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The 2018 correlative microscopy techniques roadmap
- Source :
- Journal of physics. D, Applied physics, 51 (2018). doi:10.1088/1361-6463/aad055, info:cnr-pdr/source/autori:Ando, Toshio; Bhamidimarri, Satya Prathyusha; Brending, Niklas; Colin-York, H.; Collinson, Lucy; De Jonge, Niels; de Pablo, P. J.; Debroye, Elke; Eggeling, Christian; Franck, Christian; Fritzsche, Marco; Gerritsen, Hans; Giepmans, Ben N. G.; Grunewald, Kay; Hofkens, Johan; Hoogenboom, Jacob P.; Janssen, Kris P. F.; Kaufman, Rainer; Klumpermann, Judith; Kurniawan, Nyoman; Kusch, Jana; Liv, Nalan; Parekh, Viha; Peckys, Diana B.; Rehfeldt, Florian; Reutens, David C.; Roeffaers, Maarten B. J.; Salditt, Tim; Schaap, Iwan A. T.; Schwarz, Ulrich S.; Verkade, Paul; Vogel, Michael W.; Wagner, Richard; Winterhalter, Mathias; Yuan, Haifeng; Zifarelli, Giovanni/titolo:The 2018 correlative microscopy techniques roadmap/doi:10.1088%2F1361-6463%2Faad055/rivista:Journal of physics. D, Applied physics (Print)/anno:2018/pagina_da:/pagina_a:/intervallo_pagine:/volume:51, Journal of Physics D, Ando, T, Bhamidimarri, S P, Brending, N, Colin-York, H, Collinson, L, De Jonge, N, De Pablo, P J, Debroye, E, Eggeling, C, Franck, C, Fritzsche, M, Gerritsen, H, Giepmans, B N G, Grunewald, K, Hofkens, J, Hoogenboom, J P, Janssen, K P F, Kaufman, R, Klumpermann, J, Kurniawan, N, Kusch, J, Liv, N, Parekh, V, Peckys, D B, Rehfeldt, F, Reutens, D C, Roeffaers, M B J, Salditt, T, Schaap, I A T, Schwarz, U S, Verkade, P, Vogel, M W, Wagner, R, Winterhalter, M, Yuan, H & Zifarelli, G 2018, ' The 2018 correlative microscopy techniques roadmap ', Journal of Physics D: Applied Physics, vol. 51, no. 44, 443001 . https://doi.org/10.1088/1361-6463/aad055
- Publication Year :
- 2018
- Publisher :
- IOP Publishing, Bristol , Regno Unito, 2018.
-
Abstract
- Developments in microscopy have been instrumental to progress in the life sciences, and many new techniques have been introduced and led to new discoveries throughout the last century. A wide and diverse range of methodologies is now available, including electron microscopy, atomic force microscopy, magnetic resonance imaging, small-angle x-ray scattering and multiple super-resolution fluorescence techniques, and each of these methods provides valuable read-outs to meet the demands set by the samples under study. Yet, the investigation of cell development requires a multi-parametric approach to address both the structure and spatio-temporal organization of organelles, and also the transduction of chemical signals and forces involved in cell-cell interactions. Although the microscopy technologies for observing each of these characteristics are well developed, none of them can offer read-out of all characteristics simultaneously, which limits the information content of a measurement. For example, while electron microscopy is able to disclose the structural layout of cells and the macromolecular arrangement of proteins, it cannot directly follow dynamics in living cells. The latter can be achieved with fluorescence microscopy which, however, requires labelling and lacks spatial resolution. A remedy is to combine and correlate different readouts from the same specimen, which opens new avenues to understand structure-function relations in biomedical research. At the same time, such correlative approaches pose new challenges concerning sample preparation, instrument