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KOEHLER INTEGRATOR DEVICE AND APPLICATION THEREOF IN A MULTI-FOCAL CONFOCAL MICROSCOPE

机译:Koehler Integrator设备及其应用在多焦共杂化显微镜中

摘要

A Koehler integrator device (10) comprises a collimating lens (11) being arranged for collimating a light field created by an incoherent or partially coherent light source, a pair of planar first and second micro-lens arrays (12, 13) being arranged for relaying portions of the collimated light field along separate imaging channels, wherein all micro-lenses of the first and second micro-lens arrays (12, 13) have an equal micro-lens focal length and pitch and the micro-lens arrays (12, 13) are arranged with a mutual distance equal to the micro-lens focal length, and a collecting Fourier lens (4) having a Fourier lens diameter and a Fourier lens focal length defining a Fourier lens front focal plane and a Fourier lens back focal plane, wherein the Fourier lens (14) is arranged for superimposing light from all imaging channels in the Fourier lens front focal plane and wherein the second micro-lens array (13) is arranged in the Fourier lens back focal plane, wherein a third micro-lens array (15) is arranged in the Fourier lens front focal plane for creating a wavelength independent array of illumination spots. Furthermore, a confocal microscope apparatus, which comprises the Koehler integrator device, and a method of using the confocal microscope apparatus are described.
机译:Koehler积分器装置(10)包括准直透镜(11),该准直透镜(11)布置成用于准直由不相干或部分相干的光源产生的光场,这是布置成的一对平面的第一和第二微透镜阵列(12,13)沿着单独的成像通道的准直光场的中继部分,其中第一和第二微透镜阵列(12,13)的所有微透镜具有相等的微透镜焦距和间距和微透镜阵列(12, 13)布置成相互距离等于微透镜焦距的相互距离,以及具有傅里叶透镜直径的收集傅里叶透镜(4)和傅里叶透镜焦距,限定傅里叶透镜前焦距平面和傅里叶透镜后焦平面其中傅里叶透镜(14)布置用于叠加来自傅里叶透镜前焦平面中的所有成像通道的光,并且其中第二微透镜阵列(13)布置在傅里叶透镜后焦平面中,其中第三微型镜头阵列(15)布置在傅里叶透镜前焦平面中,用于产生波长独立的照明斑点阵列。此外,描述了包括Koehler积分器装置的共聚焦显微镜装置,以及使用共聚焦显微镜装置的方法。

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