For studies of neuronal cell integration and neurite outgrowth in polymeric scaffold materials as a future alternative for the treatment of damages in the neuronal system, we have developed a protocol employing CARS microscopy for imaging of neuronal networks. The benefits of CARS microscopy come here to their best use; (i) the overall three-dimensional (3D) arrangement of multiple cells and their neurites can be visualized without the need for chemical preparations or physical sectioning, potentially affecting the architecture of the soft, fragile scaffolds and (ii) details on the interaction between single cells and scaffold fibrils can be investigated by close-up images at sub-micron resolution. The establishment of biologically more rel...
Conventional in vitro cultures are useful to represent simplistic neuronal behaviour, however the la...
Damage in the Peripheral Nervous System (PNS) is related to numerous neurodegenerative diseases and ...
Optimal integration of artificial interfaces with neural tissue is critical to develop novel neural ...
For studies of neuronal cell integration and neurite outgrowth in polymeric scaffold materials as a ...
Neuronal cell growth on polymeric scaffolds studied by CARS microscopy This document has been downlo...
The major goal of this work was to examine the dynamic interactions between neurons and three-dimens...
Proliferation, integration, and neurite extension of PC12 cells, a widely used culture model for cho...
Cell culturing is a common and reproducible way to study cell maturation and behavior in simple, man...
Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficien...
Tissue engineering methodologies for various physiological systems are seeing a significant trend to...
3D cell culture formats more closely resemble tissue architecture complexity than 2D systems, which ...
Understanding how neurodegenerative disorders develop is not only a key challenge for researchers bu...
In order to better understand the brain and brain diseases, in vitro human brain models need to incl...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Conventional in vitro cultures are useful to represent simplistic neuronal behaviour, however the la...
Damage in the Peripheral Nervous System (PNS) is related to numerous neurodegenerative diseases and ...
Optimal integration of artificial interfaces with neural tissue is critical to develop novel neural ...
For studies of neuronal cell integration and neurite outgrowth in polymeric scaffold materials as a ...
Neuronal cell growth on polymeric scaffolds studied by CARS microscopy This document has been downlo...
The major goal of this work was to examine the dynamic interactions between neurons and three-dimens...
Proliferation, integration, and neurite extension of PC12 cells, a widely used culture model for cho...
Cell culturing is a common and reproducible way to study cell maturation and behavior in simple, man...
Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficien...
Tissue engineering methodologies for various physiological systems are seeing a significant trend to...
3D cell culture formats more closely resemble tissue architecture complexity than 2D systems, which ...
Understanding how neurodegenerative disorders develop is not only a key challenge for researchers bu...
In order to better understand the brain and brain diseases, in vitro human brain models need to incl...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Conventional in vitro cultures are useful to represent simplistic neuronal behaviour, however the la...
Damage in the Peripheral Nervous System (PNS) is related to numerous neurodegenerative diseases and ...
Optimal integration of artificial interfaces with neural tissue is critical to develop novel neural ...