stability, region of interest retrieval, and data analysis. Because the field of correlative microscopy is relatively young, the capabilities of the various approaches have yet to be fully explored, and uncertainties remain when considering the best choice of strategy and workflow for the correlative experiment. With this in mind, the Journal of Physics D: Applied Physics presents a special roadmap on the correlative microscopy techniques, giving a comprehensive overview from various leading scientists in this field, via a collection of multiple short viewpoints. ispartof: JOURNAL OF PHYSICS D-APPLIED PHYSICS vol:51 issue:44 ispartof: location:England status: published
- Subjects :
- 0301 basic medicine
Correlative
Acoustics and Ultrasonics
x-ray microscopy
Correlative microscopy
02 engineering and technology
Transduction (psychology)
ENDOGENOUS PROTEINS
fluorescence microscopy
Field (computer science)
SCANNING-ELECTRON-MICROSCOPY
Physics, Applied
03 medical and health sciences
SUPERRESOLUTION FLUORESCENCE
super-resolution microscopy
Microscopy
magnetic resonance imaging
OPTICAL MICROSCOPY
correlative microscopy
Topical Review
LIVING CELLS
ATOMIC-FORCE MICROSCOPY
Science & Technology
atomic force microscopy
electron microscopy
Atomic force microscopy
Super-resolution microscopy
MEMBRANE-PROTEINS
Physics
021001 nanoscience & nanotechnology
Condensed Matter Physics
Data science
Surfaces, Coatings and Films
Electronic, Optical and Magnetic Materials
030104 developmental biology
Workflow
Physical Sciences
INTEGRATED LIGHT
0210 nano-technology
LOCALIZATION MICROSCOPY
HIGH-RESOLUTION
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Journal of physics. D, Applied physics, 51 (2018). doi:10.1088/1361-6463/aad055, info:cnr-pdr/source/autori:Ando, Toshio; Bhamidimarri, Satya Prathyusha; Brending, Niklas; Colin-York, H.; Collinson, Lucy; De Jonge, Niels; de Pablo, P. J.; Debroye, Elke; Eggeling, Christian; Franck, Christian; Fritzsche, Marco; Gerritsen, Hans; Giepmans, Ben N. G.; Grunewald, Kay; Hofkens, Johan; Hoogenboom, Jacob P.; Janssen, Kris P. F.; Kaufman, Rainer; Klumpermann, Judith; Kurniawan, Nyoman; Kusch, Jana; Liv, Nalan; Parekh, Viha; Peckys, Diana B.; Rehfeldt, Florian; Reutens, David C.; Roeffaers, Maarten B. J.; Salditt, Tim; Schaap, Iwan A. T.; Schwarz, Ulrich S.; Verkade, Paul; Vogel, Michael W.; Wagner, Richard; Winterhalter, Mathias; Yuan, Haifeng; Zifarelli, Giovanni/titolo:The 2018 correlative microscopy techniques roadmap/doi:10.1088%2F1361-6463%2Faad055/rivista:Journal of physics. D, Applied physics (Print)/anno:2018/pagina_da:/pagina_a:/intervallo_pagine:/volume:51, Journal of Physics D, Ando, T, Bhamidimarri, S P, Brending, N, Colin-York, H, Collinson, L, De Jonge, N, De Pablo, P J, Debroye, E, Eggeling, C, Franck, C, Fritzsche, M, Gerritsen, H, Giepmans, B N G, Grunewald, K, Hofkens, J, Hoogenboom, J P, Janssen, K P F, Kaufman, R, Klumpermann, J, Kurniawan, N, Kusch, J, Liv, N, Parekh, V, Peckys, D B, Rehfeldt, F, Reutens, D C, Roeffaers, M B J, Salditt, T, Schaap, I A T, Schwarz, U S, Verkade, P, Vogel, M W, Wagner, R, Winterhalter, M, Yuan, H & Zifarelli, G 2018, ' The 2018 correlative microscopy techniques roadmap ', Journal of Physics D: Applied Physics, vol. 51, no. 44, 443001 . https://doi.org/10.1088/1361-6463/aad055
- Accession number :
- edsair.doi.dedup.....f9c280eabe9d25d9dba29b36a16a3eb8
- Full Text :
- https://doi.org/10.1088/1361-6463/aad055)&relpos=0&citeCnt=39&searchTerm=