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of optics or imaging: Fluroescent microscropy Two-photon imaging or stimulation Holography using Spatial Light Modulators Fluorecent lifetime imaging Femtosecond lasers Familiarity with neuroscience
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engineering (CRISPR/Cas9, Gal4/UAS), including the generation of genetic tools in non-model Drosophila species; single-cell genomics (scRNA-seq and single-cell ATAC-seq); in vivo functional imaging (two-photon
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biology and cell culture is also desirable. Seeking qualified candidates with experience in the following biomedical engineering fields: Biomedical photonics/optoelectronics Biomedical nano- and microscale
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Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig | Leipzig, Sachsen | Germany | 3 months ago
and optical prospective motion correction setup. The preferred starting date is January 1, 2027. The position is coupled to a third party funded project (Photonic quantum sensing for the diagnosis
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. For more information about working at the University of Arizona and relocations services, please click here . Duties & Responsibilities Develop novel photopolymer resins for two-photon polymerization (TPP
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, quantum science, condensed matter, materials, photonics and interdisciplinary applications of physical science. This role sits within a collaborative quantum science project at King’s on quantum algorithms
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experimental quantum communications, photonics, or optical systems. Extensive hands-on experience with experimental optics, free-space and/or fiber, and the characterization of quantum communication systems In
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chemistry, photonics, laser physics or a closely related field, completed by the starting date A strong publication record demonstrating independent experimental research Substantial hands-on experience in
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Preferred qualifications: History of performing difficult measurements Experience in one or more of the following areas of optics or imaging: fluorescent microscopy, two-photon imaging or stimulation
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network excitability following traumatic brain injury using a variety of techniques, including in vivo whole-cell recording and two-photon microscopy, brain slice physiology, and genetic manipulation