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Principles and development of collagen-mediated tissue fusion induced by laser irradiation

机译:激光诱导胶原介导的组织融合的原理与发展

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摘要

The mechanism underlying tissue fusion mediated by laser irradiation remains unclear. We clarify the mechanisms underlying laser-mediated tissue fusion using a novel model. Microscopic examinations of morphological changes within the adventitia of a bovine carotid artery and a collagen sheet prepared from bovine dermis showed collagen fibril bundle loosening and collagen fibre swelling following heating at 46 °C. An incised bovine carotid artery covered with a collagen sheet to which pressure and laser heat of 40 °C–52 °C were applied created a structure that was pressure resistant to >300 mmHg. Microscopic analyses of the irradiation site showed collagen fibril interdigitation. Hence, low-temperature laser-mediated tissue fusion causes collagen fibril bundles to loosen and swell, and crimping causes the fibres to intertwine. As the temperature declines, the loosened and swollen fibrils and fibres tighten, and collagen fibre interdigitation is completed. This technology could be applied to fuse tissues during surgery.
机译:激光照射介导的组织融合的机制尚不清楚。我们阐明了使用新型模型进行激光介导的组织融合的机制。显微镜检查牛颈动脉外膜内的形态变化,以及用牛真皮制成的胶原片,发现在46°C加热后,胶原纤维束松弛并且胶原纤维膨胀。一条切开的用胶原片覆盖的牛颈动脉,对其施加压力和40ºC至52ºC的激光热,可形成耐压超过300> mmHg的结构。辐照部位的显微镜分析显示胶原原纤维相互交叉。因此,低温激光介导的组织融合导致胶原蛋白原纤维束松弛和膨胀,并且卷曲导致纤维缠绕。随着温度的下降,原纤维和纤维的松弛和膨胀会变紧,胶原纤维的交叉指形完成。这项技术可以在手术过程中用于融合组织。

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