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addressing prototype and its integration into existing robotic structures developed at LIRMM (Montpellier – France); realization of a compact soft robotic prototype. - Control Development of sequential control
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including cognitive assessment, neuropsychology, psychophysical testing, eye-movement monitoring, structural and functional magnetic resonance imaging, transcranial magnetic stimulation, and genomic assays
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Paris to develop an optimised data processing pipeline for detecting and measuring very faint surface brightness in Euclid mission images. The following four areas will be explored: the properties
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ABIF can be found at: http://www.mcgill.ca/abif. Primary Responsibilities 1. Technical Development & Innovation Lead and document quality control (QC) workflows for ABIF imaging systems, including
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University of California Riverside School of Medicine | Riverside, California | United States | 1 day ago
contacting: aobenaus@medsch.ucr.edu We are recruiting for the following areas: Vascular physiology: This position will use modern in vivo imaging (miniscopes, 2-photon, magnetic resonance imaging
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biology. This project builds on a key experimental barrier that we have overcome, enabling the rapid generation of high-impact structural data on bacterial secretion systems. Where to apply Website https
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-wavelength excitation) in to the current waveguide chip settings. further develope microfluidics for controlled fluidic exchange allowing for kinetic measurements and to enhance data-driven image analysis
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monitoring, structural and functional magnetic resonance imaging, transcranial magnetic stimulation, and genomic assays. Duties involve research study design, participant recruitment, data collection, data
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projects integrating omics, clinical and medical imaging data, contributing to biomarker identification and the development of computational approaches for healthcare. Key responsibilities include analysis
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• Establishment of optogenetic systems: development and validation of an Opto-TBRA system for its controlled activation. 4. Analysis of collective behaviors • Real-time imaging: Use of confocal and multiphoton