返回
BSSE: An open-source image processing tool for miniaturized microscopy
DOI:10.1364/OE.27.017620.png)
摘要
En 中文
Single-photon-excitation-based miniaturized microscope, or miniscope, has recently emerged as a powerful tool for imaging neural ensemble activities in freely moving animals. In the meanwhile, this highly flexible and implantable technology promises great potential for studying a broad range of cells, tissues and organs. To date, however, applications have been largely limited by the properties of the imaging modality. It is therefore highly desirable for a method generally applicable for processing miniscopy images, enabling and extending the applications to diverse anatomical and functional traits, spanning various cell types in the brain and other organs. We report an image processing approach, termed BSSE, for background suppression and signal enhancement for miniscope image processing. The BSSE method provides a simple, automatic solution to the intrinsic challenges of overlapping signals, high background and artifacts in miniscopy images. We validated the method by imaging synthetic structures and various biological samples of brain, tumor, and kidney tissues. The work represents a generally applicable tool for miniscopy technology, suggesting broader applications of the miniaturized, implantable and flexible technology for biomedical research. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
Keyword:
NEURONAL-ACTIVITY
CENTRAL AMYGDALA
NEUROPILIN 1
CALCIUM
MICROGLIA
CELLS
期刊
IF:
3.3
论文数:
6.1W
被引数:
14.3W
机构
引用论文
Simultaneous Denoising, Deconvolution, and Demixing of Calcium Imaging Data钙成像数据的同时去噪,去卷积和去混合
NEURON
IF15
Impact of the Timing and Temperature of Malolactic Fermentation on the Aroma Composition and Mouthfeel Properties of Chardonnay Wine
Foods
IF0
Efficient and accurate extraction of in vivo calcium signals from microendoscopic video data
eLife
IF0
Quantitative mapping and minimization of super-resolution optical imaging artifacts
NATURE METHODS
IF32.1

