首页> 外文会议>Conference on microfluidics, bioMEMS, and medical microsystems XII >Passive flow regulators for drug delivery and hydrocephalus treatment
【24h】

Passive flow regulators for drug delivery and hydrocephalus treatment

机译:被动流量调节器,用于药物输送和脑积水治疗

获取原文

摘要

Passive flow regulators are usually intended to deliver or drain a fluid at a constant rate independently from pressure variations. New designs of passive flow regulators made of a stack of a silicon membrane anodically bonded to a Pyrex substrate are proposed. A first design has been built for the derivation of cerebrospinal fluid (CSF) towards peritoneum for hydrocephalus treatment. The device allows draining CSF at the patient production rate independently from postural changes. The flow rate is regulated at 20 ml/h in the range 10 to 40 mbar. Specific features to adjust in vivo the nominal flow rate are shown. A second design including high pressure shut-off feature has been made. The intended use is drug delivery with pressurized reservoir of typically 100 to 300 mbar. In both cases, the membrane comprises several holes facing pillars in the Pyrex substrate. These pillars are machined in a cavity which ensures a gap between the membrane and the pillars at rest. The fluid in the pressurized reservoir is directly in contact with the top surface of the membrane, inducing its deflection towards Pyrex substrate and closing progressively the fluidic pathway through each hole of the membrane. Since the membrane deflection is highly non-linear, FEM simulations have been performed to determine both radial position and diameter of the membrane holes that ensure a constant flow rate for a given range of pressure.
机译:无源流量调节器通常旨在独立于压力变化而以恒定速率输送或排出流体。提出了由阳极键合到派热克斯基板上的硅膜叠层制成的无源流量调节器的新设计。已经建立了用于将脑脊液(CSF)推向腹膜以进行脑积水治疗的第一个设计。该设备可独立于体位变化以患者生产率排出脑脊液。流速调节为20 ml / h,范围为10到40 mbar。显示了用于调节体内标称流速的特定功能。已经进行了包括高压切断功能的第二种设计。预期的用途是使用通常100到300 mbar的压力储存器进行药物输送。在这两种情况下,该膜都包括面向耐热玻璃基材中的柱子的多个孔。这些支柱在空腔中加工,以确保隔膜和静止支柱之间的间隙。加压储器中的流体直接与膜的顶表面接触,导致其向派热克斯底物挠曲,并逐渐关闭通过膜的每个孔的流体通道。由于膜的挠度是高度非线性的,因此已执行FEM仿真以确定膜孔的径向位置和直径,以确保在给定压力范围内流量恒定。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号