Real-time 3D interactive microscopy. Bianchi, S. & Di Leonardo, R. 2019. cited By 0Paper abstract bibtex Holographic Microscopy allows for 3D visualization of colloidal/biological samples with a high framerate. We developed a 3-axis version of HM which significantly improves the axial resolution. Using GPUs we are able to analyze the holograms in real time and track objects over a large field of view. Combimng this technique with optical traps we can achieve a full 3D interaction with the sample. © 2019 SPIE.
@CONFERENCE{Bianchi2019,
author={Bianchi, S. and Di Leonardo, R.},
title={Real-time 3D interactive microscopy},
journal={Proceedings of SPIE - The International Society for Optical Engineering},
year={2019},
volume={11140},
art_number={1114001-120},
note={cited By 0},
url={https://www.scopus.com/inward/record.uri?eid=2-s2.0-85065726431&partnerID=40&md5=25b0ab9a0f8e1872461530dc5ed753ed},
abstract={Holographic Microscopy allows for 3D visualization of colloidal/biological samples with a high framerate. We developed a 3-axis version of HM which significantly improves the axial resolution. Using GPUs we are able to analyze the holograms in real time and track objects over a large field of view. Combimng this technique with optical traps we can achieve a full 3D interaction with the sample. © 2019 SPIE.},
editor={Yatagai T.},
publisher={SPIE},
issn={0277786X},
coden={PSISD},
document_type={Conference Paper},
source={Scopus},
}
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