Browsing by Author Laird, Angela Susan

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Issue DateTitleAuthor(s)Citation
2014Mutant Human FUS Is Ubiquitously Mislocalized and Generates Persistent Stress Granules in Primary Cultured Transgenic Zebrafish CellsAcosta, Jamie; Badrock, Andrew; Blair, Ian; Cole, Nicholas; Don, Emily; Fifita, Jennifer; Fraser, Stuart; Goldsbury, Claire; Laird, Angela Susan; Nicholson, Garth; Winnick, Claire; Hall, Thomas E; School of Medical Sciences: Brain & Mind Research Institute; School of Medical Sciences: Bosch Institute; Concord Clinical School: ANZAC Research Institute; School of Medical Sciences: Anatomy & Histology; School of Medical Sciences: Anatomy & Histology; Concord Clinical School: Medicine; Physiology; School of Medical Sciences: Brain & Mind Research Institute; School of Medical Sciences: Brain & Mind Research Institute; Concord Clinical School: ANZAC Research Institute; School of Medical Sciences: PhysiologyMutant Human FUS Is Ubiquitously Mislocalized and Generates Persistent Stress Granules in Primary Cultured Transgenic Zebrafish Cells, PloS One, vol.9, 6, 2014,pp 1-9
2016Tissue-specific models of spinal muscular atrophy confirm a critical role of SMN in motor neurons from embryonic to adult stagesBecker, Thomas; Giacomotto, Jean Georges Marie; Laird, Angela Susan; Mackovski, Nikolce; Rinkwitz, Silke; School of Medical Sciences: Brain and Mind Centre; School of Medical Sciences: Brain and Mind Centre; School of Medical Sciences: Brain and Mind Centre; Concord Clinical School: ANZAC Research Institute; School of Medical Sciences: Brain and Mind CentreTissue-specific models of spinal muscular atrophy confirm a critical role of SMN in motor neurons from embryonic to adult stages, Human Molecular Genetics, vol.25, 9, 2016,pp 1728-1738
2016Tissue-specific models of spinal muscular atrophy confirm a critical role of SMN in motor neurons from embryonic to adult stagesBecker, Thomas; Giacomotto, Jean Georges Marie; Laird, Angela Susan; Mackovski, Nikolce; Rinkwitz, Silke; School of Medical Sciences: Brain and Mind Centre; School of Medical Sciences: Brain and Mind Centre; School of Medical Sciences: Brain and Mind Centre; Concord Clinical School: ANZAC Research Institute; School of Medical Sciences: Brain and Mind CentreTissue-specific models of spinal muscular atrophy confirm a critical role of SMN in motor neurons from embryonic to adult stages, Human Molecular Genetics, vol.25, 9, 2016,pp 1728-1738