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US Patent 11514575 Systems and methods for identifying morphological patterns in tissue samples

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
10X Genomics
10X Genomics
Current Assignee
10X Genomics
10X Genomics
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11514575
Date of Patent
November 29, 2022
Patent Application Number
17039935
Date Filed
September 30, 2020
Patent Citations
‌
US Patent 10041949 Multiplexed imaging of tissues using mass tags and secondary ion mass spectrometry
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US Patent 10002316 Spatially addressable molecular barcoding
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US Patent 10366777 Systems and methods for determining the integrity of test strings with respect to a reference genome
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US Patent 10832796 System, method, and computer software product for genotype determination using probe array data
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US Patent 10059990 In situ nucleic acid sequencing of expanded biological samples
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US Patent 10138509 Method for generating a three-dimensional nucleic acid containing matrix
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US Patent 10179932 Methods for high-throughput labelling and detection of biological features in situ using microscopy
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US Patent 10347365 Systems and methods for visualizing a pattern in a dataset
Patent Primary Examiner
‌
Tsung-Yin Tsai
CPC Code
‌
G06T 2207/10064
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G06T 2207/30072
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G06T 2207/30204
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G06T 3/0075
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G06T 3/608
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G06T 7/0012
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G06T 7/0014
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G06T 7/11
...

A discrete attribute value dataset is obtained that is associated with a plurality of probe spots each assigned a different probe spot barcode. The dataset comprises spatial projections, each comprising images of a biological sample. Each image includes a corresponding plurality of discrete attribute values for the probe spots. Each such value is associated with a probe spot in the plurality of probes spots based on the probe spot barcodes. The dataset is clustered using the discrete attribute values, or dimension reduction components thereof, for a plurality of loci at each respective probe spot across the images of the projections thereby assigning each probe spot to a cluster in a plurality of clusters. Morphological patterns are identified from the spatial arrangement of the probe spots in the various clusters.

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