System and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue

Improved systems and methods for the analysis of digital images are provided. More particularly, the present disclosure provides for improved systems and methods for the analysis of digital images of biological tissue samples. Exemplary embodiments provide for: i) segmenting, ii) grouping, and iii)...

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Main Authors: Santamaria-Pang, A, Rittscher, J, Padfield, D, Can, A, Pang, Z, Bello, M, Ginty, F, Sevinsky, C, Li, Q, Rothney, M, Sarachan, B
格式: Patent
出版: 2015
_version_ 1826295907934535680
author Santamaria-Pang, A
Rittscher, J
Padfield, D
Can, A
Pang, Z
Bello, M
Ginty, F
Sevinsky, C
Li, Q
Rothney, M
Sarachan, B
author_facet Santamaria-Pang, A
Rittscher, J
Padfield, D
Can, A
Pang, Z
Bello, M
Ginty, F
Sevinsky, C
Li, Q
Rothney, M
Sarachan, B
author_sort Santamaria-Pang, A
collection OXFORD
description Improved systems and methods for the analysis of digital images are provided. More particularly, the present disclosure provides for improved systems and methods for the analysis of digital images of biological tissue samples. Exemplary embodiments provide for: i) segmenting, ii) grouping, and iii) quantifying molecular protein profiles of individual cells in terms of Sub cellular compartments (nuclei, membrane, and cytoplasm). The systems and methods of the present disclosure advantageously perform tissue segmentation at the Sub-cellular level to facilitate analyzing, grouping and quantifying protein expression profiles of tissue in tissue sections globally and/or locally. Performing local-global tissue analysis and protein quantification advantageously enables correlation of spatial and molecular configuration of cells with molecular information of different types of cancer.
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spelling oxford-uuid:c6ec4a93-ad53-4aee-b9ed-a45ea00b0e5d2022-03-27T06:41:22ZSystem and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissuePatenthttp://purl.org/coar/resource_type/c_1843uuid:c6ec4a93-ad53-4aee-b9ed-a45ea00b0e5dSymplectic Elements at Oxford2015Santamaria-Pang, ARittscher, JPadfield, DCan, APang, ZBello, MGinty, FSevinsky, CLi, QRothney, MSarachan, BImproved systems and methods for the analysis of digital images are provided. More particularly, the present disclosure provides for improved systems and methods for the analysis of digital images of biological tissue samples. Exemplary embodiments provide for: i) segmenting, ii) grouping, and iii) quantifying molecular protein profiles of individual cells in terms of Sub cellular compartments (nuclei, membrane, and cytoplasm). The systems and methods of the present disclosure advantageously perform tissue segmentation at the Sub-cellular level to facilitate analyzing, grouping and quantifying protein expression profiles of tissue in tissue sections globally and/or locally. Performing local-global tissue analysis and protein quantification advantageously enables correlation of spatial and molecular configuration of cells with molecular information of different types of cancer.
spellingShingle Santamaria-Pang, A
Rittscher, J
Padfield, D
Can, A
Pang, Z
Bello, M
Ginty, F
Sevinsky, C
Li, Q
Rothney, M
Sarachan, B
System and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue
title System and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue
title_full System and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue
title_fullStr System and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue
title_full_unstemmed System and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue
title_short System and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue
title_sort system and method for multiplexed biomarker quantitation using single cell segmentation on sequentially stained tissue
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