Michael Shaw
Michael Shaw
Senior Research Scientist, National Physical Laboratory
Verified email at npl.co.uk - Homepage
TitleCited byYear
Array-based goniospectroradiometer for measurement of spectral radiant intensity and spectral total flux of light sources
M Shaw, T Goodman
Applied optics 47 (14), 2637-2647, 2008
Optimized approaches for optical sectioning and resolution enhancement in 2D structured illumination microscopy
K O’Holleran, M Shaw
Biomedical optics express 5 (8), 2580-2590, 2014
Characterization of deformable mirrors for spherical aberration correction in optical sectioning microscopy
M Shaw, S Hall, S Knox, R Stevens, C Paterson
Optics express 18 (7), 6900-6913, 2010
High speed structured illumination microscopy in optically thick samples
M Shaw, L Zajiczek, K O’Holleran
Methods 88, 11-19, 2015
Arbitrary Self‐Assembly of Peptide Extracellular Microscopic Matrices
A Bella, S Ray, M Shaw, MG Ryadnov
Angewandte Chemie International Edition 51 (2), 428-431, 2012
A new goniospectrophotometer for measuring gonio‐apparent materials
MR Pointer, NJ Barnes, MJ Shaw, PJ Clarke
Coloration technology 121 (2), 96-103, 2005
Super‐resolution microscopy as a potential approach to diagnosis of platelet granule disorders
D Westmoreland, M Shaw, W Grimes, DJ Metcalf, JJ Burden, K Gomez, ...
Journal of Thrombosis and Haemostasis 14 (4), 839-849, 2016
In-vivo high resolution AFM topographic imaging of Caenorhabditis elegans reveals previously unreported surface structures of cuticle mutants
CL Essmann, M Elmi, M Shaw, GM Anand, VM Pawar, MA Srinivasan
Nanomedicine: Nanotechnology, Biology and Medicine 13 (1), 183-189, 2017
Polarization effects on contrast in structured illumination microscopy
K O’Holleran, M Shaw
Optics Letters 37 (22), 4603-4605, 2012
Investigation of the confocal wavefront sensor and its application to biological microscopy
M Shaw, K O’Holleran, C Paterson
Optics express 21 (16), 19353-19362, 2013
High affinity single-chain variable fragments are specific and versatile targeting motifs for extracellular vesicles
A Longatti, C Schindler, A Collinson, L Jenkinson, C Matthews, ...
Nanoscale 10 (29), 14230-14244, 2018
Diffuse reflectance scales at NPL
CJ Chunnilall, FJJ Clarke, MJ Shaw
Fourth Oxford Conference on Spectroscopy 4826, 129-136, 2003
Filming protein fibrillogenesis in real time
A Bella, M Shaw, S Ray, MG Ryadnov
Scientific reports 4, 7529, 2014
The design of the new NPL reference spectrofluorimeter
MJ Shaw, PJ Clarke, TA Burnitt
Optical Diagnostic Methods for Inorganic Materials III 5192, 30-35, 2003
Reactive Polymorphic Nanoparticles: Preparation via Polymerization‐Induced Self‐Assembly and Postsynthesis Thiol–para‐Fluoro Core Modification
N Busatto, V Stolojan, M Shaw, JL Keddie, PJ Roth
Macromolecular rapid communications 40 (2), 1800346, 2019
Investigation of mechanosensation in C. elegans using light field calcium imaging
M Shaw, M Elmi, V Pawar, MA Srinivasan
Biomedical optics express 7 (7), 2877-2887, 2016
Three-Dimensional Cell Morphometry for the Quantification of Cell–Substrate Interactions
M Shaw, N Faruqui, E Gurdak, P Tomlins
Tissue Engineering Part C: Methods, 2012
Microscope calibration using laser written fluorescence
AD Corbett, M Shaw, A Yacoot, A Jefferson, L Schermelleh, T Wilson, ...
Optics Express 26 (17), 21887-21899, 2018
Determining the biomechanics of touch sensation in C. elegans
M Elmi, VM Pawar, M Shaw, D Wong, H Zhan, MA Srinivasan
Scientific reports 7 (1), 12329, 2017
CREIM: Coffee Ring Effect Imaging Model for Monitoring Protein Self-Assembly in Situ
M Shaw, A Bella, MG Ryadnov
The journal of physical chemistry letters 8 (19), 4846-4851, 2017
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