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使用生物可吸收聚合物伤口基质治疗犬开放性伤口:14例病例(2019 - 2021年)

Management of open wounds in dogs using a bioresorbable polymeric wound matrix: 14 Cases (2019-2021).

作者信息

Carrillo A J, Mancuso M L, Maxwell E A

机构信息

Department of Small Animal Clinical Sciences, College of Veterinary Medicine, University of Florida, 2015 SW 16(th) Ave., Gainesville FL 32610 USA.

Department of Small Animal Clinical Sciences, College of Veterinary Medicine, University of Florida, 2015 SW 16(th) Ave., Gainesville FL 32610 USA.

出版信息

Top Companion Anim Med. 2023 Sep-Dec;56-57:100825. doi: 10.1016/j.tcam.2023.100825. Epub 2023 Oct 27.

Abstract

The objective of this retrospective case series is to evaluate clinical outcomes associated with the use of a bioresorbable polymeric wound matrix (MicroLyte Vet; Imbed Biosciences) for the management of soft tissue wounds of various etiologies in dogs. Medical records were reviewed between August 2019 and November 2021 for signalment, wound etiology, location, size, initial wound management, antibiotic therapy, time to initial application, number of applications, time between applications, secondary dressing used, time to wound closure, complications, and clinical outcomes. Time to initial application ranged from 1 to 61 days (median, 7.5). The number of applications ranged from 1 to 15 (median, 4.5). Time between applications ranged from 1 to 8 days (median, 3.7). Additional surgical interventions were implemented in 3 dogs. Wound closure by second intention healing (n=14) ranged from 2 to 12 weeks (median, 5). There were no adverse events attributed to the use of bioresorbable polymeric wound matrix. Complete wound healing occurred with use of the bioresorbable polymeric wound matrix in all dogs.

摘要

本回顾性病例系列的目的是评估使用可生物吸收的聚合物伤口基质(MicroLyte Vet;Imbed Biosciences)治疗犬各种病因所致软组织伤口的临床结局。回顾了2019年8月至2021年11月期间的病历,记录了动物特征、伤口病因、位置、大小、初始伤口处理、抗生素治疗、首次应用时间、应用次数、应用间隔时间、使用的二次敷料、伤口闭合时间、并发症及临床结局。首次应用时间为1至61天(中位数为7.5天)。应用次数为1至15次(中位数为4.5次)。应用间隔时间为1至8天(中位数为3.7天)。3只犬接受了额外的手术干预。二期愈合伤口闭合(n = 14)时间为2至12周(中位数为5周)。未发现因使用可生物吸收的聚合物伤口基质而导致的不良事件。所有犬使用可生物吸收的聚合物伤口基质后均实现了完全伤口愈合。

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