Thanks to their flexibility, optical techniques could be the key to explore anatomy, plasticity, and functionality of the cerebellum. As an example, an in vivo analysis of the dynamic remodeling of cerebellar axons by nonlinear microscopy can provide fundamental insights of the mechanism that promotes neuronal regeneration. Several studies showed that damaged climbing fibers are capable of regrowing also in adult animals. The investigation of the time-lapse dynamics of degeneration and regeneration of these axons within their complex environment can be performed by time-lapse two-photon fluorescence (TPF) imaging in vivo. Here, we show that single axonal branches can be dissected by laser axotomy, thus avoiding collateral damage to the adja...
Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resol...
Understanding brain structure and function, and the complex relationships between them, is one of th...
International audienceRepeated in vivo two-photon imaging of adult mammalian spinal cords, with subc...
In combination with fluorescent protein (XFP) expression techniques, two-photon microscopy has becom...
In combination with fluorescent protein (XFP) expression techniques, two-photon microscopy has becom...
Two-photon microscopy has been used to perform high spatial resolution imaging of spine plasticity i...
A functional neural circuit depends on multiple layers of complexity, from the cellular-level challe...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
In the mammalian cortex, neurons form extremely complicated networks and exchange information at syn...
The structure of axonal arbors controls how signals from individual neurons are routed within the ma...
Recently, two-photon microscopy has been used for high spatial resolution imaging of the intact neoc...
Neuronal damage caused by brain injury or neurodegenerative disorders often leads to a loss of axona...
Optical imaging of neuronal activity offers new possibilities for understanding brain physiology. Th...
In vivo imaging of green fluorescent protein (GFP)-labeled neurons in the intact brain is being used...
Introduction Structural plasticity with synapse formation and elimination is a key component of m...
Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resol...
Understanding brain structure and function, and the complex relationships between them, is one of th...
International audienceRepeated in vivo two-photon imaging of adult mammalian spinal cords, with subc...
In combination with fluorescent protein (XFP) expression techniques, two-photon microscopy has becom...
In combination with fluorescent protein (XFP) expression techniques, two-photon microscopy has becom...
Two-photon microscopy has been used to perform high spatial resolution imaging of spine plasticity i...
A functional neural circuit depends on multiple layers of complexity, from the cellular-level challe...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
In the mammalian cortex, neurons form extremely complicated networks and exchange information at syn...
The structure of axonal arbors controls how signals from individual neurons are routed within the ma...
Recently, two-photon microscopy has been used for high spatial resolution imaging of the intact neoc...
Neuronal damage caused by brain injury or neurodegenerative disorders often leads to a loss of axona...
Optical imaging of neuronal activity offers new possibilities for understanding brain physiology. Th...
In vivo imaging of green fluorescent protein (GFP)-labeled neurons in the intact brain is being used...
Introduction Structural plasticity with synapse formation and elimination is a key component of m...
Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resol...
Understanding brain structure and function, and the complex relationships between them, is one of th...
International audienceRepeated in vivo two-photon imaging of adult mammalian spinal cords, with subc...