Robust autofocusing in microscopy.

Cytometry Pub Date : 2000-01-01
J M Geusebroek, F Cornelissen, A W Smeulders, H Geerts
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引用次数: 0

Abstract

Background: A critical step in automatic microscopy is focusing. This report describes a robust and fast autofocus approach useful for a wide range of microscopic modalities and preparations.

Methods: The focus curve is measured over the complete focal range, reducing the chance that the best focus position is determined by dust or optical artifacts. Convolution with the derivative of a Gaussian smoothing function reduces the effect of noise on the focus curve. The influence of mechanical tolerance is accounted for.

Results: The method is shown to be robust in fluorescence, bright-field and phase contrast microscopy, in fixed and living cells, as well as in fixed tissue. The algorithm was able to focus accurately within 2 or 3 s, even under extremely noisy and low contrast imaging conditions.

Conclusions: The proposed method is generally applicable in light microscopy, whenever the image information content is sufficient. The reliability of the autofocus method allows for unattended operation on a large scale.

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强大的自动聚焦显微镜。
背景:自动显微镜的一个关键步骤是聚焦。本报告描述了一个强大的和快速的自动聚焦方法,适用于广泛的微观模式和制备。方法:在整个焦距范围内测量焦距曲线,减少因灰尘或光学伪像而确定最佳焦距的机会。利用高斯平滑函数的导数进行卷积,减小了噪声对聚焦曲线的影响。考虑了机械公差的影响。结果:该方法在荧光显微镜、明场显微镜和相衬显微镜、固定细胞和活细胞以及固定组织中具有较强的稳定性。该算法能够在2或3秒内准确对焦,即使在非常嘈杂和低对比度的成像条件下。结论:该方法一般适用于光学显微镜,只要图像信息含量足够。自动对焦方法的可靠性允许无人值守的大规模操作。
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