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At the Faculty of Engineering and Science, Department of Materials and Production a position as PhD stipend in Muscle Neuromechanics and Ultrasound Imaging, within the doctoral programme Materials
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Current reseach is in the areas of: Development of biomimetic structures as ultrasound contrast agents Deep tissue imaging using photoacoustic contrast agents All optical photoacoustic sensors
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, and assess their on treatment efficacy. What you will gain: Hands-on experience on SARRP and in vivo imaging modalities (CT, IVIS, ultrasound) Expertise in diet-induced fibrosis and surgical tumour
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-on experience on SARRP and in vivo imaging modalities (CT, IVIS, ultrasound) Expertise in diet-induced fibrosis and surgical tumour models Image analysis, IHC, flow-cytometry Industrial experience with Xstrahl
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outcomes. We work closely with academics from other department’s in the school for example The Department of Early Life Imaging. About the School: The School of Biomedical Engineering & Imaging Sciences is
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modulating brain activity. Briefly, Focused Ultrasound has recently emerged as a ground-breaking new non-invasive, image-guided therapy to treat Essential Tremor (ET) and Parkinson’s Disease (PD). While it is
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expenditure (OPEX). Various technologies that can be used for CM of low-speed bearings are available on the market, which can be divided into vibration- and ultrasound/acoustic emission (AE)-based technologies
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Testing (NDT) – a crucial technique used in industries to assess materials, components, and structures without causing damage. This PhD project focuses on advancing Ultrasound Testing and X-ray Computed
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for these infants. Structural brain imaging with cranial ultrasound (CUS) and magnetic resonance imaging (MRI) remain the traditional means of neurological assessment but are limited in their ability to reliably
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This project will evaluate the effect of transcranial ultrasound stimulation (TUS) of primary sensory cortex (visual and auditory) on perception. Combining structural and functional MRI, neuro-navigated TUS