Sort by
Refine Your Search
-
, Headington. The post is funded by the BRC4 Imaging Theme and is fixed-term until 31 March 2026, with the possibility of an extension. Endoscopy plays a vital role in the detection of gastrointestinal cancers
-
methods to study human bone marrow models using high content imaging approaches. You will lead in designing and establishing new protocols to the laboratory as well as supporting, mentoring and training
-
behavioural tests of memory and inference; and provide guidance to less experienced members of the research group including postdocs, research assistants, technicians, and PhD and project students. The post is
-
2022, PMID: 36462505). The research will be conducted in a friendly and supportive atmosphere with access to outstanding facilities and within a vibrant postdoc community. The applicant should hold, or
-
group, including postdocs, research assistants, technicians, and PhD and Masters project students if required. The post holder will develop quantum diamond microscopy (QDM) as a new paleomagnetic tool
-
2025. Interviews will be held as soon as possible thereafter. At the Dunn School we are committed to supporting the professional and career development of our postdocs and research staff. To help them
-
on single-agent settings. We are seeking a highly motivated postdoc to conduct research into this fast-moving area. Directions may include investigating quality evaluation methods for multi-agent systems
-
products (e.g. transcripts and proteins) and imaging analysis. The roles of relevant parasite genes and pathways are investigated using gene expression perturbation approaches, such as RNA interference and
-
vitro and cell-based approaches. In this endeavour the position is for a Postdoc with expertise in cell signalling pathways, protein biochemistry and in vitro cell biology. You will be responsible
-
that can validate those models are missing. This projects will address all, or some, of these challenges. We are looking for a postdoc to drive the development of an in-depth understanding of transport in