IntroductionTibial stress fractures are a common overuse injury resulting from the accumulation of bone microdamage due to repeated loading. Researchers and wearable device developers have sought to understand or predict stress fracture risks, and other injury risks, by monitoring the ground reaction force (GRF, the force between the foot and ground), or GRF correlates (e.g., tibial shock) captured via wearable sensors. Increases in GRF metrics are typically assumed to reflect increases in loading on internal biological structures (e.g., bones). The purpose of this study was to evaluate this assumption for running by testing if increases in GRF metrics were strongly correlated with increases in tibial compression force over a range of speed...
Many risk factors for tibial stress fracture in runners have been proposed. This presentation will f...
The degree to which standard laboratory gait assessments accurately reflect impact loading in an out...
Running with body borne load reportedly leads to larger, faster vertical ground reaction forces (GRF...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
Peak tibial acceleration (PTA) is a widely used indicator of tibial bone loading. Indirect bone load...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Category: Other Introduction/Purpose: While the etiology of injuries is multifactorial, impact loadi...
Load carriage leads to larger, faster vertical ground reaction forces (GRFs), and greater risk of mu...
Peak tibial acceleration (PTA) measured using accelerometers attached to the musculoskeletal system ...
Many risk factors for tibial stress fracture in runners have been proposed. This presentation will f...
The degree to which standard laboratory gait assessments accurately reflect impact loading in an out...
Running with body borne load reportedly leads to larger, faster vertical ground reaction forces (GRF...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
Peak tibial acceleration (PTA) is a widely used indicator of tibial bone loading. Indirect bone load...
An interactive user interface and the raw data from the manuscript titled: "Ground reaction force me...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Background Vertical ground reaction force (VGRF) parameters have been implicated as a cause of sever...
Category: Other Introduction/Purpose: While the etiology of injuries is multifactorial, impact loadi...
Load carriage leads to larger, faster vertical ground reaction forces (GRFs), and greater risk of mu...
Peak tibial acceleration (PTA) measured using accelerometers attached to the musculoskeletal system ...
Many risk factors for tibial stress fracture in runners have been proposed. This presentation will f...
The degree to which standard laboratory gait assessments accurately reflect impact loading in an out...
Running with body borne load reportedly leads to larger, faster vertical ground reaction forces (GRF...