US2014326922A1PendingUtilityA1

Sub-diffraction limit image resolution and other imaging techniques

Assignee: HARVARD COLLEGEPriority: Aug 7, 2006Filed: Dec 9, 2013Published: Nov 6, 2014
Est. expiryAug 7, 2026(~0 yrs left)· nominal 20-yr term from priority
G01N 33/582C09K 2211/1018C09K 11/06G01N 21/6408G01N 2021/6441G02B 21/16G02B 27/58C09K 2211/1044G01N 2021/6439G01N 21/6458G01N 2021/6421G02B 21/367G01N 2201/12G01N 15/1429G02B 21/0076G01N 2201/06113G01N 21/6428C09K 2211/1475G01N 15/1433G01N 15/01
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Claims

Abstract

The present invention generally relates to sub-diffraction limit image resolution and other imaging techniques. In one aspect, the invention is directed to determining and/or imaging light from two or more entities separated by a distance less than the diffraction limit of the incident light. For example, the entities may be separated by a distance of less than about 1000 nm, or less than about 300 nm for visible light. In one set of embodiments, the entities may be selectively activatable, i.e., one entity can be activated to produce light, without activating other entities. A first entity may be activated and determined (e.g., by determining light emitted by the entity), then a second entity may be activated and determined. The entities may be immobilized relative to each other and/or to a common entity. The emitted light may be used to determine the positions of the first and second entities, for example, using Gaussian fitting or other mathematical techniques, and in some cases, with sub-diffraction limit resolution. The methods may thus be used, for example, to determine the locations of two or more entities immobilized relative to a common entity, for example, a surface, or a biological entity such as DNA, a protein, a cell, a tissue, etc. The entities may also be determined with respect to time, for example, to determine a time-varying reaction. Other aspects of the invention relate to systems for sub-diffraction limit image resolution, computer programs and techniques for sub-diffraction limit image resolution, methods for promoting sub-diffraction limit image resolution, methods for producing photoswitchable entities, and the like.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An imaging composition, comprising:
 a light-emitting molecular entity, capable of being switched between a first state able to emit light at a first, emission wavelength and a second state that does not substantially emit light at the first wavelength.

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