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Purpose: The aim of this study is to determine the exact locations of vascular pedicles that supply the fibularis longus and brevis, to identify the morphometric features of those vessels in the lateral compartment of the leg, and to indicate the branching points of the pedicles from the main arteries.

Methods: The popliteal arteries of 40 lower limbs from 20 adult cadavers (12 males, 8 females) were bilaterally injected with colored latex. After dissection, the branches of the arteries were identified and counted.

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Article Synopsis
  • Women with gestational diabetes mellitus are at increased risk for Gestational Diabetes Induced Myopathy (GDiM), leading to muscle atrophy and urinary incontinence.
  • The study developed a natural rubber latex (NRL) based biodevice infused with mesenchymal/stromal stem cells (MSCs) to aid in skeletal muscle regeneration.
  • The NRL showed promising properties such as biocompatibility, low hemolytic activity, and strong antioxidant activity, indicating its potential as a treatment for GDiM-related muscle issues.
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Natural rubber latex membrane (NRL) is a biocompatible macromolecule that stimulates angiogenesis and promotes bone repair. Similarly, β-tricalcium phosphate (β-TCP) is an osteoconductive and osteoinductive bioceramic widely used as a bone substitute. Here, we investigated the combined use of these biomaterials in the guided bone regeneration process for calvarial defects in rats.

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ConspectusOver the past two decades, terahertz (THz) technology has undergone rapid development, driven by advancements and the growing demand for THz applications across various scientific and technological domains. As the cornerstone of THz technology, strong THz-matter interactions, especially realized as high THz intrinsic absorption in nanometer-thick materials, play a highly important role in various applications including but not limited to THz absorption/shielding, detection, etc. The rigorous electromagnetic theory has posited a maximum intrinsic absorption of 50% for electromagnetic waves by thin films, and the succinct impedance matching condition has also been formulated to guide the design of highly intrinsically absorbing materials.

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Evaluation of bond strength and skin irritation test for new skin adhesive.

J Oral Biol Craniofac Res

October 2023

Department of Prosthetic Dentistry, Faculty of Dentistry, Prince of Songkla University, Songkhla, 90112, Thailand.

Objectives: This study developed a new skin-deproteinized natural rubber latex (DNRL) silicone adhesive for adhering to silicone prostheses and compared the properties with a commercial Daro-Hydrobond adhesive.

Materials And Methods: The new DNRL skin adhesive formulation was made from non-vulcanized natural rubber-based adhesives consisting of DNRL, 20% polyvinyl alcohol, cumarone resin, 2% methylcellulose, and Wingstay L. The peel bond strength of the adhesives was tested using a 90-degree peel test.

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