In this contribution, we present results of non-linear dimensionality reduction and classification of the fs laser ablation ionization mass spectrometry (LIMS) imaging dataset acquired from the Precambrian Gunflint chert (1.88 Ga) using a miniature time-of-flight mass spectrometer developed for in situ space applications. We discuss the data generation, processing, and analysis pipeline for the classification of the recorded fs-LIMS mass spectra. Further, we define topological biosignatures identified for Precambrian Gunflint microfossils by projecting the recorded fs-LIMS intensity space into low dimensions. Two distinct subtypes of microfossil-related spectra, a layer of organic contamination and inorganic quartz matrix were identified us...
International audiencePrecambrian cellular remains frequently have simple morphologies, micrometric ...
Fossilized microorganisms (microfossils) preserved within Precambrian sedimentary rocks represent a ...
The detection and identification of biosignatures on planetary bodies such as Mars is extremely chal...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
In this contribution, we investigated the chemical composition of Precambrian microfossils from the ...
In this contribution, we investigated the chemical composition of Precambrianmicrofossils from the G...
The investigation of chemical composition on planetary bodies without significant sample processing ...
Extraction of useful information from unstructured, large and complex mass spectrometric signals is ...
This thesis contributes to the field of in-situ analytical chemistry by further expanding the measu...
The recognition of biosignatures on planetary bodies requires the analysis of the putative microfoss...
Detection of extraterrestrial life is an ongoing goal in space exploration, and there is a need for ...
We present a Laser Ablation Ionization Mass Spectrometer (LIMS) for the sensitive, chemical an...
For all information, see Supporting Information for "A 3D Petrofabric Examination of Martian Breccia...
International audiencePrecambrian cellular remains frequently have simple morphologies, micrometric ...
Fossilized microorganisms (microfossils) preserved within Precambrian sedimentary rocks represent a ...
The detection and identification of biosignatures on planetary bodies such as Mars is extremely chal...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
In this contribution, we present results of non-linear dimensionality reduction and classification o...
In this contribution, we investigated the chemical composition of Precambrian microfossils from the ...
In this contribution, we investigated the chemical composition of Precambrianmicrofossils from the G...
The investigation of chemical composition on planetary bodies without significant sample processing ...
Extraction of useful information from unstructured, large and complex mass spectrometric signals is ...
This thesis contributes to the field of in-situ analytical chemistry by further expanding the measu...
The recognition of biosignatures on planetary bodies requires the analysis of the putative microfoss...
Detection of extraterrestrial life is an ongoing goal in space exploration, and there is a need for ...
We present a Laser Ablation Ionization Mass Spectrometer (LIMS) for the sensitive, chemical an...
For all information, see Supporting Information for "A 3D Petrofabric Examination of Martian Breccia...
International audiencePrecambrian cellular remains frequently have simple morphologies, micrometric ...
Fossilized microorganisms (microfossils) preserved within Precambrian sedimentary rocks represent a ...
The detection and identification of biosignatures on planetary bodies such as Mars is extremely chal...