首页> 外文会议>Optical and Imaging Techniques for Biomonitoring >Laser viability method for red blood cells state monitoring
【24h】

Laser viability method for red blood cells state monitoring

机译:激光生存力监测红细胞状态的方法

获取原文

摘要

Abstract: The method for RBC state control is based upon single cell viability control after illumination with laser pulse. Heat shock resulting from absorption of laser energy by a cell is considered as a cell load. This load acts from inside of the cell, is pulsed (10$+$MIN@5$/) and can be delivered directly to the chosen cells. The result of each illumination as cell survival or damage is controlled optically by monitoring the cells' response on a pulse through photothermal technique. Under fixed laser parameters the percentage of damaged cells is viability index (VI) for a certain cell population. The testing procedure includes consequential illumination of each cell in population and calculation of VI. Experimental set up is based upon optical microscope. Dual laser thermal lens technique is used for cell illumination and monitoring. For cell loading 5 ns pulses, 400 divided by 600 nm with energies up to 20 $mu@J are generated by tunable dye laser. Cell monitoring is realized with cw He-Ne (632.8 nm) laser and photodetector. All data acquisition routines are automated. Up to 3 cell suspensions can be studied in a multisample chamber designed to secure cells. An amount of cell suspension required is 1 $mu@l. One population test at a fixed wavelength takes 2 divided by 3 min. In experiments with rats, treated with LPS E. Coli injection to stimulate fever and a septic stress we found that variation of RBC viability becomes apparent in 20 - 30 min after injection, while the clinical changes (blood pressure, body temperature, skin temperature) become detectable after 1 hour. The results obtained show that the method can reveal additional properties of the cells most abundant for monitoring and diagnostic tasks. !18
机译:摘要:红细胞状态控制的方法是基于激光脉冲照射后的单细胞生存能力控制。由单元吸收激光能量而引起的热冲击被认为是单元负载。此负载从单元内部进行作用,被脉冲化(10 $ + $ MIN @ 5 $ /),并且可以直接传递到所选单元。通过光热技术通过监视脉冲对细胞的反应,以光学方式控制每次照度作为细胞存活或损坏的结果。在固定的激光参数下,受损细胞的百分比为特定细胞群的生存力指数(VI)。测试程序包括对每个细胞群体进行相应的照明和VI的计算。实验装置基于光学显微镜。双激光热透镜技术用于细胞照明和监测。对于单元加载5 ns的脉冲,可调谐染料激光产生400除以600 nm的能量,能量高达20 $ mu @ J。通过连续氦氖(632.8 nm)激光和光电探测器实现细胞监测。所有数据采集例程都是自动化的。在设计用于固定细胞的多样品室中,最多可以研究3种细胞悬液。所需的细胞悬液量为1μl。固定波长下的一项总体测试需要2除以3分钟。在用LPS E.大肠埃希菌注射以刺激发烧和败血症应激的大鼠中进行的实验中,我们发现RBC活力的变化在注射后20-30分钟内变得明显,而临床变化(血压,体温,皮肤温度) 1小时后可被检测到。所获得的结果表明,该方法可以揭示用于监视和诊断任务最丰富的细胞的其他属性。 !18

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