Zhu Lianqing, Zhang Wenchang, Dong Mingli, Lou Xiaoping
Beijing Key Laboratory for Optoelectronics Measurement Technology, Beijing Information Science and Technology University, Beijing 100192, China.
Key Lab of Microelectronic Devices & Integrated Technology, Institute of Microelectronics, Chinese Academy of Sciences, Beijing 100029, China.
Sensors (Basel). 2018 Feb 3;18(2):442. doi: 10.3390/s18020442.
The measurement of fluorescence lifetimes emerged in flow cytometry because it is not impacted by the non-linearity, which occurs in fluorescence intensity measurements. However, this significantly increases the cost and complexity of a traditional flow cytometer. This work reports a simple method of fluorescence lifetime measurement of a flow cytometer based on the cytometric fluorescence pulse time-delay estimation and hardware time-delay calibration. The modified chirp Z-transform (MCZT) algorithm, combined with the algorithm of fine interpolation of correlation peak (FICP), is applied to improve the temporal resolution of the cross-correlation function of the scattering and fluorescence signals, which in turn improves the time-delay estimation accuracy. The estimation accuracy is verified by Gauss fitting. Cells that were labeled simultaneously with three-color reagents are measured; the statistical results of 5000 cells are compared with reference values and are verified with the pulse width variation. The results show the potential of fluorescence lifetime measurements in the traditional flow cytometer.
荧光寿命测量在流式细胞术中出现,因为它不受荧光强度测量中出现的非线性影响。然而,这显著增加了传统流式细胞仪的成本和复杂性。这项工作报告了一种基于细胞荧光脉冲时间延迟估计和硬件时间延迟校准的流式细胞仪荧光寿命测量的简单方法。改进的线性调频Z变换(MCZT)算法与相关峰精细插值(FICP)算法相结合,用于提高散射和荧光信号互相关函数的时间分辨率,进而提高时间延迟估计精度。通过高斯拟合验证估计精度。对用三色试剂同时标记的细胞进行测量;将5000个细胞的统计结果与参考值进行比较,并用脉冲宽度变化进行验证。结果显示了传统流式细胞仪中荧光寿命测量的潜力。