Random fluctuations in somatosensory signals affect the ability of effectively coordinating multimodal information pertaining to the postural state during movement. Therefore, this study aimed to investigate the impact of a compliant surface on cortico-cortical causal information flow during multi-joint compound movements. Fifteen healthy adults (7 female / 8 male, 25.9 ± 4.0 years) performed 5 × 20 repetitions of bodyweight squats on firm and compliant surface. Motor behavior was quantified by center of pressure (CoP) displacements, hip movement and the root mean square of the rectus femoris activity. Using source space analysis, renormalized partial directed coherence (rPDC) computed subject-level multivariate effective brain connectivity of sensorimotor nodes. Bootstrap statistics revealed significantly decreased medio-lateral CoP displacement (p < 0.001), significantly increased velocity of medio-lateral hip motion (p < 0.001) as well as significantly lower rectus femoris activity (p < 0.01) in the compliant surface condition. On the cortical level, rPDC showed significantly modulated information flow in theta and beta frequencies for fronto-parietal edges (p < 0.01) only during the concentric phase of the movement. The compliant surface led to increased difficulties controlling hip but not center of pressure motion in the medio-lateral plane. Moreover, a decreased activation of the prime movers accompanied by modulations of effective brain connectivity among fronto-central nodes may point to altered demands on sensorimotor information processing in presence of sensory noise when performing bodyweight squats on compliant surface. Further studies are needed to evaluate a potential benefit for athletic and clinical populations.
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http://dx.doi.org/10.1007/s00221-025-07039-2 | DOI Listing |
Cureus
February 2025
Department of Ophthalmology, Xinjiang 474 Hospital, Xinjiang, CHN.
We report a case of a 26-year-old male patient who was diagnosed with morning glory syndrome (MGS) in his right eye through a series of specialist examinations. At the time of consultation, the patient had already experienced retinal detachment in his right eye. The fundus of the right eye showed a 360° grayish-white elevation of the entire retina, with an enlarged optic disc approximately 4-5 times the normal size, featuring a central funnel-like deep depression.
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February 2025
Department of Orthopedics and Traumatology, Cerrahpasa Faculty of Medicine, Istanbul University-Cerrahpasa, Istanbul, TUR.
Peroneal nerve palsy is the most common entrapment neuropathy of the lower extremity, often presenting with foot drop and sensory deficits. While trauma and space-occupying lesions are well-documented causes, prolonged static postures, such as cross-legged sitting, can lead to neurapraxia, a mere myelin injury, and a reversible conduction block caused by nerve compression. This case report aims to present the clinical course and successful conservative management of peroneal nerve palsy with foot drop in a 26-year-old male following prolonged cross-legged sitting, highlighting the unusual symptom presentation where typical nerve compression signs such as tingling, neuropathic pain, heaviness, or numbness were absent until the patient stood up.
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February 2025
Orthopaedics, Valley Health System, Las Vegas, USA.
Background and objective Outpatient total knee arthroplasties (TKAs) for low-risk patients are growing in popularity, thanks to expedited recovery and reduced hospital stays. Early postoperative pain reduction has been associated with improved long-term functional outcomes. This study aimed to compare three knee implant systems - posterior-stabilized, medial-pivot, and rotating platform cruciate-retaining (RPCRF) - in terms of their impact on early postoperative pain and opioid use.
View Article and Find Full Text PDFSci Adv
March 2025
Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, USA.
The human hand's hybrid structure combines soft and rigid anatomy to provide strength and compliance for versatile object grasping. Tactile sensing by skin mechanoreceptors enables precise and dynamic manipulation. Attempts to replicate the human hand have fallen short of a true biomimetic hybrid robotic hand with tactile sensing.
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