The atlas of trace metals in the mouse brain: a new tool for neuroscientists. This project will produce the first atlas of trace metals in the mouse brain: a set of 'maps' of a type of brain often used to study diseases affecting the human brain. This online resource will show neuroscientists unprecedented 3D detail of the distribution in the brain of trace metals, which are implicated in such diseases as Parkinson's and Alzheimer's.
Genetic and molecular basis of appendicular muscle formation. Fin and limb muscles are generated in the embryo by a series of cell movements and gene regulatory events that are distinct to those that regulate the formation of the rest of the muscles of the body. This project aims to use the genetic advantages of zebrafish to determine how genes regulate fin and consequently limb muscle formation.
Design features for correct use of child car restraints. This project aims to minimise incorrect use of child restraints, which triple the risk of injury to children in car crashes. One in two children travelling in cars are incorrectly restrained. Using naturalistic and epidemiological studies, this project will characterise child restraint design features that minimise errors related to the real world interaction between restraint design, parents and children, and determine the effectiveness o ....Design features for correct use of child car restraints. This project aims to minimise incorrect use of child restraints, which triple the risk of injury to children in car crashes. One in two children travelling in cars are incorrectly restrained. Using naturalistic and epidemiological studies, this project will characterise child restraint design features that minimise errors related to the real world interaction between restraint design, parents and children, and determine the effectiveness of using optimally designed restraints. This research will help child restraint manufacturers to improve their products and design better child restraint systems, that reduce injury to children in crashes.Read moreRead less
Endocardial sprouting and mechano-signalling in heart trabeculation. This project aims to understand how the ventricles, the pumping chambers of the mammalian heart, form during embryonic life. Critical is the elaboration of trabeculae, myocardial projections that form a sponge-like layer on the inner surface of the chamber wall and which play vital roles in contraction, oxygen and nutrient exchange, conduction and septation. The project expects to develop a deeper understanding of trabeculation ....Endocardial sprouting and mechano-signalling in heart trabeculation. This project aims to understand how the ventricles, the pumping chambers of the mammalian heart, form during embryonic life. Critical is the elaboration of trabeculae, myocardial projections that form a sponge-like layer on the inner surface of the chamber wall and which play vital roles in contraction, oxygen and nutrient exchange, conduction and septation. The project expects to develop a deeper understanding of trabeculation using high resolution, single cell methodologies, and to investigate how bio-mechanical forces from contraction or blood flow influence chambers formation.Read moreRead less