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Biological imaging using light-addressable potentiometric sensors and scanning photo-induced impedance microscopy

机译:使用光寻址电位传感器和扫描光致阻抗显微镜进行生物成像

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摘要

Light-addressable potentiometric sensors (LAPS) and scanning photo-induced impedance microscopy (SPIM) use photocurrent measurements at electrolyte–insulator–semiconductor substrates for spatio-temporal imaging of electrical potentials and impedance. The techniques have been used for the interrogation of sensor arrays and the imaging of biological systems. Sensor applications range from the detection of different types of ions and the label-free detection of charged molecules such as DNA and proteins to enzyme-based biosensors. Imaging applications include the temporal imaging of extracellular potentials and dynamic concentration changes in microfluidic channels and the lateral imaging of cell surface charges and cell metabolism. This paper will investigate the current state of the art of the measurement technology with a focus on spatial and temporal resolution and review the biological applications, these techniques have been used for. An outlook on future developments in the field will be given.
机译:光寻址电位传感器(LAPS)和扫描光致阻抗显微镜(SPIM)使用在电解质-绝缘体-半导体基板上的光电流测量值来对电位和阻抗进行时空成像。该技术已用于询问传感器阵列和生物系统的成像。传感器的应用范围从检测不同类型的离子到对DNA和蛋白质等带电分子进行无标记检测,再到基于酶的生物传感器。成像应用包括细胞外电位的时间成像和微流体通道中动态浓度变化,以及细胞表面电荷和细胞代谢的横向成像。本文将重点关注空间和时间分辨率,研究测量技术的最新状态,并回顾这些技术已用于的生物学应用。将对该领域的未来发展进行展望。

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