Landing phase (0–100%) hip and knee joint range of motion (ROM) and moments exhibited by the dominant (blue) and non-dominant limb (red) during normal (NL, solid line) and flexed (FL, dashed line) landing.</p
<p>The x-axis was normalized from 0 to 100% of a stride cycle. The vertical solid lines represent th...
<p>The solid grey line indicates normal values. Loading vectors for the principal components: PC1 (s...
The ankle, knee, and hip joints work together in the sagittal plane to absorb landing forces. Reduce...
Landing phase (0–100%) vertical ground reaction force (vGRF) and frontal plane loading exhibited by ...
Mean (SD) joint range of motion (°) during normal (NL) and flexed (FL) drop landings.</p
CHT phase segmentation: a) Top panel: Foot-based MIMU angular velocity magnitude (blue) and its deri...
<p>This figure represents the means of the ankle plantar flexor moment and standard deviations of th...
Mean (SD) peak joint moments (N·m/kg·m) during normal (NL) and flexed (FL) drop landings.</p
Abstract Purpose: The purpose was to assess if variation in sagittal plane landing kinematics is as...
<div><p>Purpose</p><p>The purpose was to assess if variation in sagittal plane landing kinematics is...
Lower extremity sagittal kinematic and kinetic data are summarized alongside electrical muscle activ...
PURPOSE:The purpose was to assess if variation in sagittal plane landing kinematics is associated wi...
<p>(a) Trunk angle, (b) L5 moment, (c) hip moment, (d) knee moment and (e) ankle moment, normalized ...
Purpose: To investigate the influences of RTD on biomechanical factors upon landing. Methods: A nine...
<p>(A) Hip extension angles in front leg. (B) Hip extension angle in rear leg. (C) Hip abduction ang...
<p>The x-axis was normalized from 0 to 100% of a stride cycle. The vertical solid lines represent th...
<p>The solid grey line indicates normal values. Loading vectors for the principal components: PC1 (s...
The ankle, knee, and hip joints work together in the sagittal plane to absorb landing forces. Reduce...
Landing phase (0–100%) vertical ground reaction force (vGRF) and frontal plane loading exhibited by ...
Mean (SD) joint range of motion (°) during normal (NL) and flexed (FL) drop landings.</p
CHT phase segmentation: a) Top panel: Foot-based MIMU angular velocity magnitude (blue) and its deri...
<p>This figure represents the means of the ankle plantar flexor moment and standard deviations of th...
Mean (SD) peak joint moments (N·m/kg·m) during normal (NL) and flexed (FL) drop landings.</p
Abstract Purpose: The purpose was to assess if variation in sagittal plane landing kinematics is as...
<div><p>Purpose</p><p>The purpose was to assess if variation in sagittal plane landing kinematics is...
Lower extremity sagittal kinematic and kinetic data are summarized alongside electrical muscle activ...
PURPOSE:The purpose was to assess if variation in sagittal plane landing kinematics is associated wi...
<p>(a) Trunk angle, (b) L5 moment, (c) hip moment, (d) knee moment and (e) ankle moment, normalized ...
Purpose: To investigate the influences of RTD on biomechanical factors upon landing. Methods: A nine...
<p>(A) Hip extension angles in front leg. (B) Hip extension angle in rear leg. (C) Hip abduction ang...
<p>The x-axis was normalized from 0 to 100% of a stride cycle. The vertical solid lines represent th...
<p>The solid grey line indicates normal values. Loading vectors for the principal components: PC1 (s...
The ankle, knee, and hip joints work together in the sagittal plane to absorb landing forces. Reduce...