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Natural fiber reinforced biodegradable staples: Novel approach for efficient wound closure

机译:天然纤维增强可生物降解钉:高效伤口闭合的新方法

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摘要

Every year millions of lacerations and incisions taken place and require an effective methodology to manage the wound for a better life. The primary causes include mechanical trauma and surgical procedures. The rapid healing of the wound is critical to prevent further infection and reduction pain etc. Current options comprise of sutures, staplers, surgical strips and glues, again the intervention depends on the type of wound and the surgeon preference. The current wound closure techniques pose various potent limitations and confronting the problems to create a desired wound closure technique is necessary for faster and effective wound healing management. The surgical staplers are fast and easy to use wound closure devices, which approximates the edges of the wounds together by staples. The staples are mostly made up of metals like titanium and stainless steel. By modifying the existing stapling method using biodegradable staples that are expected to have good mechanical properties, not require removal procedure, minimized scarring and an overall acceleration in wound healing with minimal complications. Present, the paper focuses on the novel hypothesis on natural fiber reinforced biodegradable polymer staples as wound enclosures with high strength and degradability.
机译:每年都有数百万次曲线和切口,需要有效的方法来管理伤口以获得更好的生活。主要原因包括机械创伤和外科手术。伤口的快速愈合对于防止进一步感染和减少疼痛等至关重要。目前的选择包括缝合线,订书机,手术条和胶水,再次干预取决于伤口的类型和外科医生偏好。当前伤口闭合技术构成了各种有效的限制,并面临着创造所需的伤口闭合技术的问题,这对于更快而有效的伤口愈合管理是必要的。手术吻合器快速且易于使用伤口封闭装置,其通过钉依赖于伤口的边缘。钉书针主要由钛和不锈钢等金属组成。通过使用预期具有良好机械性能的可生物降解的钉修改现有的装订方法,不需要去除过程,最小化瘢痕形成和伤口愈合的总加速度,并在最小的并发症。目前,本文侧重于天然纤维增强可生物降解聚合物钉的新颖假设,作为伤口外壳,具有高强度和降解性。

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