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Using a bioinformatics analysis pipeline we will investigate whether vaccination responses are affected by the microbiome profile, and whether it changes according to the vaccination sequence
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PhD Scholarship in ‘Using nanoparticles to enhance the immune response and improve vaccine efficacy’
This project will examine the immune response to vaccines using various nanoparticle formulations and determine how they interact with cells to generate a strong immune response, capable
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Work with immunologists, bioinformaticians and clinical trials to better understand the effects and long-term complications of COVID-19 on the immune system, or the response to COVID-19 vaccines in
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Domestic scholarship to recruit a new cohort of domestic students into HDR programs in COBL. Domestic scholarship to recruit a new cohort of domestic students into HDR programs in COBL. $33,826 per annum pro rata (full-time study) for 3.5 years $33,826 per annum pro rata (full-time study) for...
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with tuition fee waiver. Two scholarships available Two scholarships available Satisfy RMIT University’s Doctor of Philosophy entry requirements. Candidates with excellent written and communication
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Optimizing a 3D microfluidic IVD model to study cell responses to wear particles, refining culture conditions, and analysing cytotoxic and inflammatory mechanisms. Optimizing a 3D microfluidic IVD
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backgrounds can also apply. To be eligible for this scholarship, you must: Meet the entry requirements for the Doctor of Philosophy Meet research scholarship eligibility criteria. Please send expressions
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for the Doctor of Philosophy. Potential candidates need to send the following documents to Associate Professor Asgar Farahnaky via asgar.farahnaky@rmit.edu.au A cover letter (research statement) A copy of
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for the Doctor of Philosophy. and Be judged to be highly competitive for RMIT PhD scholarships, having achieved high distinction (80+%) over the final two years of their studies. Note that, although supported by
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systems for studying the response of mechano-sensitive cells inside blood vessel under customised physiological and pathological conditions. The microfluidic system consists of a network of semi-circular