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首页> 外文期刊>Frontiers in Cellular Neuroscience >Computer Generated Holography with Intensity-Graded Patterns
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Computer Generated Holography with Intensity-Graded Patterns

机译:具有强度梯度图案的计算机生成全息照相

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摘要

Computer Generated Holography achieves patterned illumination at the sample plane through phase modulation of the laser beam at the objective back aperture. This is obtained by using liquid crystal-based spatial light modulators (LC-SLMs), which modulate the spatial phase of the incident laser beam. A variety of algorithms is employed to calculate the phase modulation masks addressed to the LC-SLM. These algorithms range from simple gratings-and-lenses to generate multiple diffraction-limited spots, to iterative Fourier-transform algorithms capable of generating arbitrary illumination shapes perfectly tailored on the base of the target contour. Applications for holographic light patterning include multi-trap optical tweezers, patterned voltage imaging and optical control of neuronal excitation using uncaging or optogenetics. These past implementations of computer generated holography used binary input profile to generate binary light distribution at the sample plane. Here we demonstrate that using graded input sources, enables generating intensity graded light patterns and extend the range of application of holographic light illumination. At first, we use intensity-graded holograms to compensate for LC-SLM position dependent diffraction efficiency or sample fluorescence inhomogeneity. Finally we show that intensity-graded holography can be used to equalize photo evoked currents from cells expressing different levels of chanelrhodopsin2 (ChR2), one of the most commonly used optogenetics light gated channels, taking into account the non-linear dependence of channel opening on incident light.
机译:计算机生成的全息照相术通过对物镜后孔径处的激光束进行相位调制,从而在样品平面上实现图案化照明。这是通过使用基于液晶的空间光调制器(LC-SLM)来实现的,该调制器可调制入射激光束的空间相位。采用了多种算法来计算针对LC-SLM的相位调制掩模。这些算法的范围从简单的光栅和透镜以生成多个受衍射限制的斑点到迭代傅立叶变换算法,这些算法都可以生成根据目标轮廓完美定制的任意照明形状。全息光图案化的应用包括多阱光学镊子,图案化的电压成像以及使用开孔或光遗传学对神经元激发进行光学控制。计算机生成的全息术的这些过去的实现方式使用二进制输入轮廓来在样本平面处生成二进制光分布。在这里,我们证明使用渐变输入源可以生成强度渐变的光图案,并扩展了全息光照明的应用范围。首先,我们使用强度梯度全息图来补偿LC-SLM位置依赖性衍射效率或样品荧光不均匀性。最后,我们证明强度梯度全息技术可用于均衡表达不同水平的香豆视紫红质2(ChR2)(一种最常用的光遗传学光门控通道之一)的细胞的光诱发电流,考虑到通道开口对入射光。

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