Abstract Background The cerebellum is a foliated posterior brain structure involved in coordination of motor movements and cognition. The cerebellum undergoes rapid growth postnataly due to Sonic Hedgehog (SHH) signaling-dependent proliferation of ATOH1+ granule cell precursors (GCPs) in the external granule cell layer (EGL), a key step for generating cerebellar foliation and the correct number of granule cells. Due to its late development, the cerebellum is particularly vulnerable to injury from preterm birth and stress around birth. We recently uncovered an intrinsic capacity of the developing cerebellum to replenish ablated GCPs via adaptive reprogramming of Nestin-expressing progenitors (NEPs). However, whether this compensation mechani...
AbstractIn this study we show that postnatal development of cerebellar granule neurons (GNs) is defe...
SummaryThe prospective white matter (PWM) in the nascent cerebellum contains a transient germinal co...
The cerebellum sits at the rostral end of the vertebrate hindbrain and is responsible for sensory an...
AbstractThe signals that promote regional growth and development of the brain are not well understoo...
AbstractCerebellar granule cell precursors (GCPs), which give rise to the most abundant neuronal typ...
Growth and patterning of the cerebellum is compromised if granule cell precursors do not properly ex...
AbstractPurkinje cells (PCs) are the projection neurons of the cerebellar cortex. They receive two m...
The granule cells are the most abundant neuronal type in the human brain. Rapid proliferation of gra...
Cerebellar granule cell (GC) development relies on precise regulation of the Sonic Hedgehog (Shh) si...
AbstractCerebellar granule cells are the most abundant type of neuron in the brain, but the molecula...
AbstractCerebellar granule neurons develop postnatally from cerebellar granule precursors (GCPs), wh...
AbstractPurkinje cells of the developing cerebellum secrete the morphogen sonic hedgehog (SHH), whic...
It is generally believed that cerebellar granule neurons originate exclusively from granule neuron p...
grantor: University of TorontoMice lacking 'Engrailed-1' or 'Gli3' exhibit severe brain ma...
Niemann-Pick type C1 disease (NPCD) is a lysosomal storage disorder due to mutations in NPC1, a lyso...
AbstractIn this study we show that postnatal development of cerebellar granule neurons (GNs) is defe...
SummaryThe prospective white matter (PWM) in the nascent cerebellum contains a transient germinal co...
The cerebellum sits at the rostral end of the vertebrate hindbrain and is responsible for sensory an...
AbstractThe signals that promote regional growth and development of the brain are not well understoo...
AbstractCerebellar granule cell precursors (GCPs), which give rise to the most abundant neuronal typ...
Growth and patterning of the cerebellum is compromised if granule cell precursors do not properly ex...
AbstractPurkinje cells (PCs) are the projection neurons of the cerebellar cortex. They receive two m...
The granule cells are the most abundant neuronal type in the human brain. Rapid proliferation of gra...
Cerebellar granule cell (GC) development relies on precise regulation of the Sonic Hedgehog (Shh) si...
AbstractCerebellar granule cells are the most abundant type of neuron in the brain, but the molecula...
AbstractCerebellar granule neurons develop postnatally from cerebellar granule precursors (GCPs), wh...
AbstractPurkinje cells of the developing cerebellum secrete the morphogen sonic hedgehog (SHH), whic...
It is generally believed that cerebellar granule neurons originate exclusively from granule neuron p...
grantor: University of TorontoMice lacking 'Engrailed-1' or 'Gli3' exhibit severe brain ma...
Niemann-Pick type C1 disease (NPCD) is a lysosomal storage disorder due to mutations in NPC1, a lyso...
AbstractIn this study we show that postnatal development of cerebellar granule neurons (GNs) is defe...
SummaryThe prospective white matter (PWM) in the nascent cerebellum contains a transient germinal co...
The cerebellum sits at the rostral end of the vertebrate hindbrain and is responsible for sensory an...