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mitochondrial dynamics in neurons and associated glia in Drosophila. • We utilize reverse genetics, optogenetics, CRISPR/Cas9 mutagenesis, transgenesis, confocal microscopy, and behavioral readouts
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Scheduled Hours 40 Position Summary Performs innovative data analyses on neuroimaging and related data. Develop and implement computer algorithms for analyzing that data. Assume major responsibility
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-generation imaging technologies to map the molecular and structural architecture of the brain with nanoscale precision. We integrate Expansion Microscopy (ExM) with neurobiology to uncover mechanisms
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(CAMCOR), which provides advanced materials characterization and electron microscopy for both academic and industrial users, Genomics and Cell Characterization Core Facility (GC3F), which provides cutting
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arrival date of the university central mail service or the time stamp on the email server of TUD applies), preferably via the TUD SecureMail Portal https://securemail.tu-dresden.de by sending it as a
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of spectrometry, electron microscopy and other novel techniques for detailed characterization of carbon-based and polymer–carbon composite materials. The research purpose is to provide the possibility of using
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-electron microscopy (cryo-EM) and tomography (cryo-ET) are performed. The group values a collegial and supportive research environment, with open communication, structured mentoring, and a strong emphasis on
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engineering, longitudinal microscopy, and stem cell biology. In a complementary fashion, the Mosalaganti lab uses cryo-electron tomography, correlative light, and electron microscopy approaches to elucidate
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electrophoresis, fluorescence microscopy, PCR and Real-Time PCR). Teaching experience in conducting laboratory classes at a university. Experience in the implementation of research grants as a principal
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assessing zooplankton–cyanobacteria interactions., Analyse cyanobacterial morphology using microscopy, Learn to prepare samples for mass spectrometry analysis, Assess strain-specific effects of zooplankton