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首页> 外文期刊>Physiological Research >What is the optimal light source for optical mapping using voltage- and calcium-sensitive dyes?
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What is the optimal light source for optical mapping using voltage- and calcium-sensitive dyes?

机译:使用电压和钙敏感染料的光学映射的最佳光源是什么?

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Optical mapping is a fluorescence-based physiological method to image spreading of action potential in excitable tissues, such as the heart and central nervous system. Because of the requirements for high speed imaging in low light conditions, highly sensitive high-speed cameras together with an optical system with maximum photon efficiency are required. While the optimization of these two components is relatively straightforward, the choice of the perfect light source is less simple; depending on the other (usually fixed) components, various parameters may acquire different weight in decisionmaking process. Here we describe the rationale for building an optical mapping setup and consider the relative advantages and disadvantages of three different commonly available light sources: mercury vapor lamp (HBO), xenon lamp (XBO), and light emitting diode (LED). Using the same optical system (fluorescence macroscope) and high-speed camera (Ultima L), we have tested each of the sources for its ability to provide bright and even illumination of the field of view and measured its temporal fluctuations in intensity. Then we used each in the actual optical mapping experiment using isolated, perfused adult mouse heart or chick embryonic heart to determine the actual signal to noise ratio at various acquisition rates. While the LED sources have undergone significant improvements in the recent past, the other alternatives may still surpass them in some parameters, so LEDs may not be the automatic number one choice for every application.
机译:光学映射是一种基于荧光的生理方法,可在易激发组织中的动作电位的图像扩散,例如心脏和中枢神经系统。由于低光条件中高速成像的要求,需要高敏感的高速相机与具有最大光子效率的光学系统。虽然这两个部件的优化相对简单,但完美光源的选择更简单;根据另一(通常是固定的)组件,各种参数可以在决策过程中获取不同的权重。在这里,我们描述了用于构建光学映射设置的基本原理,并考虑三种不同常用光源的相对优缺点:汞蒸汽灯(HBO),氙灯(XBO)和发光二极管(LED)。使用相同的光学系统(荧光癌)和高速摄像头(ULTIMA L),我们已经测试了每个来源,以便能够提供视野的明亮甚至照明并测量其强度的时间波动。然后我们在实际的光学映射实验中使用各自使用隔离,灌注的成人小鼠心脏或小鸡胚胎心脏,以确定各种采集速率的实际信号到噪声比。虽然LED源在最近的过去经历了显着的改进状态,但其他替代方案可能仍然超过它们在一些参数中,因此LED可能不是每个应用程序的自动编号选择。

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