Benoit Ballester
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Explore the profile of Benoit Ballester including associated specialties, affiliations and a list of published articles.
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41
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5310
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Recent Articles
11.
Casazza E, Ballester B, Philip-Alliez C, Raskin A
Oral Radiol
. 2022 Apr;
39(1):117-124.
PMID: 35438407
Objectives: This study aimed to establish a difference in mandibular bone density between bruxer and non-bruxer patients, based on panoramic radiographs. Methods: Panoramic radiographs of bruxer and non-bruxer patients were...
12.
Castro-Mondragon J, Riudavets-Puig R, Rauluseviciute I, Lemma R, Turchi L, Blanc-Mathieu R, et al.
Nucleic Acids Res
. 2021 Dec;
50(D1):D165-D173.
PMID: 34850907
JASPAR (http://jaspar.genereg.net/) is an open-access database containing manually curated, non-redundant transcription factor (TF) binding profiles for TFs across six taxonomic groups. In this 9th release, we expanded the CORE collection...
13.
Hammal F, de Langen P, Bergon A, Lopez F, Ballester B
Nucleic Acids Res
. 2021 Nov;
50(D1):D316-D325.
PMID: 34751401
ReMap (https://remap.univ-amu.fr) aims to provide manually curated, high-quality catalogs of regulatory regions resulting from a large-scale integrative analysis of DNA-binding experiments in Human, Mouse, Fly and Arabidopsis thaliana for hundreds...
14.
Ballester B, Giraud T, Ahmed H, Nabhan M, Bukiet F, Guivarch M
Clin Oral Investig
. 2021 Oct;
25(11):6027-6044.
PMID: 34623506
Objectives: To assess related studies and discuss the clinical implications of endodontic access cavity (AC) designs. Materials And Methods: A systematic review of studies comparing the fracture resistance and/or endodontic...
15.
Ferre Q, Cheneby J, Puthier D, Capponi C, Ballester B
BMC Bioinformatics
. 2021 Sep;
22(1):460.
PMID: 34563116
Background: Accurate identification of Transcriptional Regulator binding locations is essential for analysis of genomic regions, including Cis Regulatory Elements. The customary NGS approaches, predominantly ChIP-Seq, can be obscured by data...
16.
Akerman I, Kasaai B, Bazarova A, Sang P, Peiffer I, Artufel M, et al.
Nat Commun
. 2020 Sep;
11(1):4826.
PMID: 32958757
DNA replication initiates from multiple genomic locations called replication origins. In metazoa, DNA sequence elements involved in origin specification remain elusive. Here, we examine pluripotent, primary, differentiating, and immortalized human...
17.
Prorok P, Artufel M, Aze A, Coulombe P, Peiffer I, Lacroix L, et al.
Nat Commun
. 2020 Jun;
11(1):3058.
PMID: 32528032
An amendment to this paper has been published and can be accessed via a link at the top of the paper.
18.
Ambrosini G, Vorontsov I, Penzar D, Groux R, Fornes O, Nikolaeva D, et al.
Genome Biol
. 2020 May;
21(1):114.
PMID: 32393327
Background: Positional weight matrix (PWM) is a de facto standard model to describe transcription factor (TF) DNA binding specificities. PWMs inferred from in vivo or in vitro data are stored...
19.
Fornes O, Castro-Mondragon J, Khan A, van der Lee R, Zhang X, Richmond P, et al.
Nucleic Acids Res
. 2019 Nov;
48(D1):D87-D92.
PMID: 31701148
JASPAR (http://jaspar.genereg.net) is an open-access database of curated, non-redundant transcription factor (TF)-binding profiles stored as position frequency matrices (PFMs) for TFs across multiple species in six taxonomic groups. In this...
20.
Cheneby J, Menetrier Z, Mestdagh M, Rosnet T, Douida A, Rhalloussi W, et al.
Nucleic Acids Res
. 2019 Oct;
48(D1):D180-D188.
PMID: 31665499
ReMap (http://remap.univ-amu.fr) aims to provide the largest catalogs of high-quality regulatory regions resulting from a large-scale integrative analysis of hundreds of transcription factors and regulators from DNA-binding experiments in Human...