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A full-field heterodyne surface plasmon resonance dynamic bio-imaging system

机译:全场外差表面等离子体激元共振动态生物成像系统

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Two-dimensional (2D) phase imaging system based on phase-shift interferometry (PSI) techniques can achieve a very high accuracy, but it has a degraded dynamic characteristic due to the inherent limitation of the PSI. Hence, the phase imaging system is incapable of obtaining real-time information pertaining to phase variations. To develop a label-free, high sensitivity, and dynamic bio-imaging system, a surface plasmon resonance (SPR) biosensing is combined with full-field heterodyne interferometry to develop a common-path full-field heterodyne SPR dynamic phase imager. The phase imager provides some advantages for biosensing such as label-free sensing, high sensitivity, high throughput, long-term stability, and dynamic capability. We build a 16 × 16 pixel photodiode array with a frame rate of up to 10 kHz as the 2D detector as opposed to a CCD camera with 30 Hz and employ an electro-optic modulator to generate a heterodyne light source. The multi-channel and real-time demodulation is calculated by utilizing a home-made digital signal processing-based lock-in amplifier. The SPR phase imager can detect refractive index changes better than 10~(-6) by testing the difference between nitrogen and argon gases, and will be used to analyze the biomolecular interaction on sensing surface with high throughput screening.
机译:基于相移干涉术(PSI)技术的二维(2D)相位成像系统可以实现非常高的精度,但是由于PSI的固有局限性,其动态特性会下降。因此,相位成像系统不能获得与相位变化有关的实时信息。为了开发无标签,高灵敏度和动态生物成像系统,将表面等离子体共振(SPR)生物传感与全场外差干涉测量法相结合,以开发出共路径全场外差SPR动态相位成像仪。相位成像仪为生物传感提供了一些优势,例如无标签传感,高灵敏度,高通量,长期稳定性和动态能力。与30 Hz的CCD摄像机相反,我们构建了一个帧速率高达10 kHz的16×16像素光电二极管阵列作为2D检测器,并采用电光调制器生成外差光源。利用基于数字信号处理的自制锁定放大器,可以计算出多通道实时解调。通过测试氮气和氩气之间的差异,SPR相位成像仪可以检测到优于10〜(-6)的折射率变化,并将通过高通量筛选将其用于分析传感表面上的生物分子相互作用。

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