Academic literature on the topic 'Chromatius'

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Journal articles on the topic "Chromatius"

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Csigi, Péter. "Aquileiai Chromatius Máté-evangéliumhoz írt kommentárja." Vallástudományi Szemle 20, no. 1 (2024): 9–32. https://doi.org/10.55193/rs.2024.1.9.

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A Szentírás értelmezése kezdettől fogva komoly kihívás elé állította az Egyházat. Főképp a különféle eretnekmozgalmak feltűnése tette szükségessé, hogy világosan megkülönböztessék, melyik az az írásmagyarázati tradíció, amely kifejezi és hordozza az Egyház hitét. Az Írás értelmezésének nemcsak tudományos vagy apologetikus céljai voltak, hanem mindenekelőtt a keresztény hívek lelkének táplálása, hitük megerősítése. Ezen a téren kitűntek azok a püspökök, akik egy-egy helyi egyház élén állva felelősséget éreztek a rájuk bízott nyáj iránt. Ezek sorába illeszkedik Chromatius, Aquileia IV. századi p
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McEachnie, Robert. "A History of Heresy Past: The Sermons of Chromatius of Aquileia, 388–407." Church History 83, no. 2 (2014): 273–96. http://dx.doi.org/10.1017/s0009640714000031.

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Chromatius served as bishop of Aquileia, a large trade-centered city at the north end of the Adriatic Sea, from 388–407. He interacted with notables like Rufinus, Jerome, Ambrose, and John Chrysostom, but our knowledge of Chromatius was limited to second-hand statements until the rediscovery of his sermons in the last century. When one examines the sermons in their original context, a disconnect on the issue of heresy emerges. Based on a survey of Christianities in northern Italy, it seems that the variety we might expect is lacking in the sources. An examination of the region reveals that the
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Sajovic, Miran. "“Sermo eorum sicut cancer serpit”. Chromatius of Aquileia against heresies." Vox Patrum 68 (December 16, 2018): 443–55. http://dx.doi.org/10.31743/vp.3369.

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Bishop Chromatius (in office from 388 to 407), whose episcopal see was a cosmopolitan trade-center at the north end of the Adriatic Sea with the name of Aquileia, was one of the most prominent bishops in the period. He is acquaint­ed with notable figures such as Ambrosius, Hieronymus, Rufinus, and Ioannes Chrysostomus and forth. Before being created a bishop, he was the secretary of bi­shop Valerianus and in the occasion of Council of Aquileia in 381, he had spoken against Arians. This Council was presided by Ambrosius and with its scale it could almost be considered as an ecumenical one. As s
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Peressotti, Giuseppe. "La Madre di Cristo nelle opere dei Padri aquileiesi." Augustinianum 63, no. 1 (2023): 109–29. http://dx.doi.org/10.5840/agstm20236314.

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This article deals with Mariology as we can deduce it from the works of writers who lived in the region of Aquileia in the 4th and 5th centuries. The first part of the study discusses the Gospel commentary by Fortunatianus and the works of Chromatius, bishops of Aquileia. The second part of the article considers texts excerpted from works on the same subject by Victorinus of Pettau, Rufinus of Concordia and Jerome of Stridon. The prevailent titles used of Mary are «Virgin» and «Mother of God». The article concludes with a comparison among significative texts excerpted from works of Chromatius
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Peressotti, Giuseppe. "Demonologia in area aquileiese." Augustinianum 59, no. 1 (2019): 101–27. http://dx.doi.org/10.5840/agstm20195915.

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The present work focuses on some particular demonological texts attributed to Fortunatianus (mid-IV century) and Chromatius (between the IV and the V century), both bishops of Aquileia. It also includes Victorinus, bishop of Poetovium (in present-day Slovenia, second half of the III century), who shared the same geographical-cultural milieu of the Aquilean bishops. We have considered primarily their biblical commentaries and, in the case of Chromatius, also his liturgical sermons. In these texts, the devil is characterized by a broad range of expressions in relation to his spiritual struggle a
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Beatrice, Pier Franco. "Chromatius and Jovinus at the Synod of Diospolis: A Prosopographical Inquiry." Journal of Early Christian Studies 22, no. 3 (2014): 437–64. http://dx.doi.org/10.1353/earl.2014.0039.

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Giménez-Abián, J. F., D. J. Clarke, A. M. Mullinger, C. S. Downes, and R. T. Johnson. "A postprophase topoisomerase II-dependent chromatid core separation step in the formation of metaphase chromosomes." Journal of Cell Biology 131, no. 1 (1995): 7–17. http://dx.doi.org/10.1083/jcb.131.1.7.

