Venous leg ulcers are the most prevalent form of chronic wounds in the Western world. The principles of moist wound healing coupled with the use of graduated compression bandaging have become the cornerstone of treatment for venous leg ulcers but not all moist dressings are alike. To compare the attributes of a foam composite dressing with those of a hydrocellular foam dressing in the management of venous leg ulcers, a prospective, randomized, comparative 12-week study was conducted in 15 centers in the US, Canada, France, Germany, and the UK. Dressings were changed and compression bandages applied per manufacturer recommendations and dressing performance was assessed at every dressing change and at the final evaluation. Patients with venous ulcers were randomized to treatment for 12 weeks with either hydrocellular foam (n = 52) or foam composite (n = 55) dressing. Healing differences between the groups were not statistically significant, with 36% of patients using foam composite dressing healed in a mean of 66 days and 39% of patients using hydrocellular foam dressing healed in a mean of 73 days. However, the foam composite dressing performed significantly better than the hydrocellular foam dressing with regard to condition of the periwound skin - 55% of patients in the foam composite group having healed or markedly improved surrounding skin compared to 37% of patients using hydrocellular foam (P = 0.03). The foam composite dressing was rated significantly better than the hydrocellular foam dressing ("very good" to "excellent") in level of satisfaction with conformability (87% and 75%, respectively, P = 0.05); being non-sensitizing (73% and 52%, respectively, P = 0.02); and ease of application (93% and 81%, respectively, P = 0.01). The findings reported in this study suggest that the foam composite dressing offers significant improvements in the quality of life of patients with venous leg ulcers as well as for their caregivers.
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J Food Sci
December 2024
Department of Food Science, University of Wisconsin-Madison, Madison, Wisconsin, USA.
The demand for nondairy and plant-based products has increased, but there is still a need for more information about and improvement in these products, especially when it comes to frozen desserts. Similar to ice cream, which simultaneously is an emulsion, dispersion, and foam, nondairy frozen desserts also have a complex structure. As a starting point, 15 commercial nondairy frozen desserts, marketed as offering an ice cream-like experience, were purchased and evaluated for compositional, physical, structural, rheological, and meltdown properties.
View Article and Find Full Text PDFSci Rep
December 2024
School of Civil Engineering and Architecture, East China Jiaotong University, Nanchang, 330013, Jiangxi, People's Republic of China.
Compared with simple formations, EPB (earth pressure balance) shield tunnelling in composite formations encounters severe problems with muck conditioning and require improved muck conditioning technology to fulfil expectations for continuous and efficient excavation. In the Nanchang Metro Line 4 Project, a water-rich sand-argillaceous siltstone composite formation is encountered. With a high moisture content and complex composite formation ratio, it is quite difficult to determine the optimum muck conditioning scheme, and thus, muck spewing accidents frequently occur during the tunnelling process.
View Article and Find Full Text PDFGels
December 2024
School of Energy and Building Environment, Guilin University of Aerospace Technology, Guilin 541004, China.
In this study, a new environmentally friendly and efficient method for recycling and reusing waste polyurethane sheets is proposed. SiO aerogel was prepared using the sol-gel method, and mullite whiskers were introduced to enhance its toughness. The whisker-toughened aerogel was used in the degradation of waste polyurethane to produce modified recycled polyol, which was subsequently used to prepare recycled polyurethane foam insulation material.
View Article and Find Full Text PDFGels
November 2024
Faculty of Applied Arts, University of Arts in Belgrade, 11000 Belgrade, Serbia.
In sustainable construction and packaging, the development of novel bio-based materials is crucial, driving a re-evaluation of traditional components. Lightweight, biodegradable materials, including xerogels, have great potential in architectural and packaging applications. However, reinforcing these materials to improve their mechanical strength remains a challenge.
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December 2024
Department of Chemical Engineering, School of Mechanical, Chemical and Materials Engineering, Adama Science and Technology University P. O. Box 1888 Adama Ethiopia
Hierarchical binder-free NiCoO@CuS composite electrodes have been successfully fabricated on a nickel foam surface using a facile hydrothermal method and directly used as a battery-type electrode material for supercapacitor applications. The surface morphological studies reveal that the composite electrode exhibited porous NiCoO nanograss-like structures with CuS nanostructures. The surface area of the composite is significantly enhanced (91.
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