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Kinetics of blood flow during healing of excisional full-thickness skin wounds in pigs as monitored by laser speckle perfusion imaging.

机译:激光散斑灌注成像监测的切除性全层皮肤伤口愈合过程中的血流动力学。

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摘要

Background/purpose: The laser speckle perfusion imaging (LSPI) system is a new, non-invasive technique for rapidly and reproducibly measuring tissue perfusion. The high resolution and frame rate of the LSPI overcome many of the limitations of traditional laser Doppler imaging techniques. Therefore, LSPI is a useful means for evaluating blood flow in a variety of situations. The present study investigates the ability of the LSPI system to detect temporal changes in blood flow during the healing of cutaneous wounds in a well-characterized animal model. Methods: Full-thickness excisional skin wounds (2 x 2 cm) were created on the backs of juvenile female red Duroc pigs. Every week post-injury, the wounds were measured and photographed, and normalized blood flow values were determined using the LSPI system. Results: Tissue perfusion values were available after complete re-epithelialization and removal of the eschar, at day 21. At this point, wound blood flow was significantly elevated as compared with the surrounding, uninvolved skin. Wound blood flow declined steadily during healing, and approached normal values by day 35 post-injury. Conclusion: The kinetics of blood flow during excisional wound healing in the red Duroc model are comparable with that previously observed in laser Doppler imaging of healing human skin wounds and hypertrophic scars. These results therefore confirm that the red Duroc is a good model of human wound healing, and further indicates that the LSPI is an excellent technique for evaluating angiogenesis and neovascularization during healing in this and other models.
机译:背景/目的:激光散斑灌注成像(LSPI)系统是一种新的,非侵入性的技术,用于快速,可重复地测量组织灌注。 LSPI的高分辨率和帧速率克服了传统激光多普勒成像技术的许多局限性。因此,LSPI是评估各种情况下血流的有用手段。本研究调查了LSPI系统在特征明确的动物模型中检测皮肤伤口愈合过程中血流的瞬时变化的能力。方法:在幼小的雌性杜洛克红猪的背上创建全层切除皮肤伤口(2 x 2厘米)。受伤后每周都要对伤口进行测量和照相,并使用LSPI系统确定标准化的血流值。结果:在第21天完全上皮化并去除焦char后,可获得组织灌注值。此时,与周围未受累的皮肤相比,伤口血流量显着升高。伤口的血流量在愈合过程中稳定下降,并在受伤后第35天达到正常值。结论:红色杜洛克模型在切除伤口愈合过程中的血流动力学与先前在愈合人体皮肤伤口和肥厚性瘢痕的激光多普勒成像中观察到的动力学相当。因此,这些结果证实了红色杜洛克是人类伤口愈合的良好模型,并且进一步表明,LSPI是在该模型和其他模型中评估愈合过程中血管生成和新血管形成的一项出色技术。

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