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一种一次性、无罐负压伤口治疗系统的生物学效应。

Biological effects of a disposable, canisterless negative pressure wound therapy system.

作者信息

Malmsjö Malin, Huddleston Elizabeth, Martin Robin

机构信息

Clinical Sciences, Lund, Lund University and Skåne University Hospital, Lund, Sweden.

Advanced Wound Management Division, Smith and Nephew Medical Ltd, Hull, UK.

出版信息

Eplasty. 2014 Apr 2;14:e15. eCollection 2014.

Abstract

OBJECTIVE

Recent developments of negative pressure wound therapy (NPWT) systems have focused on making pumps smaller, lighter, and more portable. The recently introduced PICO system manages wound fluid through a highly breathable film within the dressing, thereby negating the need for a canister, which allows greater mobility and patient concordance. The aim of this study is to compare the biological effects of this system compared to a traditional NPWT system.

METHODS

Laboratory tests were carried out to demonstrate the fluid handling properties of the PICO™ system. Porcine full thickness defect wounds and sutured incisional wounds were used to compare the biological effects. Wounds were treated with PICO dressings or traditional NPWT dressings and connected to either a PICO device or a traditional NPWT device.

RESULTS

The PICO dressing manages exudate predominantly through evaporative loss (up to 85% of all fluid entering the dressing). Both traditional NPWT and the PICO system maintained therapeutic levels of negative pressure in all wounds. Both NPWT systems produced similar effects on wound edge contraction and microvascular blood flow in defect wounds. No significant changes in blood flow or wound contraction were noted in incision wounds for any NPWT combinations tested.

CONCLUSIONS

The disposable, canisterless PICO NPWT system functions in the same manner as the traditional NPWT systems with regard to fluid handling, pressure transmission to the wound bed, tissue contraction, and changes in blood flow.

摘要

目的

负压伤口治疗(NPWT)系统的最新进展集中在使泵更小、更轻且更便于携带。最近推出的PICO系统通过敷料内的高透气性薄膜来管理伤口渗出液,从而无需使用集液罐,这使得患者的活动能力更强且依从性更高。本研究的目的是比较该系统与传统NPWT系统的生物学效应。

方法

进行实验室测试以证明PICO™系统的液体处理特性。使用猪的全层缺损伤口和缝合切口伤口来比较生物学效应。伤口分别用PICO敷料或传统NPWT敷料进行处理,并连接到PICO装置或传统NPWT装置。

结果

PICO敷料主要通过蒸发损失来管理渗出液(进入敷料的所有液体中高达85%)。传统NPWT和PICO系统在所有伤口中均维持了治疗所需的负压水平。两种NPWT系统对缺损伤口的伤口边缘收缩和微血管血流产生了相似的影响。对于所测试的任何NPWT组合,在切口伤口中均未观察到血流或伤口收缩有显著变化。

结论

一次性、无集液罐的PICO NPWT系统在液体处理、向伤口床的压力传递、组织收缩和血流变化方面的功能与传统NPWT系统相同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92fb/3977592/41ff89d5c1c2/eplasty14e15_fig1.jpg

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