Pages that link to "Q51963441"
Jump to navigation
Jump to search
The following pages link to BDNF increases homotypic olivocerebellar reinnervation and associated fine motor and cognitive skill (Q51963441):
Displaying 18 items.
- Small molecule BDNF mimetics activate TrkB signaling and prevent neuronal degeneration in rodents (Q34111160) (← links)
- Architecture and development of olivocerebellar circuit topography (Q36499734) (← links)
- Spatiotemporal dynamics of lesion-induced axonal sprouting and its relation to functional architecture of the cerebellum. (Q37281857) (← links)
- Molecular mechanisms of traumatic brain injury: the missing link in management (Q37383633) (← links)
- Long-term in vivo time-lapse imaging of synapse development and plasticity in the cerebellum (Q37578298) (← links)
- A new way of targeting to treat nerve injury (Q37686522) (← links)
- What does low-intensity rTMS do to the cerebellum? (Q38262856) (← links)
- Brain-derived neurotrophic factor Val66Met polymorphism, human memory, and synaptic neuroplasticity. (Q38564467) (← links)
- Neural stem cells over-expressing brain-derived neurotrophic factor (BDNF) stimulate synaptic protein expression and promote functional recovery following transplantation in rat model of traumatic brain injury (Q43419755) (← links)
- Differential expression of TrkB isoforms switches climbing fiber-Purkinje cell synaptogenesis to selective synapse elimination (Q44837945) (← links)
- Isoflurane exposure regulates the cell viability and BDNF expression of astrocytes via upregulation of TREK‑1. (Q47248747) (← links)
- Formation and reformation of climbing fibre synapses in the cerebellum: a similar story? (Q48207136) (← links)
- Increased concentrations of nerve growth factor and brain-derived neurotrophic factor in the rat cerebellum after exposure to environmental enrichment (Q48482437) (← links)
- Differential expression of TrkB isoforms switches climbing fiber-Purkinje cell synaptogenesis to selective synapse elimination (Q59858932) (← links)
- Brain Derived Neurotrophic Factor (BDNF) Delays Onset of Pathogenesis in Transgenic Mouse Model of Spinocerebellar Ataxia Type 1 (SCA1) (Q61812325) (← links)
- Physical exercise promotes proliferation and differentiation of endogenous neural stem cells via ERK in rats with cerebral infarction. (Q64936821) (← links)
- Resveratrol Improves Hippocampal Atrophy in Chronic Fatigue Mice by Enhancing Neurogenesis and Inhibiting Apoptosis of Granular Cells (Q83524944) (← links)
- Emerging connections between cerebellar development, behaviour and complex brain disorders (Q92688392) (← links)