Background Hip fractures, including intertrochanteric and subtrochanteric fractures, are among the most common types of fractures. The dynamic hip screw (DHS) and the cephalomedullary hip nail (CHN) are the two main techniques used for the fixation of these types of fractures. This study aims to explore the association of the fracture type with the use of walking assistance devices post-surgery, regardless of the fixation technique. Methodology This study is a retrospective study based on the review of de-identified patient data from the American College of Surgeons National Surgical Quality Improvement Program database. Patients aged 65 years old or above who underwent fixation procedures for intertrochanteric or subtrochanteric fractures using CHN or DHS techniques were included in this study. Results A total of 8,881 patients were included and divided into the following two groups: 876 (9.9%) patients treated for subtrochanteric fracture, and 8,005 (90.1%) patients treated for intertrochanteric fracture. No statistical significance was detected in the use of mobility aid postoperatively between the two groups. When compared to CHN, DHS was noted to be the most employed fixation technique among patients with intertrochanteric fractures. One main finding was that patients who underwent surgery using DHS for intertrochanteric fractures were more likely to use walking assistance devices postoperatively compared to those with subtrochanteric fractures treated with the same fixation technique. Conclusions Findings suggest that the use of walking assistance devices post-surgery is independent of the type of fracture and potentially dependent on the fixation technique employed. Future studies focused on the difference in the use of walking assistance devices based on fixation techniques for patients with distinctive sub-types of trochanteric fractures are highly encouraged.
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http://dx.doi.org/10.7759/cureus.36706 | DOI Listing |
Br J Radiol
January 2025
Department of Ultrasound, Institute of Ultrasound in Medicine and Engineering, Zhongshan Hospital, Fudan University, Shanghai, China.
Objectives: To evaluate the value of ultrasound (US) and shear wave velocity (SWV) to assess muscle in postmenopausal women with osteosarcopenia (OSP).
Methods: This study included 145 postmenopausal women, comprising 115 osteopenia/osteoporosis participants without sarcopenia (OP alone) and 30 OSP participants. All received the evaluation of bone mineral density (BMD), appendicular skeletal muscle mass index (ASMI), handgrip strength, calf circumference, 6-meter walking speed, and 5-time chair stand test.
Biomimetics (Basel)
January 2025
School of Mechanical Engineering, Jiangsu University of Technology, Changzhou 213001, China.
To reduce hip joint muscles' activation during walking with an active hip exoskeleton. Few studies examine the optimal active assistance timing of the hip exoskeleton based on muscle activation characteristics. Sixteen gender-balanced healthy adults (mean age 28.
View Article and Find Full Text PDFHealth Qual Life Outcomes
January 2025
PTC Therapeutics Inc, 500 Warren Corporate Center Drive, Warren, N.J, 07059, USA.
Background: AADCd is a rare neurometabolic disorder presenting in infancy. Children with AADCd have motor dysfunction and development delays that result in the need for lifelong care; quality of life is greatly impacted. Current characterizations of health-related quality of life and associated health state utilities (HSUs) may be underestimated in AADCd.
View Article and Find Full Text PDFGait Posture
January 2025
School of Engineering Medicine, Beihang University, Beijing, China; Beijing Advanced Innovation Center for Biomedical Engineering, Beihang University, Beijing, China. Electronic address:
Background: The clinical benefits and widespread use of traditional mobility aids (such as canes, walking frames, wheeled walkers, etc.) have been hampered by improper use, fear of falling, and social stigma. Clarifying the biomechanical impacts of using mobility aids on users is fundamental to optimizing rehabilitation programs.
View Article and Find Full Text PDFGait Posture
January 2025
Department of Biomechanics and Center for Research in Human Movement Variability, University of Nebraska at Omaha, Omaha, NE 68182, USA; Department of Surgery and Research Service, Nebraska-Western Iowa Veterans Affairs Medical Center, Omaha, NE 68105, USA. Electronic address:
Background: This study leverages Artificial Neural Networks (ANNs) to predict lower limb joint moments and electromyography (EMG) signals from Ground Reaction Forces (GRF), providing a novel perspective on human gait analysis. This approach aims to enhance the accessibility and affordability of biomechanical assessments using GRF data, thus eliminating the need for costly motion capture systems.
Research Question: Can ANNs use GRF data to accurately predict joint moments in the lower limbs and EMG signals?
Methods: We employed ANNs to analyze GRF data and to use them to predict joint moments (363-trials; 4-datasets) and EMG signals (63-trials; 2-datasets).
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