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DPAG's Dr Jakub Tomek and Professor Blanca Rodriguez's Computational Cardiovascular Science Team have developed a new computer model that recreates the electrical activity of the ventricles in a human heart. In doing so, they have uncovered and resolved theoretical inconsistencies that have been present in almost all models of the heart from the last 25 years and created a new human heart model that could enable more basic, translational and clinical research into a range of heart diseases and potentially accelerate the development of new therapies.

Cerebral blood flow as a mechanistic framework across neurological disease

Journal article

Patel S. et al, (2026), Discover Neuroscience, 21

Presynaptic SNAP25 supports maturation of hippocampal mossy fiber-CA3 synapses.

Journal article

Hayashi S. et al, (2026), iScience, 29

Deletion of Snap25 disrupts glial remodeling in aging mouse brain.

Journal article

Vadisiute A. et al, (2026), iScience, 29

Varicose projection astrocytes: Conserved reactive cells in brain pathology

Journal article

Ciani C. et al, (2026), Science Advances, 12

Beyond neurotoxicity: A new face of 6-hydroxydopamine in cancer immunity.

Journal article

Sarker G. and Domingos A., (2026), Neuron, 114, 2489 - 2491

Dopamine replacement therapy modulates DDC, prolactin and AOC3 levels in Parkinson's disease.

Journal article

van Hillegondsberg L. et al, (2026), NPJ Parkinsons Dis

TopoMetry systematically learns and evaluates the latent geometry of single-cell data

Journal article

Sidarta-Oliveira D. et al, (2026), eLife, 13

How physiology solves the gene-centric impasse.

Journal article

Noble D. and Bourret R., (2026), Exp Physiol

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