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The distortion analysis and correction of two-dimensional scanning system in laser differential confocal microscopy

机译:激光差分共聚焦显微镜中二维扫描系统的失真分析与校正

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Laser differential confocal microscopy (DCM) is widely applied to many fields as an important analysis and measurement approach for its high-resolution imaging capability and unique section imaging capability. Differential confocal microscopy needs a scanning system to achieve the imaging due to its zero-field imaging property. So two-dimension vibrating mirror scanning system with fast-speed positioning and high response frequency is wildly used for fast speed scanning system. . However, the two-dimension vibrating mirror scanning system may bring the distortion to the image. Therefore, a mathematic model of the distortion for two-dimension vibrating mirror scanning system is built in this paper. And an inverse function method for correction is put forward and the corresponding theory simulation has been done using MatLab. The proposed method can be operated easily and understood easily, and can be applied to large-scale calculation correction, which can provide an effective way to correct the distortion of two-dimension vibrating mirror scanning system.
机译:激光差分共聚合显微镜(DCM)广泛应用于许多领域,作为其高分辨率成像能力和唯一截面成像能力的重要分析和测量方法。差分共聚焦显微镜需要扫描系统,以实现由于其零场成像性能而实现的成像。因此,具有快速定位和高响应频率的两维振动镜扫描系统对于快速扫描系统,具有较快的速度定位和高响应频率。 。然而,两维振动镜扫描系统可以使图像变形。因此,本文建立了二维振动镜扫描系统的变形的数学模型。提出了一种校正的逆功能方法,并使用MATLAB完成了相应的理论模拟。所提出的方法可以容易地操作并容易地理解,并且可以应用于大规模计算校正,这可以提供校正二维振动镜扫描系统的失真的有效方法。

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