multiphoton microscopy mpm (Carl Zeiss)
Structured Review
Multiphoton Microscopy Mpm, supplied by Carl Zeiss, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/multiphoton+microscopy+mpm/deep+laser+mai+multiphoton+see+tai/10__1039_slash_c0sm01304h-55-31-34
Average 90 stars, based on 1 article reviews
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Electron Microscopy:Article Title: Porous structure and water state in cross-linked polymer and protein cryo-hydrogels Article Snippet: The porous structure and the state of the water are two main factors which define the vast applications of hydrogels in the life science arena.. The structural characterisation and water state in hydrogels produced by the cryogelation of poly(hydroxyethyl methacrylate) and gelatine were undertaken using different techniques.. Images obtained using confocal laser scanning and multiphoton microscopies were analysed using ImageJ/Fiji software to estimate the total porosity, specific surface area and pore size and wall thickness distribution functions of each of the hydrogels. Confocal Laser Scanning Microscopy:Article Title: Porous structure and water state in cross-linked polymer and protein cryo-hydrogels Article Snippet: The porous structure and the state of the water are two main factors which define the vast applications of hydrogels in the life science arena.. The structural characterisation and water state in hydrogels produced by the cryogelation of poly(hydroxyethyl methacrylate) and gelatine were undertaken using different techniques.. Images obtained using confocal laser scanning and multiphoton microscopies were analysed using ImageJ/Fiji software to estimate the total porosity, specific surface area and pore size and wall thickness distribution functions of each of the hydrogels. Microscopy:Article Title: Porous structure and water state in cross-linked polymer and protein cryo-hydrogels Article Snippet: The porous structure and the state of the water are two main factors which define the vast applications of hydrogels in the life science arena.. The structural characterisation and water state in hydrogels produced by the cryogelation of poly(hydroxyethyl methacrylate) and gelatine were undertaken using different techniques.. Images obtained using confocal laser scanning and multiphoton microscopies were analysed using ImageJ/Fiji software to estimate the total porosity, specific surface area and pore size and wall thickness distribution functions of each of the hydrogels. |
