Nova Patents
EP4567682A2

Methods for genomic analysis

Abstract

A computer-implemented method for processing and/or analyzing nucleic acid sequencing data comprises receiving a first data input and a second data input. The first data input comprises untargeted sequencing data generated from a first nucleic acid sample obtained from a subject. The second data input comprises target-specific sequencing data generated from a second nucleic acid sample obtained from the subject. Next, with the aid of a computer processor, the first data input and the second data input are combined to produce a combined data set. Next, an output derived from the combined data set is generated. The output is indicative of the presence or absence of one or more polymorphisms of the first nucleic acid sample and/or the second nucleic acid sample.

EP4567682A2, drawing sheet 1
Sheet 1 of 12

Term

7.9 yearsto projected expiry

Projected expiry 28 August 2034, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
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  5. Projected expiry

15 claims: 1 independent, 14 dependent

  1. 1
    A method for genetic analysis of a subject, comprising:(a) analyzing a set of low coverage whole genome sequencing data to identify a presence of a plurality of polymorphisms, wherein the plurality of polymorphisms comprises: (i) structural variants, (ii) copy number variations, (iii) single nucleotide variations, or (iv) a combination thereof, and wherein the set of low coverage whole genome sequencing data was generated from a first nucleic sample obtained at a first time point;(b) performing a target-specific sequencing reaction on a second nucleic acid sample using a plurality of non-random primers to generate a set of target-specific sequencing reaction data, wherein: (i) individual instances of the plurality of non-random primers comprise sequences that are designed to be complementary to individual instances of the plurality of polymorphisms identified in step (a), (ii) mean molecular sequencing size of the set of target-specific sequencing reaction data is at least about 50 bases, and (iii) the target-specific sequencing reaction detects the plurality of polymorphisms with a percent error rate less than about 0.001%;(c) using a computer to generate a biomedical report based on the set of low coverage whole genome sequencing data and the set of target-specific sequencing reaction data, wherein the biomedical report predicts, diagnoses, and/or prognoses one or more biomedical features.