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Updated: Aug 25, 2026

Lower Limb Biomechanical Analysis of Healthy Participants
Published on: April 15, 2020
Gender-Based and Bilateral Variations in the Quadriceps Angle and Femoral Bicondylar Distance Among Healthy North
Rahul Sharma1, Gitanjali Khorwal2, Kirandeep K Aulakh1
1Anatomy, Maharishi Markandeshwar Institute of Medical Sciences and Research, Mullana, IND.
Introduction:
The quadriceps angle (Q-angle) and bicondylar distance (ICD) are physical assessments used for knee alignment. Both parameters provide valuable insights into gender-specific and bilateral variations in knee biomechanics that may influence injury risk, functional performance, and degenerative changes throughout adulthood.
Materials And Methods:
This cross-sectional, observational study was conducted to evaluate gender-based variations in the Q-angle and ICD of the femur, comprising 600 participants (300 male participants and 300 female participants), aged 20-50 years, of North Indian origin. The Q-angle was measured using a universal 360° manual goniometer, and the ICD of the femur was measured using a digital Vernier caliper in accordance with standard anthropometric measurement procedures.
Results:
The average age of male participants was 35.4 ± 9.0 years, while that of female participants was 35.5 ± 8.6 years in the study population. Male participants had a slightly higher mean height (164.8 ± 8.2 cm) and mean body weight (66.6 ± 8.5 kg). Female participants demonstrated significantly higher Q-angle values than male participants (16.53± 5.22 vs 13.85 ± 5.32, p < 0.001), whereas the ICD does not show a significant difference between genders (p = 0.083). Within gender groups, significant right-left differences were observed for the Q-angle.
Conclusion:
The study provides valuable normative data on the Q-angle and ICD in the adult North Indian population. Female participants showed significantly higher Q-angle values than male participants, while the ICD showed no gender related difference, suggesting that Q-angle and ICD parameters represent distinct aspects of knee alignment and independently contribute to knee biomechanics.

