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Showing 1 to 15 of 15 for “"single molecule localisation microscopy"”.

  1. Three-Dimensional Single-Molecule Localisation Microscopy and Visualisation Techniques

    … helix-point spread function (DH-PSF) and 3D single-molecule light field microscopy (SMLFM) are techniques which have an increased depth of field (4 µm and 8 µm respectively) and are capable of isotropic resolutions of 25 nm (DHPSF). This makes 3D SR highly compatible to investigate biological …

    cambridge Repository record for Three-Dimensional Single-Molecule Localisation Microscopy and Visualisation Techniques (opens in a new tab)

  2. Applying single-molecule localisation microscopy to achieve virtual optical sectioning and study T-cell activation

    Single-molecule localisation microscopy (SMLM) allows imaging of fluorescently-tagged proteins in live cells with a precision well below that of the diffraction limit. As a single-molecule technique, it has also introduced a new quantitative approach to fluorescence microscopy. In the Part A of …

    cambridge Repository record for Applying single-molecule localisation microscopy to achieve virtual optical sectioning and study T-cell activation (opens in a new tab)

  3. Investigating the role of protein aggregation in neurodegenerative diseases using super-resolution imaging

    … disease. A new method is described combining single-molecule localisation microscopy and an alpha-synuclein aggregate specific aptamer to characterise surface immobilised aggregates. This method is validated on an in vitro alpha-synuclein aggregation time course, before being applied to the …

    cambridge Repository record for Investigating the role of protein aggregation in neurodegenerative diseases using super-resolution imaging (opens in a new tab)

  4. Advancing Fluorescence Microscopy Techniques for Volumetric Whole-cell Imaging

    … whole-cell imaging based on fluorescence microscopy. The first project establishes a robust single-molecule localisation microscopy (SMLM) pipeline for volumetric imaging in the whole cell using the double-helix point spread function (DH-PSF) approach. The practical challenges associated …

    cambridge Repository record for Advancing Fluorescence Microscopy Techniques for Volumetric Whole-cell Imaging (opens in a new tab)

  5. Development of Three-Dimensional Super-Resolution Imaging Using a Double-Helix Point Spread Function

    Single-molecule localisation microscopy (SMLM), has allowed for optical microscopy to probe biological systems beyond the diffraction limit. The intrinsic 3D nature of biology has motivated the development of 3D-SMLM with novel techniques, including the double-helix point spread function (DHPSF). A …

    cambridge Repository record for Development of Three-Dimensional Super-Resolution Imaging Using a Double-Helix Point Spread Function (opens in a new tab)

  6. Synthesis and characterisation of peptide-based probes for quantitative multicolour STORM imaging

    … STORM imaging by Edward Taylor Current single molecule localisation microscopy methods allow for multicolour imaging of macromolecules in cells, and for a degree quantification on molecule numbers in one colour. However, that has not yet been an attempt to develop tools capable of …

    cambridge Repository record for Synthesis and characterisation of peptide-based probes for quantitative multicolour STORM imaging (opens in a new tab)

  7. Development of Novel Labelling Strategies for Imaging in Nanoscale Topography

    … of biological systems on nanometer scales. 3D single molecule localisation microscopy (3D-SMLM) techniques such as the double helix point spread function (DHPSF) enable the visualisation of these systems on the required spatial scales and take into account the inherently 3D nature of biology. …

    cambridge Repository record for Development of Novel Labelling Strategies for Imaging in Nanoscale Topography (opens in a new tab)

  8. Super-resolution Imaging of Chromatin and Functional Nuclear Architecture

    … of the Y loops and chromosome masses. A single molecule localisation microscopy technique was optimised for imaging within the nucleus, with both 3D and dual-colour capability. Then, the Y loops were imaged at super-resolution, and a specialised clustering protocol was developed for …

    cambridge Repository record for Super-resolution Imaging of Chromatin and Functional Nuclear Architecture (opens in a new tab)

  9. Single Molecule Localisation with Fourier Light Field Microscopy

    … aims to improve the temporal resolution of 3D Single Molecule Localisation Microscopy (SMLM). This technique combines the super-resolution capability of SMLM with the principles of parallax; multiple perspective views of photo-switchable fluorophores are captured using a lenslet array in the …

    cambridge Repository record for Single Molecule Localisation with Fourier Light Field Microscopy (opens in a new tab)

  10. Advances in volumetric super-resolution microscopy and single-particle tracking

    Single-molecule localisation microscopy (SMLM) has enabled optical microscopy to probe biological structures and processes at the nanometer scale. To accommodate the inherently 3D nature of biological structures, 3D-SMLM techniques---such as the astigmatic and double-helix point spread functions …

    cambridge Repository record for Advances in volumetric super-resolution microscopy and single-particle tracking (opens in a new tab)

  11. Optical imaging methods for the study of disease models from the nano to the mesoscale

    … with resolution below the diffraction limit. Single-molecule localisation microscopy (SMLM), which circumvents the diffraction limit by separating fluorophore emission in time to localise individual molecules in space with ∼20 nm precision, was thus implemented to study a-syn in purified …

    cambridge Repository record for Optical imaging methods for the study of disease models from the nano to the mesoscale (opens in a new tab)

  12. Investigating transcription factor dynamics and chromatin environment during Notch response

    … were probed in real time, using in vivo Single Molecule Localisation Microscopy. Analysis of the behaviour of these molecules revealed that Notch activation led to an increase of bound Su(H) molecules, as well as an increase of the fraction of Su(H) molecules with an exploratory …

    cambridge Repository record for Investigating transcription factor dynamics and chromatin environment during Notch response (opens in a new tab)

  13. Synthetic ground truth of biological shapes — Simulating variable Nuclear Pore Complexes for Microscopy

    … Complex (NPC) is the only passageway for macromolecules between the nucleus and cytoplasm and an important reference standard in microscopy: it is intrinsic to cells, has a high copy number, it is massive and stereotypically arranged. The average architecture of NPC proteins has been resolved …

    cambridge Repository record for Synthetic ground truth of biological shapes — Simulating variable Nuclear Pore Complexes for Microscopy (opens in a new tab)

  14. Single-molecule orientation estimation using a polarisation camera

    … for measuring the orientation and position of single fluorescent molecules. The method - named POLCAM - is based on the use of a polarisation camera. Current methods for single-molecule orientation estimation require optical setups and algorithms that can be prohibitively slow and complex, …

    cambridge Repository record for Single-molecule orientation estimation using a polarisation camera (opens in a new tab)

  15. Quantitative super-resolution imaging of cell polarity proteins using DNA-PAINT

    Knowing the localisation and spatial organisation of proteins is crucial for understanding their function. The development of super-resolution imaging has improved our ability to garner this information, but counting individual molecules in densely-packed assemblies is still challenging. DNA-based …

    cambridge Repository record for Quantitative super-resolution imaging of cell polarity proteins using DNA-PAINT (opens in a new tab)