Microscopy imaging of living cells is becoming a pivotal, noninvasive, and highly specific tool in metabolic engineering to visualize molecular dynamics in industrial microorganisms. This review describes the different microscopy methods, from fluorescence to super resolution, with application in microbial bioengineering. Firstly, the role and importance of microscopy imaging is analyzed in the context of strain design. Then, the advantages and disadvantages of different microscopy technologies are discussed, including confocal laser scanning microscopy (CLSM), spatial light interference microscopy (SLIM), and super-resolution microscopy, followed by their applications in synthetic biology. Finally, the future perspectives of live-cell imag...
Fluorescence microscopy is a major tool with which to monitor cell physiology. Although the concepts...
AbstractOver the last twenty years super-resolution fluorescence microscopy has gone from proof-of-c...
<div><p>In this study we use a spinning disk confocal microscope (SD) to generate super-resolution i...
Fluorescence microscopy of live cells has become an integral part of modern cell biology. Fluorescen...
Since the earliest examination of cellular structures, biologists have been fascinated by observing ...
Microscopy has long been heralded in the Biological Sciences for its revelations concerning the stru...
Live cell imaging provides a powerful technique for the analysis of molecular dynamics within cells....
Since the earliest examination of cellular structures, biologists have been fascinated by observing ...
© Springer Science+Business Media New York 2017. Advancements in optical microscopy technology have ...
Single-molecule fluorescence microscopy enables biological investigations inside living cells to ach...
Biological systems present multiple scales of complexity, ranging from molecules to entire populatio...
Fluorescence microscopy is a major tool with which to monitor cell physiology. Although the concepts...
By delivering optical images with spatial resolutions below the diffraction limit several super-reso...
Bacteria have evolved complex, highly-coordinated, multi-component cellular engines to achieve high ...
Bacteria have evolved complex, highly-coordinated, multi-component cellular engines to achieve high ...
Fluorescence microscopy is a major tool with which to monitor cell physiology. Although the concepts...
AbstractOver the last twenty years super-resolution fluorescence microscopy has gone from proof-of-c...
<div><p>In this study we use a spinning disk confocal microscope (SD) to generate super-resolution i...
Fluorescence microscopy of live cells has become an integral part of modern cell biology. Fluorescen...
Since the earliest examination of cellular structures, biologists have been fascinated by observing ...
Microscopy has long been heralded in the Biological Sciences for its revelations concerning the stru...
Live cell imaging provides a powerful technique for the analysis of molecular dynamics within cells....
Since the earliest examination of cellular structures, biologists have been fascinated by observing ...
© Springer Science+Business Media New York 2017. Advancements in optical microscopy technology have ...
Single-molecule fluorescence microscopy enables biological investigations inside living cells to ach...
Biological systems present multiple scales of complexity, ranging from molecules to entire populatio...
Fluorescence microscopy is a major tool with which to monitor cell physiology. Although the concepts...
By delivering optical images with spatial resolutions below the diffraction limit several super-reso...
Bacteria have evolved complex, highly-coordinated, multi-component cellular engines to achieve high ...
Bacteria have evolved complex, highly-coordinated, multi-component cellular engines to achieve high ...
Fluorescence microscopy is a major tool with which to monitor cell physiology. Although the concepts...
AbstractOver the last twenty years super-resolution fluorescence microscopy has gone from proof-of-c...
<div><p>In this study we use a spinning disk confocal microscope (SD) to generate super-resolution i...