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scripting methods (i.e. Python, MATLAB, C++, CUDA, Bash, and/or SQL) and machine learning / deep learning methods Active learning, exploration, optimal experiment design, Bayesian optimization, reinforcement
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., MATLAB, Python) and statistical data analysis. Strong background in lipid nanoparticle systems and RNA delivery technologies is highly desirable. Experience in developing novel imaging assays and analyzing
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) would be an asset Experience in utilizing programming/coding such as Python or Matlab would be an asset A clinical background (e.g., physical therapy, occupational therapy, medicine) would be an asset
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techniques (e.g., transcutaneous magnetic stimulation, near infrared spectroscopy, evoked potentials, electromyography) would be an asset Experience in utilizing programming/coding such as Python or Matlab
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spectroscopy, evoked potentials, electromyography) would be an asset Experience in utilizing programming/coding such as Python or Matlab would be an asset A clinical background (e.g., physical therapy
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-performance computing Experience in design of computational pipelines for large-scale imaging Experience with programming languages and scripting methods (i.e. Python, MATLAB, C++, CUDA, Bash, and/or SQL) and
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with molecular biology, scRNAseq/ATACseq, in vivo 2-photon live imaging, and mouse behavior Experience with coding is an asset (e.g., R, Python, MATLAB). Ability to work independently and as part of a
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-photon live imaging, and mouse behavior Experience with coding is an asset (e.g., R, Python, MATLAB). A strong track record with neuroscience research in peer-reviewed journals. Ability to work
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asset (e.g., Python, MATLAB). A strong track record with neuroscience research in peer-reviewed journals. Ability to work independently and as part of a collaborative team. The researcher will join
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focus on memory and social cognition. Experience with multi-level analytical models is preferred. Furthermore, the candidate must have demonstrated proficiency in Psychopy, Matlab, R, E-Prime and Tobii