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Christian Pozzorini
Christian Pozzorini
Postdoctoral Fellow, Laboratory of Computational Neuroscience, EPFL
Verified email at epfl.ch
Title
Cited by
Cited by
Year
Temporal whitening by power-law adaptation in neocortical neurons
C Pozzorini, R Naud, S Mensi, W Gerstner
Nature neuroscience 16 (7), 942-948, 2013
1912013
Parameter extraction and classification of three cortical neuron types reveals two distinct adaptation mechanisms
S Mensi, R Naud, C Pozzorini, M Avermann, CCH Petersen, W Gerstner
Journal of neurophysiology 107 (6), 1756-1775, 2012
1152012
Automated high-throughput characterization of single neurons by means of simplified spiking models
C Pozzorini, S Mensi, O Hagens, R Naud, C Koch, W Gerstner
PLoS computational biology 11 (6), e1004275, 2015
882015
Whole-embryo modeling of early segmentation in Drosophila identifies robust and fragile expression domains
J Bieler, C Pozzorini, F Naef
Biophysical journal 101 (2), 287-296, 2011
472011
Enhanced sensitivity to rapid input fluctuations by nonlinear threshold dynamics in neocortical pyramidal neurons
S Mensi, O Hagens, W Gerstner, C Pozzorini
PLoS computational biology 12 (2), e1004761, 2016
352016
Automated point-neuron simplification of data-driven microcircuit models
C Rössert, C Pozzorini, G Chindemi, AP Davison, C Eroe, J King, ...
arXiv preprint arXiv:1604.00087, 2016
252016
Single‐cell whole exome and targeted sequencing in NPM1/FLT3 positive pediatric acute myeloid leukemia
C Walter, C Pozzorini, K Reinhardt, R Geffers, Z Xu, D Reinhardt, ...
Pediatric Blood & Cancer 65 (2), e26848, 2018
132018
High-throughput nucleotide resolution predictions of assay limitations increase the reliability and concordance of clinical tests
J Bieler, C Pozzorini, J Garcia, AC Tuck, M Macheret, A Willig, S Couraud, ...
JCO Clinical Cancer Informatics 5, 1085-1095, 2021
52021
Multiple timescales of adaptation in single neuron models
C Pozzorini, R Naud, S Mensi, W Gerstner
Front. Comput. Neurosci. Conference Abstract: Bernstein Conference on …, 2010
42010
Enhanced sensitivity to rapid input fluctuations by nonlinear threshold dynamics
C Pozzorini, S Mensi, O Hagens, W Gerstner
Frontiers in Neuroscience 1, 2015
12015
Computational principles of single neuron adaptation
CA Pozzorini
EPFL, 2014
12014
Benefits of applying molecular barcoding systems are not uniform across different genomic applications
J Bieler, S Kubik, M Macheret, C Pozzorini, A Willig, Z Xu
Journal of Translational Medicine 21 (1), 1-13, 2023
2023
Methods for dna library generation to facilitate the detection and reporting of low frequency variants
M Macheret, C Pozzorini, A Willig, J Bieler, XU Zhenyu
US Patent App. 17/438,461, 2022
2022
Methods for identifying chromosomal spatial instability such as homologous repair deficiency in low coverage next-generation sequencing data
C Pozzorini, G Andre, T Coletta, XU Zhenyu
US Patent App. 17/688,791, 2022
2022
Simplification of neural network models
H Markram, W Gerstner, MO Gewaltig, C Rössert, EB Muller, C Pozzorini, ...
US Patent App. 17/658,462, 2022
2022
A deep learning approach for improved detection of homologous recombination deficiency from shallow genomic profiles
G Andre, T Coletta, C Pozzorini, AC Marques, J Bieler, R Kempfer, ...
bioRxiv, 2022.07. 06.498851, 2022
2022
Simplification of neural models that include arborized projections
H Markram, W Gerstner, MO Gewaltig, C Rössert, EB Muller, C Pozzorini, ...
US Patent 11,301,750, 2022
2022
Methods for characterizing the limitations of detecting variants in next-generation sequencing workflows
J Bieler, C Pozzorini, T Alex, XU Zhenyu
US Patent App. 17/492,601, 2022
2022
Methods for identifying chromosomal spatial instability such as homologous repair deficiency in low coverage next-generation sequencing data
C Pozzorini, G Andre, T Coletta, XU Zhenyu
US Patent App. 17/534,368, 2022
2022
Methods for identifying chromosomal spatial instability such as homologous repair deficiency in low coverage next-generation sequencing data
C Pozzorini, G Andre, T Coletta, XU Zhenyu
US Patent App. 17/386,255, 2022
2022
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