Silver R A, Whitaker M, Bolsover S R
Department of Physiology, University College London, UK.
Pflugers Arch. 1992 Apr;420(5-6):595-602. doi: 10.1007/BF00374639.
Development of highly efficient fluorescent ratio indicators has made imaging of ion concentrations within individual cells possible (Grynkiewicz et al. 1985; Tsien and Poenie 1986). Ion imaging is a complex technique and is therefore prone to artefacts. In this paper we investigate the limits of the technique and its potential pitfalls. The spatial resolution of an imaging system is determined for different cell geometries. We describe a technique to increase the time resolution of existing systems by using a single excitation wavelength to measure changes in ion concentration. We demonstrate examples of potential artefacts arising from hardware limitations, image processing and fundamental optics. Methods for recognition and minimization of these problems are discussed.
高效荧光比率指示剂的发展使得对单个细胞内离子浓度进行成像成为可能(格林基维茨等人,1985年;钱永健和波涅,1986年)。离子成像技术复杂,因此容易出现伪影。在本文中,我们研究了该技术的局限性及其潜在的陷阱。针对不同的细胞几何形状确定了成像系统的空间分辨率。我们描述了一种通过使用单一激发波长来测量离子浓度变化从而提高现有系统时间分辨率的技术。我们展示了由硬件限制、图像处理和基础光学产生的潜在伪影示例。讨论了识别和最小化这些问题的方法。