Publications by authors named "C Stickley"

Context: The importance of analyzing head impact exposure among football players is well established, yet few studies have explored the differences across position groups in high school athletes. Better understanding of these differences may provide optimized intervention strategies for coaches and healthcare providers.

Objective: To quantify the difference of head impacts per exposure (Imp/E) and impact burden high school football player position groups.

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The addition of wearable technology during a 3-minute all-out overground running test (3MAOT) could provide additional insights to guide training and coaching strategies. The purpose of this study was to explore the relationships between critical speed (CS) and biomechanical parameters (cadence, stride length, vertical oscillation, stance time, form power, leg spring stiffness, and impact loading rate), and changes in biomechanical parameters throughout the 3MAOT. Sixty-three (male, n=37, female, n=26) recreationally active college-aged (23.

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Background: Recombinant human bone morphogenetic protein 2 (rhBMP-2, or BMP for short) is a popular biological product used in spine surgeries to promote fusion and avoid the morbidity associated with iliac crest autograft. BMP's effect on pseudarthrosis in transforaminal lumbar interbody fusion (TLIF) remains unknown.

Objective: To assess the rates of pseudarthrosis in single-level TLIF with and without concurrent use of BMP.

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Article Synopsis
  • The study focused on comparing running biomechanics and patient-reported outcomes in individuals with femoroacetabular impingement syndrome (FAIS) before and after arthroscopy, against age-matched controls.
  • Nineteen subjects participated, including ten with FAIS and nine controls, and various performance measures were evaluated using statistical analysis.
  • Results showed that while patients with FAIS achieved similar UCLA activity scores to controls postoperatively, they exhibited altered running biomechanics and lower scores in certain functional outcomes, indicating the need for tailored rehabilitation approaches.
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The purpose of this study was to investigate the influence of simulated changes in body mass on lower extremity joint work and relative joint contributions during stair descent. Ten healthy recreationally active college-age participants performed five stair descent trials in each of five loading conditions: no added load and with an additional 5%, 10%, 15% and 20% of their body weight. Three-dimensional ankle, knee and hip joint powers were calculated using a six degree-of-freedom model in Visual3D (C-Motion Inc.

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