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Sub-diffraction limit image resolution and other imaging techniques

机译:亚衍射极限图像分辨率和其他成像技术

摘要

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 run, or less than about 300 run 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 forsub-diffraction limit image resolution, methods for promoting sub-diffraction limit image resolution, methods for producing photoswitchable entities, and the like.
机译:本发明通常涉及亚衍射极限图像分辨率和其他成像技术。一方面,本发明旨在确定和/或成像来自两个或更多个实体的光,该两个或更多个实体的间隔小于入射光的衍射极限。例如,对于可见光,实体可以分开小于约1000nm或小于约300nm的距离。在一组实施例中,实体可以是可选择性激活的,即,一个实体可以被激活以产生光,而无需激活其他实体。可以激活和确定第一实体(例如,通过确定该实体发出的光),然后可以激活和确定第二实体。实体可以相对于彼此和/或相对于公共实体固定。所发射的光可以用于确定第一和第二实体的位置,例如,使用高斯拟合或其他数学技术,并且在某些情况下,使用亚衍射极限分辨率。因此,该方法可以用于例如确定相对于共同实体(例如,表面或生物实体,例如DNA,蛋白质,细胞,组织等)固定的两个或多个实体的位置。还可以相对于时间确定实体,例如以确定随时间变化的反应。本发明的其他方面涉及用于亚衍射极限图像分辨率的系统,用于亚衍射极限图像分辨率的计算机程序和技术,用于提高亚衍射极限图像分辨率的方法,用于产生光可切换实体的方法等。

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