Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and peptides. Analysis and visualization of these high-dimensional data cubes is challenging. We present a methodology for this task based on a novel developed algorithm for the feature identification and reduction step. To show the validity of our approach, we analyzed prostate cancer tissue sections with an adapted kernel-density based clustering algorithm
The interpretation of biological data sets is essential for generating hypotheses that guide researc...
The different steps of a proteomics analysis workflow generate a plethora of features for each extra...
<div><p>The interpretation of biological data sets is essential for generating hypotheses that guide...
Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and p...
Spatially targeted proteomics analyzes the proteome of specific cell types and functional regions wi...
International audienceQuantitative mass-spectrometry-based spatial proteomics involves elaborate, ex...
Abstract The spatial organisation of cellular protein expression profiles within tissue determines c...
Quantitative mass spectrometry based spatial proteomics involves elaborate, expensive and time consu...
Methods for profiling RNA and protein expression in a spatially resolved manner are rapidly evolving...
<p>Organelle proteomics, or spatial proteomics, is the systematic study of protein sub-cellular loca...
Advances in single-cell proteomics technologies have resulted in high-dimensional datasets comprisin...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
Spatial proteomics involves the systematic study of proteins and their assignments to distinct spati...
Biological tissues contain diverse cell subpopulations crucial to their function, and proteins are t...
International audienceMOTIVATION: Experimental spatial proteomics, i.e the high-throughput assignmen...
The interpretation of biological data sets is essential for generating hypotheses that guide researc...
The different steps of a proteomics analysis workflow generate a plethora of features for each extra...
<div><p>The interpretation of biological data sets is essential for generating hypotheses that guide...
Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and p...
Spatially targeted proteomics analyzes the proteome of specific cell types and functional regions wi...
International audienceQuantitative mass-spectrometry-based spatial proteomics involves elaborate, ex...
Abstract The spatial organisation of cellular protein expression profiles within tissue determines c...
Quantitative mass spectrometry based spatial proteomics involves elaborate, expensive and time consu...
Methods for profiling RNA and protein expression in a spatially resolved manner are rapidly evolving...
<p>Organelle proteomics, or spatial proteomics, is the systematic study of protein sub-cellular loca...
Advances in single-cell proteomics technologies have resulted in high-dimensional datasets comprisin...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
Spatial proteomics involves the systematic study of proteins and their assignments to distinct spati...
Biological tissues contain diverse cell subpopulations crucial to their function, and proteins are t...
International audienceMOTIVATION: Experimental spatial proteomics, i.e the high-throughput assignmen...
The interpretation of biological data sets is essential for generating hypotheses that guide researc...
The different steps of a proteomics analysis workflow generate a plethora of features for each extra...
<div><p>The interpretation of biological data sets is essential for generating hypotheses that guide...