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in neurotechnology (examples include brain-machine interface, neural prosthetics, gene-based neuromodulation etc.). The director is expected to develop and advance the NTICe mission to develop novel
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the reward system in ways not yet fully mapped. The field lacks a clear mechanistic understanding of which neuronal subtypes across which brain regions are critical to manifesting anhedonia. We invite bold
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sequences that support specialized applications such as functional MRI and diffusion tensor imaging. An intuitive user-friendly interface simplifies operation and offers quieter operation and comfortable
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dispatching first responders. DPS receives 4,700+ emergency and 33,000+ non-emergency calls annually. There are nearly 2 million campus-wide radio transmissions annually and 98,500+ Computer-Aided Dispatch
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electronic health record (EHR) data. The individual will join a dynamic, interdisciplinary team in the Stanford Department of Otolaryngology–Head & Neck Surgery, with access to the university’s rich ecosystem
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applications for a Doctoral student position in applied mathematics and machine learning for urban 3D reconstruction, within the Digital Twin Cities Centre (DTCC). The project aims to create analysis‑ready
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neuroscience, and machine learning in an effort to discover algorithmic principles that bridge artificial and natural intelligence and link brains to intelligent machines. The goal of the team is to understand
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behavioral inputs using tools such as brain-computer interfaces, neurofeedback systems, wearable sensors, virtual reality, or augmented reality. Evidence of potential for securing extramural funding
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and intellectual capacity. Attends to patient needs and ensures patient safety at all times. Prepares patient for electrode placement, marks and measures the head accurately according
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Scheduled Hours 40 Position Summary The Cremins lab works at the spatial biology-technology interface to understand chromatin-to-synapse communication during neural circuit activation in