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首页> 外文期刊>Lasers in surgery and medicine >Near infrared laser-tissue welding using nanoshells as an exogenous absorber.
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Near infrared laser-tissue welding using nanoshells as an exogenous absorber.

机译:近红外laser-tissue焊接使用nanoshells作为外生吸收器。

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BACKGROUND AND OBJECTIVE: Gold nanoshells are a new class of nanoparticles that can be designed to strongly absorb light in the near infrared (NIR). These particles provide much larger absorption cross-sections and efficiency than can be achieved with currently used chemical chromophores without photobleaching. In these studies, we have investigated the use of gold nanoshells as exogenous NIR absorbers to facilitate NIR laser-tissue welding. STUDY DESIGN/MATERIALS AND METHODS: Gold nanoshells with peak extinction matching the NIR wavelength of the laser being used were manufactured and suspended in an albumin solder. Optimization work was performed on ex vivo muscle samples and then translated into testing in an in vivo rat skin wound-healing model. Mechanical testing of the muscle samples was immediately performed and compared to intact tissue mechanical properties. In the in vivo study, full thickness incisions in the dorsal skin of rats were welded, and samples of skin were excised at 0, 5, 10, 21, and 32 days for analysis of strength and wound healing response. RESULTS: Mechanical testing of nanoshell-solder welds in muscle revealed successful fusion of tissues with tensile strengths of the weld site equal to the uncut tissue. No welding was accomplished with this light source when using solder formulations without nanoshells. Mechanical testing of the skin wounds showed sufficient strength for closure and strength increased over time. Histological examination showed good wound-healing response in the soldered skin. CONCLUSIONS: The use of nanoshells as an exogenous absorber allows the usage of light sources that are minimally absorbed by tissue components, thereby, minimizing damage to surrounding tissue and allowing welding of thicker tissues.
机译:背景和目的:黄金nanoshells是纳米颗粒可以被设计的新类在近红外强吸收光线(NIR)。比可以吸收截面和效率实现与当前使用的化学物质发色团没有光漂白。研究中,我们调查了黄金的使用nanoshells作为外生近红外光谱吸收器促进NIR laser-tissue焊接。设计/材料与方法:黄金nanoshells近红外光谱波长峰值灭绝匹配激光是制造和使用悬浮在白蛋白焊料。进行体外肌肉样品然后呢翻译成体内大鼠皮肤测试愈合模型。肌肉是立即执行和样品比较完整的组织力学性能。在体内研究中,全厚度的切口大鼠背侧的皮肤被焊接,样本皮肤切除在0、5、10,21岁,32天分析的力量和伤口愈合响应。nanoshell-solder焊接在肌肉了组织的成功融合与拉伸优势等于未焊接的网站组织。光源在使用焊料配方没有nanoshells。皮肤伤口显示足够的强度随着时间的推移关闭和强度增加。组织学检查显示好在焊接的皮肤愈合反应。结论:使用nanoshells作为外生吸收器允许光的使用最低限度被组织吸收的来源组件,从而减少损失周围组织,使焊接的厚的组织。

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