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Characterization and Ex Vivo Application of Indocyanine Green Chitosan Patches in Dura Mater Laser Bonding

机译:吲哚菁绿壳聚糖贴片在硬母膜激光粘合中的表征和离体应用

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摘要

Dura mater repair represents a final and crucial step in neurosurgery: an inadequate dural reconstruction determines dreadful consequences that significantly increase morbidity and mortality rates. Different dural substitutes have been used with suboptimal results. To overcome this issue, in previous studies, we proposed a laser-based approach to the bonding of porcine dura mater, evidencing the feasibility of the laser-assisted procedure. In this work, we present the optimization of this approach in ex vivo experiments performed on porcine dura mater. An 810-nm continuous-wave AlGaAs (Aluminium Gallium Arsenide) diode laser was used for welding Indocyanine Green-loaded patches (ICG patches) to the dura. The ICG-loaded patches were fabricated using chitosan, a resistant, pliable and stable in the physiological environment biopolymer; moreover, their absorption peak was very close to the laser emission wavelength. Histology, thermal imaging and leak pressure tests were used to evaluate the bonding effect. We demonstrated that the application of 3 watts (W), pulsed mode (Ton 30 ms, Toff 3.5 ms) laser light induces optimal welding of the ICG patch to the dura mater, ensuring an average fluid leakage pressure of 216 ± 105 mmHg, falling within the range of physiological parameters. This study demonstrated that the thermal effect is limited and spatially confined and that the laser bonding procedure can be used to close the dura mater. Our results showed the effectiveness of this approach and encourage further experiments in in vivo models.
机译:Dura Mater修复是神经外科的最终和关键步骤:多云重建不足决定了可怕的后果,显着提高了发病率和死亡率。不同的多云替代品已被次优效果使用。为了克服这个问题,在先前的研究中,我们提出了一种基于激光的猪母母母母母母母母母母牛的方法,证明了激光辅助程序的可行性。在这项工作中,我们介绍了在猪硬脑膜的前体内实验中的这种方法的优化。 810nm连续波藻(铝镓砷)二极管激光器用于焊接吲哚菁绿加载的贴片(ICG贴片)到Dura。使用壳聚糖,在生理环境生物聚合物中使用壳聚糖,耐药性,柔韧且稳定制造ICG加载的贴剂;此外,它们的吸收峰非常接近激光发射波长。组织学,热成像和泄漏压力测试用于评估粘合效果。我们证明,应用3瓦(W),脉冲模式(吨30ms,Toff 3.5 Ms)激光引起ICG贴片的最佳焊接,确保平均流体泄漏压力为216±105 mmHg,下降在生理参数范围内。该研究表明,热效应是有限的,在空间上限制,激光粘合程序可用于关闭硬脑膜。我们的结果表明,这种方法的有效性,并鼓励体内模型进行进一步的实验。

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