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US Patent 11959075 Systems and methods for determining nucleic acids

Patent 11959075 was granted and assigned to President and Fellows of Harvard College on April, 2024 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
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President and Fellows of Harvard College
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Current Assignee
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President and Fellows of Harvard College
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119590750
Patent Inventor Names
Alistair Boettiger0
Xiaowei Zhuang0
Siyuan Wang0
Jeffrey R. Moffitt0
Kok-Hao Chen0
Date of Patent
April 16, 2024
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Patent Application Number
181849670
Date Filed
March 16, 2023
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Patent Citations
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US Patent 7473767 Methods for detection and quantification of analytes in complex mixtures
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US Patent 7499806 Image processing in microsphere arrays
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US Patent 7629125 Sequential analysis of biological samples
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US Patent 7727721 Hybridization chain reaction amplification for in situ imaging
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US Patent 7776613 Sub-diffraction image resolution and other imaging techniques
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US Patent 7785790 Replica amplification of nucleic acid arrays
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US Patent 7807447 Compositions and methods for exon profiling
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US Patent 7838302 Sub-diffraction limit image resolution and other imaging techniques
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Patent Citations Received
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US Patent 12104151 Systems and methods for determining nucleic acids
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Patent Primary Examiner
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Joseph Woitach
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Patent abstract

The present invention generally relates to systems and methods for imaging or determining nucleic acids, for instance, within cells. In some embodiments, the transcriptome of a cell may be determined. Certain embodiments are directed to determining nucleic acids, such as mRNA, within cells at relatively high resolutions. In some embodiments, a plurality of nucleic acid probes may be applied to a sample, and their binding within the sample determined, e.g., using fluorescence, to determine locations of the nucleic acid probes within the sample. In some embodiments, codewords may be based on the binding of the plurality of nucleic acid probes, and in some cases, the codewords may define an error-correcting code to reduce or prevent misidentification of the nucleic acids. In certain cases, a relatively large number of different targets may be identified using a relatively small number of labels, e.g., by using various combinatorial approaches.

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