Imaging the brain with high integrity is of great importance to neuroscience and related applications. X-ray computed tomography (CT) and magnetic resonance imaging (MRI) are two clinically used modalities for deep-penetration brain imaging. However, their spatial resolution is quite limited. Two-photon fluorescence microscopic (2PFM) imaging with its femtosecond (fs) excitation wavelength in the traditional near-infrared (NIR) region (700–1000 nm) is able to realize deep-tissue and high-resolution brain imaging. However, it requires craniotomy and cranial window or skull-thinning techniques due to photon scattering of the excitation light. Herein, based on a type of aggregation-induced emission luminogen (AIEgen) DCDPP-2TPA with a large th...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
The benefit of high-resolution imaging provided by optical microscopy has resulted in many discoveri...
Three-photon wide-field depth-resolved excitation is used to overcome some of the limitations in con...
Imaging the brain with high integrity is of great importance to neuroscience and related application...
Currently, a serious problem obstructing the large-scale clinical applications of fluorescence techn...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
176 pagesThree-photon microscopy, with combination of genetically encoded calcium indicators (GECIs)...
To date, brain imaging has largely relied on X-ray computed tomography and magnetic resonance angiog...
Calcium imaging posed both opportunities and challenges for three-photon microscopy. With the develo...
The control of the efficiency of therapy on brain tissues requires an imaging at the microscopic sca...
Two-photon microscopy is currently the technique of choice for deep imaging in scattering, opaque sp...
Tightly focusing femtosecond laser pulses into bulk media, such as brain tissue, can generate high i...
Brain is composed of complex neural networks that work in concert to underlie the animal’s cognition...
We developed a three-photon adaptive optics add-on to a commercial two-photon laser scanning microsc...
It is shown that two-photon fluorescence images can be obtained throughout almost the entire gray ma...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
The benefit of high-resolution imaging provided by optical microscopy has resulted in many discoveri...
Three-photon wide-field depth-resolved excitation is used to overcome some of the limitations in con...
Imaging the brain with high integrity is of great importance to neuroscience and related application...
Currently, a serious problem obstructing the large-scale clinical applications of fluorescence techn...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
176 pagesThree-photon microscopy, with combination of genetically encoded calcium indicators (GECIs)...
To date, brain imaging has largely relied on X-ray computed tomography and magnetic resonance angiog...
Calcium imaging posed both opportunities and challenges for three-photon microscopy. With the develo...
The control of the efficiency of therapy on brain tissues requires an imaging at the microscopic sca...
Two-photon microscopy is currently the technique of choice for deep imaging in scattering, opaque sp...
Tightly focusing femtosecond laser pulses into bulk media, such as brain tissue, can generate high i...
Brain is composed of complex neural networks that work in concert to underlie the animal’s cognition...
We developed a three-photon adaptive optics add-on to a commercial two-photon laser scanning microsc...
It is shown that two-photon fluorescence images can be obtained throughout almost the entire gray ma...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
The benefit of high-resolution imaging provided by optical microscopy has resulted in many discoveri...
Three-photon wide-field depth-resolved excitation is used to overcome some of the limitations in con...