Progress in microscopy technology has a long history of triggering major advances in neuroscience. Superresolution microscopy (SRM), famous for shattering the diffraction barrier of light microscopy, is no exception. SRM gives access to anatomical designs and dynamics of nanostructures, which are impossible to resolve using conventional light microscopy, from the elaborate anatomy of neurons and glial cells, to the organelles and molecules inside of them. In this review, we will mainly focus on a particular SRM technique (STED microscopy), and explain a series of technical developments we have made over the years to make it practical and viable in the field of neuroscience. We will also highlight several neurobiological findings on the dyna...
The complex, nanoscopic scale of neuronal function, taking place at dendritic spines, axon terminals...
Super-resolution fluorescence microscopy has entered most biological laboratories worldwide and its ...
Im Laufe des letzten Jahrzehnts ist eine neue Klasse von Fluoreszenzmikroskopen entwickelt worden, ...
Super-resolution fluorescence microscopy holds tremendous potential for discovery in neuroscience. M...
Superresolution microscopy (SM) techniques are among the revolutionary methods for molecular and cel...
STED microscopy is one of several fluorescence microscopy techniques that permit imaging at higher s...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Abstract: Recent developments in fluorescence far-field microscopy such as STED microscopy have acco...
Synaptic connections between individual nerve cells are fundamental to the process of information tr...
Chemical synapses in brain are structural differentiations where excitatory or inhibitory signals ar...
Even though neurons are the main drivers of information processing in the brain and spinal cord, oth...
Chemical synapses in brain are structural differentiations where excitatory or inhibitory signals ar...
The complex, nanoscopic scale of neuronal function, taking place at dendritic spines, axon terminals...
Super-resolution fluorescence microscopy has entered most biological laboratories worldwide and its ...
Im Laufe des letzten Jahrzehnts ist eine neue Klasse von Fluoreszenzmikroskopen entwickelt worden, ...
Super-resolution fluorescence microscopy holds tremendous potential for discovery in neuroscience. M...
Superresolution microscopy (SM) techniques are among the revolutionary methods for molecular and cel...
STED microscopy is one of several fluorescence microscopy techniques that permit imaging at higher s...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Recent developments in fluorescence far-field microscopy such as STED microscopy have accomplished o...
Abstract: Recent developments in fluorescence far-field microscopy such as STED microscopy have acco...
Synaptic connections between individual nerve cells are fundamental to the process of information tr...
Chemical synapses in brain are structural differentiations where excitatory or inhibitory signals ar...
Even though neurons are the main drivers of information processing in the brain and spinal cord, oth...
Chemical synapses in brain are structural differentiations where excitatory or inhibitory signals ar...
The complex, nanoscopic scale of neuronal function, taking place at dendritic spines, axon terminals...
Super-resolution fluorescence microscopy has entered most biological laboratories worldwide and its ...
Im Laufe des letzten Jahrzehnts ist eine neue Klasse von Fluoreszenzmikroskopen entwickelt worden, ...