首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2011 >A NOVEL SCANNING MOLECULAR TAGGING VELOCIMETRY TECHNIQUE FOR TWO DIMENSIONAL MICROFLUIDIC APPLICATIONS
【24h】

A NOVEL SCANNING MOLECULAR TAGGING VELOCIMETRY TECHNIQUE FOR TWO DIMENSIONAL MICROFLUIDIC APPLICATIONS

机译:二维微流控应用的新型扫描分子标记测速技术

获取原文

摘要

Micro particle image velocimetry forms the basis of modern microscale flow measurement techniques. However, the motion of tracking particles that have been introduced into the fluid to measure flow velocity in micro fluidic flows can be affected by a number of different body forces that may not affect the carrier fluid. Under these conditions, molecular tagging velocity (MTV) has a distinct advantage in resolving fluid motion. A MTV approach, based on the photobleaching mechanism, is presented that allows any desired pattern of flow markers to be written into the region-of-interest to track the flow. This allows standard particle master shadowgraphy algorithms to be used to track groups of tagged molecules in the flow resolving two components of the bulk fluid motion. The MTV techniques developed so far for microfluidic application provide only a one dimensional flow measurement, typically along the axial direction perpendicular to the tagged region. Other tagging methods include the use of a grid and a structured mask for macro-scale and micro-scale flows respectively. One of the limitations of these approaches is that velocity information for only a predefined pattern is available. The MTV technique presented here is capable of resolving two dimensional flow velocity information with the limitations associated with the application of a mask. The salient feature of the presented approach is the use of a laser scanner which allows unrestricted, repeatable and accurate movement of the write laser within the field-of-view. The temporal displacement of the tagged region is captured onto an imaging device. The proof of concept of the technique is presented in the current work. A known flow velocity through a curved section of a 750 fim wide serpentine channel is measured using the designed system. The tagged regions are in the form of dark dots which advect with the flow. The temporal and spatial evolution of these tagged regions is tracked to reveal the flow information. The aim of this technique is to perform velocity measurements in a dielectrophoretic flow of a mixture of nanoparticles and the caged fluorescent dye, which may show different flow behavior, possibly in two opposite directions due to the charge on them.
机译:微粒图像测速技术构成了现代微型流量测量技术的基础。但是,已经引入流体中以测量微流体流中的流速的跟踪粒子的运动可能会受到多种不同的体力的影响,这些体力可能不会影响载液。在这些条件下,分子标记速度(MTV)在解决流体运动方面具有明显的优势。提出了一种基于光漂白机制的MTV方法,该方法允许将任何所需的流量标记图案写入感兴趣区域以跟踪流量。这允许使用标准的粒子主阴影摄影算法来跟踪解决整体流体运动的两个分量的流中的标记分子组。到目前为止,为微流体应用开发的MTV技术通常仅在垂直于标记区域的轴向上提供一维流量测量。其他标记方法包括分别使用网格和结构化掩码分别用于宏观和微观流程。这些方法的局限性之一是仅可获得预定义模式的速度信息。此处介绍的MTV技术能够解决二维流速信息,并且具有与蒙版应用相关的限制。所提出的方法的显着特征是使用激光扫描仪,该激光扫描仪允许在视场内无限制,可重复和准确地移动写入激光。标记区域的时间位移被捕获到成像设备上。该技术的概念证明在当前的工作中提供。使用设计的系统测量通过750微米宽蛇形通道弯曲部分的已知流速。标记的区域呈暗点的形式,随流平移。跟踪这些标记区域的时间和空间演变,以揭示流动信息。该技术的目的是在纳米颗粒和笼状荧光染料的混合物的介电泳流中执行速度测量,这可能会显示出不同的流动行为,由于它们上的电荷可能会在两个相反的方向上表现出来。

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