Background: We evaluated the lower limb status of athletes after anterior cruciate ligament reconstruction (ACLR) during the propulsion and landing phases of a single leg hop for distance (SLHD) task after they had been cleared to return to sport. We wanted to evaluate the biomechanical components of the involved (operated) and uninvolved legs of athletes with ACLR and compare these legs with those of uninjured athletes (controls).
Methods: We captured standard video-based three-dimensional motion and electromyography (EMG) in 26 athletes after ACLR and 23 healthy controls during SLHD and calculated lower limb and trunk kinematics. We calculated lower limb joint moments and work using inverse dynamics and computed lower limb muscle forces using an EMG-constrained musculoskeletal modelling approach. Between-limb (within ACLR athletes) and between-group differences (between ACLR athletes and controls) were evaluated using paired and independent sample t-tests, respectively.
Results: Significant differences in kinematics (effect sizes ranging from 0.42 to 1.56), moments (0.39 to 1.08), and joint work contribution (0.55 to 1.04) were seen between the involved and uninvolved legs, as well as between groups. Athletes after ACLR achieved a 97%±4% limb symmetry index in hop distance but the symmetry in work done by the knee during propulsion was only 69%. During landing, the involved knee absorbed less work than the uninvolved, while the uninvolved knee absorbed more work than the control group. Athletes after ACLR compensated for lower knee work with greater hip work contribution and by landing with more hip flexion, anterior pelvis tilt, and trunk flexion.
Conclusion: Symmetry in performance on a SLHD test does not ensure symmetry in lower limb biomechanics. The distance hopped is a poor measure of knee function, and largely reflects hip and ankle function. Male athletes after ACLR selectively unload the involved limb but outperform controls on the uninvolved knee.
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http://dx.doi.org/10.1136/bjsports-2020-103677 | DOI Listing |
Arch Dermatol Res
January 2025
Cellular and Molecular Research Center, Qom University of Medical Sciences, Qom, Iran.
Invading blood cells, extracellular tissue, and soluble mediators all play important roles in the wound-healing process. There is a substantial global burden of disease and mortality attributable to skin defects that do not heal. About 1% to 2% of the population in industrialized nations suffers from chronic wounds that don't heal, despite healthcare breakthroughs; this condition is very costly, costing about $25 billion each year in the US alone.
View Article and Find Full Text PDFJ Foot Ankle Res
March 2025
VA RR&D Center for Limb Loss and MoBility (CLiMB), VA Puget Sound Health Care System, Seattle, WA, USA.
Background: The patient-specific shape of custom accommodative insoles for individuals with diabetes provides full foot-to-insole contact, offloading areas with high plantar pressures and reducing ulceration risk. To design the insole surface, plantar surface shape is captured, traditionally with a foam crush box impression or more recently with 3D scans of the foot. Beyond discrete measurements of the foot, the overall plantar surface shapes obtained from these different methods have yet to be compared, however, differences in the shapes captured by these methods may affect the insole's surface geometry design and subsequent performance.
View Article and Find Full Text PDFBackground: The patient journey from threatened to actual limb loss, subsequent rehabilitation, and limb preservation through the health system is complicated and prone to delays, attrition, and inequities. A shared multi(socioecological)-level conceptualization of this journey among the multiple stakeholders is the first step for systematically improving limb care through identification of bottlenecks and gaps, contributory factors, and responsive interventions and implementation strategies.
Objective: To meet this knowledge gap by presenting a novel implementation model, the Multilevel Limb-loss and Preservation Rehabilitation Continuum (MLPRC), that can be used to develop multilevel applications.
S Afr J Surg
December 2024
Department of Surgical Sciences, Nelson R Mandela School of Clinical Medicine, University of KwaZulu-Natal, South Africa.
Background: KwaZulu-Natal bears a significant trauma burden, with polytrauma patients often experiencing traumatic limb amputations. This study investigates traumatic limb amputations in the subgroup of severely injured polytrauma patients admitted to the trauma ICU in KwaZulu-Natal. This study aims to describe the management and outcomes of traumatic limb amputations in polytrauma patients at the trauma ICU.
View Article and Find Full Text PDFCureus
December 2024
Department of Orthopedics, Spine Unit, Hospital Sungai Buloh, Sungai Buloh, MYS.
Spinal cord injuries, including rare cases without radiological abnormalities, pose diagnostic challenges, particularly in cases of delayed neurological deficit development. This case report describes a 55-year-old man with a stable L1 burst fracture who developed delayed neurological deficits two weeks after sustaining a fall despite no evidence of intrinsic or extrinsic spinal cord abnormalities on magnetic resonance imaging (MRI). The patient initially presented with back pain, normal muscle strength across all myotomes, and imaging that showed no canal stenosis or retropulsion fragments.
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