EP2453239B1

Optical microscopy with transformable optical labels

Abstract

This record has no abstract on file.

EP2453239B1, drawing sheet 1
Sheet 1 of 21

Term

Term ended

Expired 23 May 2026, 0.3 years ago.

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10 claims: 2 independent, 8 dependent

  1. 1
    A method of imaging with an optical system including imaging optics, characterized by a diffraction-limited resolution volume, the method comprising:in a sample comprising a plurality of transformable optical labels distributed in at least a portion of the sample with a density greater than an inverse of the diffraction-limited resolution volume of the imaging optics, activating, with an activating environmental parameter other than electromagnetic energy, a sparse subset of the labels from an inactivated state in which the labels radiate little, if any, radiation at a wavelength characteristic of an activated and excited label, when exposed to excitation radiation, to an activated state from which detectable emission of radiation is emitted when the labels are exposed to excitation radiation in the portion of the sample, controlling the activation such that the density of the labels in the sparse subset is less than the inverse of the diffraction-limited resolution volume;exciting a portion of the labels in the sparse subset of labels, by using excitation radiation;detecting fluorescence radiation emitted from the activated and excited labels in the sparse subset of labels with the optical system;and determining locations of activated and excited labels in the sparse subset of labels with a sub-diffraction-limited accuracy based on the detected radiation emitted from the activated and excited labels;deactivating activated labels and repeating the above steps to determine the locations of more labels within the sample;and combining the determined locations of the labels from the different sparse subsets to build up a superresolution image of the sample.
  2. 10
    System for determining the locations of transformable labels within a sample, wherein the sample includes transformable labels distributed in at least a portion of the sample with a density greater than an inverse of a diffraction-limited resolution volume of imaging optics, the system comprising:means for activating, with an activating environmental parameter other than electromagnetic energy, a sparse subset of the labels (302) from an inactivated state in which the labels radiate little, if any, radiation at a wavelength characteristic of an activated and excited label, when exposed to excitation radiation (304), to an activated state (303) from which detectable emission of radiation (305, 307) is emitted when the labels are exposed to excitation radiation (304) in the portion of the sample, means for exciting, with excitation radiation, the activated labels into excited states from which they emit fluorescence radiation, means for controlling the means for activating such that the density of the activated labels in the sparse subset is less than the inverse of the diffraction-limited resolution volume of the imaging optics, an optical system for detecting the fluorescence radiation from the sparse subset of emitting labels, the optical system including the imaging optics, wherein the imaging optics are characterized by a diffraction-limited resolution volume, means for determining the locations of the activated and excited labels based on the detected radiation;means for deactivating activated labels and controlling the above steps to determine the locations of more labels within the sample;and means for combining the determined locations of the labels from the different sparse subsets to build up a superresolution image of the sample.