Introducing Aplo Scope: A new era in super-resolution imaging! learn more >
Journal of Molecular Biology, June 2020
Iva Atanaskovic, Khedidja Mosbahi, Connor Sharp, Nicholas G. Housden, Renata Kaminska, Daniel Walker, Colin Kleanthous
Nature Microbiology, January 2020
Rory Hennell James, Justin C. Deme, Andreas Kjӕr, Felicity Alcock, Augustinas Silale, Frédéric Lauber, Ben C. Berks, Susan M. Lea
Nucleic Acids Research, August 2017
Paramita Sarkar, Amy Switzer, Christine Peters, Joe Pogliano, Sivaramesh Wigneshweraraj
Nature, November 2018
Frédéric Lauber, Justin C. Deme, Susan M. Lea, Ben C. Berks
The Journal of Biological Chemistry, June 2020
Josh McQuail, Amy Switzer, Lynn Burchell, Sivaramesh Wigneshweraraj
mBio, March 2020
Hannah M. Behrens, Edward D. Lowe, Joseph Gault, Nicholas G. Housden, Renata Kaminska, T. Moritz Weber, Catriona M. A. Thompson, Gaëtan L. A. Mislin, Isabelle J. Schalk, Daniel Walker, Carol V. Robinson, Colin Kleanthous
Nature Communications volume, March 2020
Joanna Szczepaniak, Peter Holmes, Karthik Rajasekar, Renata Kaminska, Firdaus Samsudin, Patrick George Inns, Patrice Rassam, Syma Khalid, Seán M. Murray, Christina Redfield & Colin Kleanthous
Until recently, due to their size and design, the majority of super-resolution microscopes have not been able to support research in enclosed, ventilated biosafety cabinets. But things are changing.
By helping researchers to unravel new, dynamic information about virus particles, super-resolution micoscopy enables breakthroughs in the understanding of viral pathogens and in finding new targets to treat viral infection.
Intensity measurements, super-resolution and multi-color labeling for characterizing protein complexes and their assembly.