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magnetic microscopes for contactless imaging of the magnetic field induced in biological tissue samples. Our aim is to build the world’s fastest, most sensitive microscope capable of resolving magnetic
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-resolved optical spectroscopy, microscopy and imaging; confocal and multiphoton microscopy; multispectral/hyperspectral optical imaging; nonlinear optical spectroscopy and imaging techniques), Biophotonics
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/Administrative Internal Number: 25518 RESEARCH SCIENTIST 3, CHUNG LAB, Picower Institute for Learning and Memory, is a pivotal role responsible for generating spatial transcriptomic and proteomic optical imaging
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/Administrative Internal Number: 25519 RESEARCH SCIENTIST 1, CHUNG LAB, Picower Institute for Learning and Memory, is a pivotal role responsible for generating spatial transcriptomic and proteomic optical imaging
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Computational , Astrophysics Experiment , Astrophysics Theory , ATLAS , Atomic Molecular and Optical Physics , Atomic Physics , Atomic, Molecular, and Optical Physics , atomic-molecular-optical physics , Atomic
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the field of optics and photonics. The team is working in the Photonic axis and is developing novel optical imaging techniques for biology. In particular, Pierre Bon is developing novel label imaging
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or inherited retinal diseases. • Experience with mouse eye imaging and electrophysiology (ERG). • Experience with stem cell culture or retinal organoids. What We Offer • A collaborative, translational
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anode generator, and a mar345 Image Plate detector. An Osmic VariMax optics system and the Proteros Free Mounting System can be used to control the humidity and optimize diffraction characteristics
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unexplored intersection between social cognition, attentional processing, and gaze perception. We use several different methods, including functional magnetic brain imaging (fMRI), behavioral and
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Posting Description RESEARCH SCIENTIST 3, CHUNG LAB, Picower Institute for Learning and Memory, is a pivotal role responsible for generating spatial transcriptomic and proteomic optical imaging data