| Literature DB >> 28253377 |
Chia-Kai Chang1, Chien-Chung Tsai1, Wan-Yi Hsu1, Jau-Shiuh Chen2, Yi-Hua Liao2, Yi-Shuan Sheen2, Jin-Bon Hong2, Ming-Yi Lin2, Jeng-Wei Tjiu2, Sheng-Lung Huang1.
Abstract
A random rayburst sampling (RRBS) framework was developed to detect the nucleus and cell membrane boundaries in three-dimensional (3-D) space. Raw images were acquired through a full-field optical coherence tomography system with submicron resolution—i.e., 0.8 ?? ? m in lateral and 0.9 ?? ? m in axial directions. The near-isometric resolution enables 3-D segmentation of a nucleus and cell membrane for determining the volumetric nuclear-to-cytoplasmic (N/C) ratio of a single cell. The RRBS framework was insensitive to the selection of seeds and image pixel noise. The robustness of the RRBS framework was verified through the convergence of the N/C ratio searching algorithm. The relative standard deviation of the N/C ratio between different randomly selected seed sets was only 2%. This technique is useful for various in vitro assays on single-cell analyses.Mesh:
Year: 2017 PMID: 28253377 DOI: 10.1117/1.JBO.22.3.036003
Source DB: PubMed Journal: J Biomed Opt ISSN: 1083-3668 Impact factor: 3.170