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Metaphase chromatids are believed to consist of loops of chromatin anchored to a central scaffold, of which a major component is the decatenatory enzyme DNA topoisomerase II. Silver impregnation selectively stains an axial element of metaphase and anaphase chromatids; but we find that in earlier stages of mitosis, silver staining reveals an initially single, folded midline structure, which separates at prometaphase to form two chromatid axes. Inhibition of topoisomerase II prevents this separation, and also prevents the contraction of chromatids that occurs when metaphase is arrested. Immunolo
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Daban, Joan-Ramon. "The energy components of stacked chromatin layers explain the morphology, dimensions and mechanical properties of metaphase chromosomes." Journal of The Royal Society Interface 11, no. 92 (2014): 20131043. http://dx.doi.org/10.1098/rsif.2013.1043.

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The measurement of the dimensions of metaphase chromosomes in different animal and plant karyotypes prepared in different laboratories indicates that chromatids have a great variety of sizes which are dependent on the amount of DNA that they contain. However, all chromatids are elongated cylinders that have relatively similar shape proportions (length to diameter ratio approx. 13). To explain this geometry, it is considered that chromosomes are self-organizing structures formed by stacked layers of planar chromatin and that the energy of nucleosome–nucleosome interactions between chromatin lay
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Mishra, Prashant K., Sultan Ciftci-Yilmaz, David Reynolds, et al. "Polo kinase Cdc5 associates with centromeres to facilitate the removal of centromeric cohesin during mitosis." Molecular Biology of the Cell 27, no. 14 (2016): 2286–300. http://dx.doi.org/10.1091/mbc.e16-01-0004.

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Sister chromatid cohesion is essential for tension-sensing mechanisms that monitor bipolar attachment of replicated chromatids in metaphase. Cohesion is mediated by the association of cohesins along the length of sister chromatid arms. In contrast, centromeric cohesin generates intrastrand cohesion and sister centromeres, while highly cohesin enriched, are separated by >800 nm at metaphase in yeast. Removal of cohesin is necessary for sister chromatid separation during anaphase, and this is regulated by evolutionarily conserved polo-like kinase (Cdc5 in yeast, Plk1 in humans). Here we addre
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Chen, Yu-Fan, Chia-Ching Chou, and Marc R. Gartenberg. "Determinants of Sir2-Mediated, Silent Chromatin Cohesion." Molecular and Cellular Biology 36, no. 15 (2016): 2039–50. http://dx.doi.org/10.1128/mcb.00057-16.

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Cohesin associates with distinct sites on chromosomes to mediate sister chromatid cohesion. Single cohesin complexes are thought to bind by encircling both sister chromatids in a topological embrace. Transcriptionally repressed chromosomal domains in the yeastSaccharomyces cerevisiaerepresent specialized sites of cohesion where cohesin binds silent chromatin in a Sir2-dependent fashion. In this study, we investigated the molecular basis for Sir2-mediated cohesion. We identified a cluster of charged surface residues of Sir2, collectively termed the EKDK motif, that are required for cohesin func
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Dissertations / Theses on the topic "Chromatius"

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Besnard, Emilie. "Modifications de l'organisation de la chromatine liées à l’entrée en sénescence et son impact sur la réplication du génome." Thesis, Montpellier 1, 2010. http://www.theses.fr/2010MON1T008.

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L'entrée en sénescence, considérée comme un arrêt irréversible du cycle, se caractérise par une modification de l'organisation de la chromatine formant de véritables foyers d' hétérochromatine spécifiques (SAHF) coordonnée à une modification d'expression génique et à un déclin progressif de la compétence à répliquer le génome. Ainsi, au cours de ma thèse, j'ai voulu comprendre en quoi ces changements d'organisation du génome pouvaient influer sur la distribution et l'activation des origines d e réplication lors de l'entrée en sénescence réplicative ou déclenchée de façon prématurée par l'inhib
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Beurton, Flore. "Étude de l’interaction physique et fonctionnelle entre le complexe histone méthyltransférase SET-2/SET1 et le complexe histone déacétylase SIN-3S dans l’embryon de C. elegans." Thesis, Lyon, 2018. http://www.theses.fr/2018LYSEN017.

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Les complexes histones méthyltransférases SET1, hautement conservés de la levure aux mammifères, sont ciblés aux régions promotrices par la protéine CFP1/CXXC, résultant en l’implémentation de la méthylation de la lysine 4 de l’histone H3 (H3K4me), modification post-traductionnelle influençant l’expression des gènes selon le contexte chromatinien. La présence de plusieurs complexes SET1 distincts dans différents systèmes modèles eucaryotes a compliqué l’étude de leurs fonctions dans un contexte développemental. Caenorhabditis elegans contient une seule protéine homologue de SET1, SET-2, et d’u
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Jurisic, Anamarija. "Développement d'une approche méthodologique basée sur la biotinylation in vivo de protéines de la chromatine - Application à l’étude des interactions entre des domaines chromosomiques et une protéine de l'enveloppe nucléaire dans des cellules individuelles." Thesis, Université Paris-Saclay (ComUE), 2016. http://www.theses.fr/2016SACLS349.

