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Cable-driven ankle exoskeletons are primarily designed to assist plantarflexion, but their actuation cables also span the subtalar joint, potentially producing unintended inversion-eversion torques. These unintended torques can affect frontal-plane kinematics, joint coordination, gait stability, and assistance efficiency. This study investigated how the ankle complex responds to multidimensional assistance torques during walking. To this end, we established an assistive torque model based on anatomical joint axes and developed a dual-cable-driven ankle exoskeleton for evaluation. Four assistance modes were examined: three single-cable modes applying force from medial (Med), central (Mid), or lateral (Lat) heel positions, and a dual-cable biomimetic (Bionic) mode replicating physiological torque distribution. Six healthy participants performed treadmill walking trials in each mode, with multiple biomechanical and physiological variables recorded. Simulation and experimental results showed that the Lat mode generated eversion moments, increased eversion, shifted the center of pressure (CoP) medially, and reduced mediolateral center-of-mass sway by 9% compared with unassisted walking, thereby improving stability. The Med and Mid modes induced inversion moments, increased inversion, and shifted the CoP laterally, with Med producing the strongest effect. Compared with the other modes, the Bionic mode achieved the greatest reduction in muscle activation relative to unassisted walking, lowering soleus EMG by 10% and that of the ankle inversion muscle group and peroneus brevis by 18-22%, while best preserving ankle coordination patterns. These findings highlight the importance of frontal-plane dynamics in ankle exoskeleton control and the benefits of biomimetic torque distribution in preserving coordination and reducing locomotor effort in assisted walking.
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http://dx.doi.org/10.1109/TNSRE.2025.3605818 | DOI Listing |
Rev Cardiovasc Med
August 2025
Department of Nephrology, Akron Nephrology Associates at Cleveland Clinic Akron General Medical Center, Akron, OH 44302, USA.
Cardiovascular assessments in children and adolescents with hypertension are essential for detecting early signs of organ damage and guiding timely interventions. The pathophysiology of pediatric hypertension involves a complex interplay of arterial stiffness, endothelial dysfunction, metabolic disturbances, activation of the renin-angiotensin-aldosterone system, and immune dysregulation. These mechanisms collectively contribute to target organ damage, particularly in the cardiovascular system.
View Article and Find Full Text PDFCureus
August 2025
Orthopedics, College of Medicine, King Saud University, Riyadh, SAU.
Background: Gradual correction of lower-limb angular deformities using external fixators such as the Taylor Spatial Frame (TSF) is a well-established technique for addressing complex, multiplanar deformities. A common yet understudied adjunct to this method is the use of a distal tibio-fibular syndesmotic screw to stabilize the ankle mortise during correction. Despite being frequently practiced, the necessity and efficacy of this intervention remain unclear.
View Article and Find Full Text PDFFoot Ankle Int
September 2025
Department of Orthopaedic Surgery, Medical College of Wisconsin, Milwaukee, WI, USA.
Background: Glucagon-like peptide-1 receptor agonists (GLP-1 RAs) are increasingly used in management of type 2 diabetes mellitus (T2DM) and obesity. Beyond glycemic control, these agents may influence orthopaedic outcomes. This study aimed to assess the relationship between preoperative GLP-1 RA use and postoperative complications in T2DM patients undergoing operative ankle fracture repair.
View Article and Find Full Text PDFKnee Surg Sports Traumatol Arthrosc
September 2025
Orthopaedics Surgery and Sports Medicine Department, FIFA Medical Center of Excellence, Croix-Rousse Hospital, Hospices Civils de Lyon, Lyon North University Hospital, Lyon, France.
Purpose: Robotic-assisted lateral unicompartmental knee arthroplasty (UKA) remains technically demanding due to the complex biomechanics of the lateral compartment. Image-based (IBRA) and imageless (ILRA) robotic systems have both demonstrated superior accuracy compared to conventional mechanical instrumentation, but have not yet been directly compared in lateral UKA. This study aimed to evaluate their respective accuracy and surgical efficiency.
View Article and Find Full Text PDFCardiol Rev
September 2025
From the Department of General Medicine, J.S.S. Medical College, JSS Academy of Higher Education and Research, Mysuru, India.
Heart failure with preserved ejection fraction (HFpEF) accounts for nearly half of all heart failure cases and is increasing in prevalence due to aging populations and comorbidities such as hypertension and diabetes. While echocardiography remains the diagnostic cornerstone, many patients with preserved ejection fraction present with nonspecific symptoms and ambiguous diastolic indices, leading to diagnostic uncertainty and therapeutic delay. Arterial stiffness-quantified by pulse wave velocity, augmentation index, and cardio-ankle vascular index)-is emerging as a key contributor to HFpEF pathophysiology.
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