首页> 外文会议>International Flow Measurement Conference >Development of an optical measurement method for 'sampled' micro-volumes and nano-flow rates
【24h】

Development of an optical measurement method for 'sampled' micro-volumes and nano-flow rates

机译:“采样”微卷和纳米流速的光学测量方法的开发

获取原文

摘要

Radiopharmaceuticals used in nuclear medicine for therapy or diagnosis (molecular imaging, PETscan, scintigraphy) are characterized in terms of volume activity before injection to patients. The current measurement process relies on dose calibrators which have to be calibrated by transfer standards, traceable to primary standards. For very short half-life radionuclides (few minutes), the metrological traceability can only be assured through an on-site calibration with primary standards. However, until now, there is no primary system for the direct measurement of such high activity radioactive solutions. This study presents the subsystem under development for the measurement of a sampled volume of the order of one microliter with an associated relative target standard uncertainty of 1%. This article focuses on the volume measurement method development and its validation by comparison to the gravimetric method. The paper, in a first part, describes the developed method and the associated hardware and software. The authors have chosen a non-contact optical method implemented by a microscope camera and associated optics in front of a transparent capillary. The second part of the paper describes the measurement process. Several image processing steps are described and the traceability to dimensional units are presented. Finally, the paper presents some validation results by comparison to a gravimetric measurement, including repeatability and accuracy tests. Further development and improvements, necessary for the finalization of the prototype and the measurement of nano-flow rates are discussed.
机译:用于治疗或诊断的核医学(分子成像,PETSCAN,Scintigraphy)的放射性药物以对患者注射前的体积活性来表征。电流测量过程依赖于剂量校准器,该剂量校准器必须通过转移标准校准,可追溯到主要标准。对于非常短的半衰期放射性核素(几分钟),只能通过与主要标准的现场校准来确保计量可追溯性。然而,到目前为止,没有用于直接测量这种高活性放射性解决方案的主要系统。本研究介绍了下部系统,用于测量一个微透射率为的采样体积,其相关的相对目标标准不确定度为1%。本文通过与重量法相比,专注于体积测量方法开发及其验证。本文在第一部分描述了开发的方法和相关的硬件和软件。作者选择了通过显微镜相机和相关光学器件在透明毛细管前面实现的非接触式光学方法。本文的第二部分描述了测量过程。描述了几个图像处理步骤,并提出了对尺寸单元的可追溯性。最后,通过与重量测量相比,本文呈现了一些验证结果,包括可重复性和准确性测试。讨论了最终确定原型和纳米流速的测量所需的进一步发展和改进。

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