Automatic imaging of Drosophila embryos with light sheet fluorescence microscopy on chip.
Roberto MemeoPetra PaièFederico SalaMichele CastriottaChiara GuercioThomas VaccariRoberto OsellameAndrea BassiFrancesca BragheriPublished in: Journal of biophotonics (2020)
We present a microscope on chip for automated imaging of Drosophila embryos by light sheet fluorescence microscopy. This integrated device, constituted by both optical and microfluidic components, allows the automatic acquisition of a 3D stack of images for specimens diluted in a liquid suspension. The device has been fully optimized to address the challenges related to the specimens under investigation. Indeed, the thickness and the high ellipticity of Drosophila embryos can degrade the image quality. In this regard, optical and fluidic optimization has been carried out to implement dual-sided illumination and automatic sample orientation. In addition, we highlight the dual color investigation capabilities of this device, by processing two sample populations encoding different fluorescent proteins. This work was made possible by the versatility of the used fabrication technique, femtosecond laser micromachining, which allows straightforward fabrication of both optical and fluidic components in glass substrates.
Keyphrases
- high resolution
- deep learning
- high throughput
- high speed
- single molecule
- image quality
- machine learning
- circulating tumor cells
- optical coherence tomography
- convolutional neural network
- mass spectrometry
- label free
- computed tomography
- single cell
- living cells
- energy transfer
- tissue engineering
- fluorescence imaging
- genetic diversity
- contrast enhanced
- fluorescent probe