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the precise gene activity and cell-cell interaction between the developing embryo and maternal endometrium. This work addresses a critical factor in human reproduction, as implantation failure remains a major
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of allergic responses or life-threatening anaphylaxis with factor IX re-exposure, but the cause of this response is not known. To better understand the mechanisms driving allergic and anaphylactic responses
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looking for postdoctoral fellows to study mechanisms of intracellular signal integration through G protein-coupled receptors (GPCRs) using cutting edge mass spectrometry-based proteomics, functional
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their skills in translational biomedical innovation with potential impact in both academic and industrial settings. Required Qualifications: PhD in bioengineering, biomedical engineering, mechanical engineering
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, Stanford PRL), career development resources, and competitive benefits and salary commensurate with experience. Required Qualifications: PhD in physics, electrical engineering, mechanical engineering
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community on a variety of projects such as: mechanisms for fair allocation under uncertainty, such as teacher assignment, program/facility location, and resource augmentation or reduction information
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migration. Future directions include: Dissecting the molecular mechanisms driving 3’UTR/CDS expression switches Functional studies of candidate 3’UTRs in neural development using human organoids or in cancer
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personalized learning experiences that are both effective and engaging. The first component of this work is to develop AI-augmented tools that enable elementary school-aged children to rapidly create
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the field of dermatology, leveraging epidemiology, data science, and public health to advance health equity. Leandra A. Barnes, MD is an NIH-funded K scholar committed to elucidating the underlying mechanisms
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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