee, Young Han; Suh, Jin-Suck · AJR Am J Roentgenol · 2017

case_control · Level III

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Abstract

The objective of our study was to compare subtrochanteric femur bone mineral density (BMD) and bone quality of long-term bisphosphonate (BP) users who sustained an atypical femoral fracture (AFF) with BP users who did not sustain a femoral fracture and BP-naïve patients with no history of femoral fracture using quantitative CT (QCT). Fourteen female BP users with an AFF (mean age, 72.6 years; mean duration of BP use, 6.2 years; mean body mass index, 21.9) who had undergone QCT before fracture events were sex-, age-, BP use duration-, and body mass index-matched to 14 BP users who did not sustain a fracture and 14 BP-naïve patients. The lateral cortical thickness index (CTI) and the mean BMD (BMD<sub>mean</sub>) and SD of the BMD (BMD<sub>SD</sub>) within the lateral cortex and within the entire cross-sectional area of the subtrochanteric femur were measured on axial QCT. Femoral neck-shaft angles were measured on the QCT scout image. Parameters were analyzed using the Kruskal-Wallis test. Lateral CTIs were greater in the BP users with an AFF (median, 0.28) than in the BP users without a femoral fracture (median, 0.21) (p = 0.038) and the BP-naïve group (median, 0.21) (p = 0.009). The lateral cortex BMD<sub>SD</sub> was significantly higher in the BP users with an AFF (median, 59.59 mg/cm<sup>3</sup>) than the BP users without a femoral fracture (median, 39.27 mg/cm<sup>3</sup>; p = 0.049) and the BP-naïve group (median, 31.02 mg/cm<sup>3</sup>; p = 0.037). There was no significant difference among groups in lateral cortex BMD<sub>mean</sub>, BMD<sub>mean</sub> and BMD<sub>SD</sub> of the entire cross-sectional area, and femoral neck-shaft angle. Long-term BP users with a subsequent AFF had a thicker lateral cortex and higher lateral cortex BMD<sub>SD</sub> at the subtrochanteric area before the fracture on QCT than BP users who did not sustain a femoral fracture and BP-naïve patients.

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