OBJECTIVE: Flow cytometry (FC) is a widely acknowledged technology in diagnosis of acute myeloid leukemia (AML) and has been indispensable in determining progression of the disease. Although FC plays a key role as a posttherapy prognosticator and evaluator of therapeutic efficacy, the manual analysis of cytometry data is a barrier to optimization of reproducibility and objectivity. This study investigates the utility of our recently introduced nonparametric Bayesian framework in accurately predicting the direction of change in disease progression in AML patients using FC data. METHODS: The highly flexible nonparametric Bayesian model based on the infinite mixture of infinite Gaussian mixtures is used for jointly modeling data from mu...
We describe a supervised prediction method for diagnosis of acute myeloid leukemia (AML) from patien...
Abstract Background: Minimal Residual Disease (MRD) measurement is a useful tool to refine progno...
Modelling the parameters of multistep carcinogenesis is key for a better understanding of cancer pr...
Objective: Flow cytometry (FC) is a widely acknowledged technology in diagnosis of acute myeloid leu...
Following the endorsement of the Bethesda International Consensus Group, as well as the guidance for...
The role of decentralized assessment of measurable residual disease (MRD) for risk stratification in...
© 2008 Clinical Cytometry SocietyBackgroundMultiparameter flow cytometry (MFC) has been shown to be ...
Measurable residual disease (MRD) detected by multiparametric flow cytometry (MFC) is associated wit...
Background: Multicolor flow cytometry (MFC) analysis is widely used to identify minimal residual dis...
This study was aimed to explore prognostic significance of minimal residual disease (MRD) detection ...
IF 3.118International audienceThe assessment of minimal residual disease (MRD) in acute myeloblastic...
Background: The goal of this study concerned the pretherapeutic identification of high-risk acute my...
Measurable residual disease (MRD) quantified by multiparameter flow cytometry (MFC) is a strong and ...
Introduction: Multiparametric flow cytometry immunophenotype (MFCI) plays a crucial role in the diag...
During the past decades, a lot of progress has been made in the treatment of acute and chronic myelo...
We describe a supervised prediction method for diagnosis of acute myeloid leukemia (AML) from patien...
Abstract Background: Minimal Residual Disease (MRD) measurement is a useful tool to refine progno...
Modelling the parameters of multistep carcinogenesis is key for a better understanding of cancer pr...
Objective: Flow cytometry (FC) is a widely acknowledged technology in diagnosis of acute myeloid leu...
Following the endorsement of the Bethesda International Consensus Group, as well as the guidance for...
The role of decentralized assessment of measurable residual disease (MRD) for risk stratification in...
© 2008 Clinical Cytometry SocietyBackgroundMultiparameter flow cytometry (MFC) has been shown to be ...
Measurable residual disease (MRD) detected by multiparametric flow cytometry (MFC) is associated wit...
Background: Multicolor flow cytometry (MFC) analysis is widely used to identify minimal residual dis...
This study was aimed to explore prognostic significance of minimal residual disease (MRD) detection ...
IF 3.118International audienceThe assessment of minimal residual disease (MRD) in acute myeloblastic...
Background: The goal of this study concerned the pretherapeutic identification of high-risk acute my...
Measurable residual disease (MRD) quantified by multiparameter flow cytometry (MFC) is a strong and ...
Introduction: Multiparametric flow cytometry immunophenotype (MFCI) plays a crucial role in the diag...
During the past decades, a lot of progress has been made in the treatment of acute and chronic myelo...
We describe a supervised prediction method for diagnosis of acute myeloid leukemia (AML) from patien...
Abstract Background: Minimal Residual Disease (MRD) measurement is a useful tool to refine progno...
Modelling the parameters of multistep carcinogenesis is key for a better understanding of cancer pr...