Purpose: Quantification of knee motion is essential for assessment of pathologic joint function, such as tracking osteoarthritis progression and evaluating outcomes following conservative or surgical treatment, including total knee arthroplasty. Our purpose was to establish a useful baseline for the kinematic envelope of knee motion in healthy older adults performing movements of daily living. Methods: A high-speed stereo radiography system was used to measure the three-dimensional tibiofemoral kinematics of eight healthy people over 55 years of age (4F/4M, age=61.7 +/- 5.4 years, body mass= 74.6 +/- 7.7 kg, body mass index = 26.7 +/- 4.4 kg/m2, height = 168.2 +/- 13.7 cm) during seated knee extension, level walking, pivoting and step descent. Results: Internal-external and varus-valgus rotation and anterior-posterior range of motion through stance in normal walking averaged 3.6[degrees] +/- 1.1[degrees], 2.3[degrees] +/- 0.6[degrees], and 3.4 +/- 1.57 mm, respectively. Average range of motion across subjects was greater during the step down in both internal-external rotation (avg 6.5[degrees] +/- 3.1[degrees]) and anterior-posterior translation (avg 4.5 +/- 1.1). Average internal-external range of motion increased to 13.5[degrees] +/- 3.6[degrees] during pivoting. Range of motion of the knee in varus-valgus rotation was nearly the same for each subject across activities, rarely exceeding 6[degrees]. Conclusions: Pivoting and step descending during walking had greater internal-external rotation and anterior-posterior translation than normal gait. Internal-external rotation and anterior-posterior translation were shown to have greater activity dependence, whereas varus-valgus rotation was consistent across activities. These results were similar to prior measurements in younger cohorts, though a trend toward reduced range of motion in the older adults was observed. (C) 2017 American College of Sports Medicine
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