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tumor spatial biology via single cell spatial analysis of the tumor microenvironment. Projects aim to reveal molecular mechanisms of drug resistance based on intercellular and intracellular regulation
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of a dynamic team at Stanford University, exploring the fundamental mechanisms driving pulmonary arterial hypertension (PAH)? Our laboratory is dedicated to uncovering the genetic and molecular
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immune escape mechanisms in liver cancer. • Identifying immune checkpoints and novel therapeutic targets. • Characterizing tumor-immune interactions using spatial and single-cell multiomics. • Developing
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understand fundamental mechanisms. Required Application Materials: CV Contact information for three referees Stanford is an equal opportunity employer and all qualified applicants will receive consideration
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theoretical modeling, remote imaging, and direct observation. Our research has both fundamental and applied elements. The successful candidate will demonstrate exceptional academic achievement and promise, and
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or involved in RAPID surveys. This project constitutes a critical component of the New Ecology of Early Childhood (link is external) being developed at SCEC. Key Responsibilities: Conduct statistical analyses
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factor. However, non-U.S. scholars must be eligible for a J-1 visa, (with sponsorship from Stanford). Exceptions must be discussed with program administration. Email energy_postdoctoral_fellowship
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psychology) or related discipline. Demonstrated interest in measurement of psychological constructs and study of change. Substantial experience with latent variable models (especially factor analysis, item
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at Stanford University School of Medicine. We seek a highly creative and motivated scientist to perform cutting-edge immunology research to overcome resistance mechanisms identified in patients receiving
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mechanisms through which the tumor microenvironment impacts tumor invasion and metastatic progression, using high-throughput data derived from cellular subpopulations within tumors. The individual will work