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Tear resistance is of vital importance in the fabrication and application of synthetic soft materials. However, the paradox of simultaneously improving the tearing energy and elasticity remains a huge challenge for conventional approaches. Here, inspired by the skin, we successfully constructed an extraordinary tear-resistant, superelastic elastomer by the introduction of nanosized polycyclodextrin into the elastomer network to form a slidable interpenetrate double network structure. The tearing energy of the SDEP elastomer is up to 274 KJ/m, which is comparable to metals and alloys and increased more than 100 times compared with the chemically cross-linked elastomer. The fracture strain exceeded 3300%, which is hardly achieved by other materials with high tearing energy. This comprehensive improvement of antitearing and super elasticity property was achieved by (i) a slide ring effect to dissipate energy and blunt a crack tip; (ii) straightening and reorientation of the slidable double network to deflect the advancing of a crack tip; (iii) a double network sharing the load. These results provide a novel strategy to fabricate elastic, tear-resistant soft material, which may contribute to the practical application as tear-resistant flexible electronics and irregular-shaped stretchable devices.
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http://dx.doi.org/10.1021/acsami.2c07202 | DOI Listing |
J ISAKOS
August 2025
Division of Sports Shoulder & Elbow Surgery, Department of Orthopaedic Surgery, National University Hospital, 1E Kent Ridge Road, Singapore 119228, Singapore. Electronic address:
Introduction/objectives: Bouldering, a dynamic climbing discipline performed without ropes, is associated with high-energy ground falls. While most existing climbing injury literature has focused on the upper extremities, our data indicated an increasing number of complex knee injuries related to bouldering. This review was conducted to characterize the injury patterns sustained from bouldering ground falls, and to compare the relative burden of these injuries with those sustained in other high-participation sports.
View Article and Find Full Text PDFJ Pharm Biomed Anal
December 2025
School of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, India.
This review provides a comprehensive analysis of advances and challenges in the sample preparation and analytical methods for determining water-soluble vitamins (WSVs) in foods, clinical, and pharmaceutical samples. WSVs, including vitamin C and B-complex vitamins, are essential for various physiological functions such as energy metabolism, immune response, and neurological health. The accurate analysis of these vitamins is crucial for ensuring nutritional adequacy and preventing deficiencies.
View Article and Find Full Text PDFJ Orthop
November 2025
Orthopedic Department, Tanta University, Tanta, Egypt.
Background: High-energy tibial plateau fractures are commonly observed in concomitant with other injuries, soft tissue lacerations, and ischemic complications. The widely accepted management approach involves the application of a bridging external fixator to allow for soft tissue recovery, followed by delayed ORIF. Nonetheless, delayed internal fixation remains associated with notable risks, including deep infection, non-union, and implant failure.
View Article and Find Full Text PDFMedicine (Baltimore)
August 2025
Department of Spine Surgery, Affiliated Hospital of Jining Medical University, Jining, Shandong Province, China.
Rationale: The diagnosis and treatment of high-energy knee trauma primarily focus on ligamentous and bony injuries, often overlooking potential concomitant gastrocnemius muscle injuries. Isolated closed tears of the medial and lateral heads of the gastrocnemius muscle (without associated fractures or dislocations) are exceptionally rare and clinically insidious, increasing the risk of missed diagnosis and compromised patient outcomes. This article presents a novel case of combined cruciate ligament injury and occult tears of both gastrocnemius heads, a condition not previously documented in the literature.
View Article and Find Full Text PDFAJNR Am J Neuroradiol
July 2025
From the Department of Radiology (A.A.M., M.L.K., L.Y., Z.Z.), Mayo Clinic, Rochester, MN, USA and Department of Radiology (P.G.K.,T.J.A.), Duke Health, Durham, NC, USA.
Photon counting detector CT myelography is an effective modality for the localization of spinal CSF leaks. The initial studies describing this technique employed a relatively smooth Br56 kernel. However, subsequent studies have demonstrated that the use of the sharpest quantitative kernel on photon counting CT (Qr89), particularly when denoised with techniques such as quantum iterative reconstruction or convolutional neural networks, enhances detection of CSF-venous fistulas.
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