Madeline Lancaster
#62,055
Most Influential Person Now
American developmental biologist
Madeline Lancaster's AcademicInfluence.com Rankings
Madeline Lancasterbiology Degrees
Biology
#2626
World Rank
#4140
Historical Rank
Developmental Biology
#150
World Rank
#158
Historical Rank
Download Badge
Biology
Why Is Madeline Lancaster Influential?
(Suggest an Edit or Addition)According to Wikipedia, Madeline Lancaster is an American developmental biologist studying neurological development and diseases of the brain. Lancaster is a group leader at the Medical Research Council Laboratory of Molecular Biology in Cambridge, UK.
Madeline Lancaster's Published Works
Published Works
- Cerebral organoids model human brain development and microcephaly (2013) (3092)
- Organogenesis in a dish: Modeling development and disease using organoid technologies (2014) (1731)
- Generation of cerebral organoids from human pluripotent stem cells (2014) (954)
- Human cerebral organoids recapitulate gene expression programs of fetal neocortex development (2015) (761)
- Guided self-organization and cortical plate formation in human brain organoids (2017) (487)
- Mutations in CEP290, which encodes a centrosomal protein, cause pleiotropic forms of Joubert syndrome (2006) (387)
- Cerebral organoids at the air-liquid interface generate diverse nerve tracts with functional output (2018) (295)
- SARS-CoV-2 Infects the Brain Choroid Plexus and Disrupts the Blood-CSF Barrier in Human Brain Organoids (2020) (289)
- Induction of Expansion and Folding in Human Cerebral Organoids. (2017) (287)
- Cerebral Organoids Recapitulate Epigenomic Signatures of the Human Fetal Brain. (2016) (261)
- Self‐organized developmental patterning and differentiation in cerebral organoids (2017) (254)
- Stem Cell Models of Human Brain Development. (2016) (252)
- Subcellular Spatial Regulation of Canonical Wnt Signaling at the Primary Cilium (2011) (244)
- Dishing out mini-brains: Current progress and future prospects in brain organoid research (2016) (225)
- Disease modelling in human organoids (2019) (207)
- Impaired Wnt–β-catenin signaling disrupts adult renal homeostasis and leads to cystic kidney ciliopathy (2009) (172)
- Human CNS barrier-forming organoids with cerebrospinal fluid production (2020) (172)
- The primary cilium as a cellular signaling center: lessons from disease. (2009) (153)
- Non-model model organisms (2017) (152)
- Defective Wnt-dependent cerebellar midline fusion in a mouse model of Joubert syndrome (2011) (147)
- Spindle orientation in mammalian cerebral cortical development (2012) (143)
- Brain organoids for the study of human neurobiology at the interface of in vitro and in vivo (2020) (108)
- AHI1 is required for outer segment development and is a modifier for retinal degeneration in nephronophthisis (2010) (106)
- Population-scale single-cell RNA-seq profiling across dopaminergic neuron differentiation (2020) (101)
- Rethinking organoid technology through bioengineering (2020) (98)
- An early cell shape transition drives evolutionary expansion of the human forebrain (2020) (90)
- Cystic kidney disease: the role of Wnt signaling. (2010) (87)
- Probing human brain evolution and development in organoids. (2017) (80)
- Creating Patient-Specific Neural Cells for the In Vitro Study of Brain Disorders (2015) (76)
- Comprehensive comparative analysis of 5’ end RNA sequencing methods (2018) (72)
- Generation and long-term culture of advanced cerebral organoids for studying later stages of neural development (2020) (66)
- Brain Organoids: Human Neurodevelopment in a Dish. (2019) (53)
- Brain organoids get vascularized (2018) (28)
- Genetic correlates of phenotypic heterogeneity in autism (2020) (26)
- A nomenclature consensus for nervous system organoids and assembloids (2022) (24)
- Understanding the role of steroids in typical and atypical brain development: Advantages of using a “brain in a dish” approach (2018) (23)
- A Simple Method of Generating 3D Brain Organoids Using Standard Laboratory Equipment. (2017) (23)
- Exploring landscapes of brain morphogenesis with organoids (2018) (19)
- SARS-CoV-2 infects brain choroid plexus and disrupts the blood-CSF-barrier (2020) (17)
- Guided self-organization recapitulates tissue architecture in a bioengineered brain organoid model (2016) (11)
- Electron cryo-tomography reveals the subcellular architecture of growing axons in human brain organoids (2021) (11)
- Publisher Correction: Guided self-organization and cortical plate formation in human brain organoids (2018) (8)
- Voices in methods development (2019) (6)
- Modeling neurodegeneration with mutant-tau organoids (2021) (6)
- The genetics of cortical organisation and development: a study of 2,347 neuroimaging phenotypes (2022) (6)
- An Electric Take on Neural Fate and Cortical Development. (2019) (6)
- Androgens increase excitatory neurogenic potential in human brain organoids (2022) (5)
- Brain organoids: A new frontier of human neuroscience research. (2020) (4)
- Crinkle-Cut Brain Organoids. (2018) (4)
- The supramolecular landscape of growing human axons (2020) (3)
- Male sex hormones increase excitatory neuron production in developing human neocortex (2020) (3)
- Voices of biotech research (2021) (3)
- Breaking the barrier: In vitro models to study choroid plexus development. (2021) (2)
- Author Correction: Comprehensive comparative analysis of 5′-end RNA-sequencing methods (2018) (2)
- CBP-HSF2 structural and functional interplay in Rubinstein-Taybi neurodevelopmental disorder (2022) (1)
- CBP/EP300-dependent acetylation and stabilization of HSF2 are compromised in the rare disorder, Rubinstein-Taybi syndrome (2018) (1)
- Organoids as tools for fundamental discovery and translation—a Keystone Symposia report (2022) (1)
- Anniversary reflections: Inspiring discoveries and the future of the field. (2022) (0)
- A protein‐centric view of in vitro biological model systems for schizophrenia (2021) (0)
- Progress and challenges in stem cell biology (2023) (0)
- Non-model model organisms (2017) (0)
- Dreidimensionale heterogen differenzierte Gewebekultur (2012) (0)
- How human-derived brain organoids are built differently from brain organoids derived of genetically-close relatives: A multi-scale hypothesis (2023) (0)
- Induction of Expansion an d Folding in Human Cerebral Organoids Graphical (0)
- Comprehensive comparative analysis of 5′-end RNA-sequencing methods (2018) (0)
- Navigating the Wnt pathway at the cilium : transport regulation and the role of Jouberin (2010) (0)
- 20 years of Developmental Cell: Looking forward. (2021) (0)
- Author response: Electron cryo-tomography reveals the subcellular architecture of growing axons in human brain organoids (2021) (0)
- Mutations in the CEP290 gene, encoding a centrosomal protein, cause pleiotropic forms of Joubert Syndrome (2006) (0)
- Cell scientist to watch – Madeline Lancaster (2017) (0)
- Cerebral organoids at the air–liquid interface generate diverse nerve tracts with functional output (2019) (0)
This paper list is powered by the following services:
Other Resources About Madeline Lancaster
What Schools Are Affiliated With Madeline Lancaster?
Madeline Lancaster is affiliated with the following schools: