Zhang Yong, Zhou Xiaobo, Degterev Alexei, Lipinski Marta, Adjeroh Donald, Yuan Junying, Wong Stephen T C
Center for Bioinformatics, Harvard Center for Neurodegeneration and Repair, Harvard Medical School, Boston, MA 02215, United States.
J Neurosci Methods. 2007 Feb 15;160(1):149-62. doi: 10.1016/j.jneumeth.2006.07.028. Epub 2006 Sep 20.
High throughput neuron image processing is an important method for drug screening and quantitative neurobiological studies. The method usually includes detection of neurite structures, feature extraction, quantification, and statistical analysis. In this paper, we present a new algorithm for fast and automatic extraction of neurite structures in microscopy neuron images. The algorithm is based on novel methods for soma segmentation, seed point detection, recursive center-line detection, and 2D curve smoothing. The algorithm is fully automatic without any human interaction, and robust enough for usage on images with poor quality, such as those with low contrast or low signal-to-noise ratio. It is able to completely and accurately extract neurite segments in neuron images with highly complicated neurite structures. Robustness comes from the use of 2D smoothening techniques and the idea of center-line extraction by estimating the surrounding edges. Efficiency is achieved by processing only pixels that are close enough to the line structures, and by carefully chosen stopping conditions. These make the proposed approach suitable for demanding image processing tasks in high throughput screening of neuron-based assays. Detailed results on experimental validation of the proposed method and on its comparative performance with other proposed schemes are included.
高通量神经元图像处理是药物筛选和定量神经生物学研究的重要方法。该方法通常包括神经突结构检测、特征提取、量化和统计分析。在本文中,我们提出了一种用于在显微镜神经元图像中快速自动提取神经突结构的新算法。该算法基于用于胞体分割、种子点检测、递归中心线检测和二维曲线平滑的新方法。该算法完全自动,无需任何人工干预,并且足够健壮,可用于处理质量较差的图像,例如对比度低或信噪比低的图像。它能够在具有高度复杂神经突结构的神经元图像中完整准确地提取神经突段。健壮性来自于二维平滑技术的使用以及通过估计周围边缘进行中心线提取的思想。效率是通过仅处理与线结构足够接近的像素以及精心选择的停止条件来实现的。这些使得所提出的方法适用于基于神经元的检测的高通量筛选中要求苛刻的图像处理任务。文中还包括了所提出方法的实验验证的详细结果及其与其他提出的方案的比较性能。