首页> 外文会议>Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE >Microfluidic characterization of a valved glaucoma drainage device with implications for enhanced therapeutic efficacy
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Microfluidic characterization of a valved glaucoma drainage device with implications for enhanced therapeutic efficacy

机译:瓣膜性青光眼引流装置的微流控特性可提高治疗效果

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In this paper, we report on the microfluidic characterization of a valved glaucoma drainage device (the Ahmed/spl trade/ glaucoma valve). Using a microfluidic test set-up, we have simulated the aqueous humor flow and post implantation fibrous tissue encapsulation of the external plate. We have shown that, contrary to the prevailing belief, the valve significantly contributes to the total pressure even after the fibrous capsule formation. This was demonstrated both by disabling the valve using sharp dissection, and by bypassing it using a polyimide microtube. ANSYS/spl trade/ and Fluent/spl trade/ simulations verified the pressure measurements following the microtube insertion. Further reduction of intraocular pressure after fibrous capsule formation could significantly reduce the potential for glaucoma progression.
机译:在本文中,我们报告了带瓣膜青光眼引流装置(Ahmed / spl trade /青光眼瓣膜)的微流控特性。使用微流体测试装置,我们模拟了房水流动和植入后外部板的纤维组织包封。我们已经证明,与普遍的看法相反,即使在纤维囊形成之后,瓣膜也显着地贡献了总压力。通过使用尖锐的解剖禁用瓣膜和使用聚酰亚胺微管绕过瓣膜来证明这一点。 ANSYS / spl trade /和Fluent / spl trade /模拟验证了插入微管后的压力测量结果。纤维囊形成后眼内压的进一步降低可显着降低青光眼进展的可能性。

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