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Les arguments en faveur d’un rôle important de l'architecture des chromosomes en interphase pour la régulation des gènes et la maintenance du génome s’accumulent rapidement. Au cours de l'interphase, les chromosomes sont positionnés de façon non aléatoire l’un par rapport à l'autre et fournissent ainsi des points de repère nucléaires. Deux types d'interactions contribuent probablement à ce positionnement non aléatoire: (i) des domaines subchromosomiques interagissent avec des structures nucléaires telles l'enveloppe nucléaire (EN) et (ii) des interactions intrachromosomiques s’établissent entr
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Marie, Corentine. "The role of Chd7 & Chd8 chromatin remodelers in oligodendrogenesis and (re)myelination." Thesis, Paris 6, 2017. http://www.theses.fr/2017PA066365/document.

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Les oligodendrocytes (OLs) sont les cellules myélinisantes du système nerveux central, s’enroulant autour des axones et permettant la conduction saltatoire du potentiel d’action. Dans la Sclérose en Plaques, des gaines de myélines sont détruites et l’efficacité de la remyélinisation par les précurseurs d’oligodendrocytes (OPCs) diminue avec la progression de la maladie. Une meilleure compréhension du mécanisme qui contrôle la génération des OPCs et leur différentiation est donc essentielle pour développer des thérapies efficaces de remyélinisation. L’oligodendrogenèse, qui comprend les étapes
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Germier, Thomas. "Dynamique de la chromatine et transcription." Thesis, Toulouse 3, 2018. http://www.theses.fr/2018TOU30376.

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La dynamique de la chromatine est affectée par les processus biologiques. Pour comprendre comment la physique de la chromatine et la biologie se repondent, nous avons besoin d'outils pour analyser la dynamique de la chromatine in vivo. Plusieurs systèmes existent pour marquer les loci d'ADN et déterminer efficacement leur position dans le noyau, mais ils présentent des inconvénients dans les cellules de mammifères lorsqu'il s'agit d'étudier le mouvement de la chromatine dans le contexte de processus biologiques. Cela est particulièrement vrai lorsqu'il s'agit de mécanismes où l'ADN doit être l
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Galic, Hrvoje. "Heterochromatin dynamics upon release from stationary phase in budding yeast." Thesis, Montpellier, 2019. http://www.theses.fr/2019MONTT006/document.

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La complexe protéique Sir (Silent Information Regulator) de la levure bourgeonnante est l’acteur principal dans la formation de l’hétérochromatine, qui provoque l’atténuation de l’expression génique par un mécanisme épigénétique. Le complexe Sir lié à la chromatine maternelle est démonté lors de la réplication génomique et puis réformé sur les deux brins nouvellement répliqué. La dynamique de maintien de Sir sur la chromatine pendant le cycle cellulaire et dans de variables conditions de croissance n’est pas bien comprise. Pour comprendre comment la structure chromatinienne telle que l’hétéroc
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Clement, Camille. "Rôle du chaperon d'histone ASF1 dans le recyclage des histones parentales pendant la réplication de l'ADN." Electronic Thesis or Diss., Paris Sciences et Lettres (ComUE), 2018. https://theses.hal.science/tel-02518693.

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Chez les eucaryotes, l’ADN s’enroule autour de protéines appelées histones pour former la chromatine. Cette structure permet, d’une part, de compacter le génome dans le noyau, mais également de réguler son expression. En effet, les histones sont porteuses d’information dite « épigénétique » : elles existent sous différentes formes, les variants d’histone, et peuvent porter des modifications post-traductionnelles. La présence de tels variants et modifications organise le génome en domaines au statut transcriptionnel différent.La réplication de l’ADN déstabilise la structure chromatinienne, et r
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Szabo, Quentin. "Étude du repliement tridimensionnel de la chromatine en domaines topologiques." Thesis, Montpellier, 2019. http://www.theses.fr/2019MONTT064.

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Mon projet de thèse a consisté à étudier les mécanismes du repliement tridimensionnel du génome dans les cellules eucaryotes. L’organisation des chromosomes est étroitement liée à la régulation de nombreuses fonctions biologiques, telles que le contrôle de l’expression génique, la réplication de l’ADN ou encore la stabilité génomique. La méthode de « chromosome conformation capture » Hi-C, qui permet la cartographie des interactions entre régions d’ADN, a révélé que chez de nombreuses espèces, le génome est organisé en domaines enrichis en interactions chromatiniennes, les « Topologically Asso
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Bourbousse, Clara. "Dynamiques chromatiniennes au cours de la photomorphogenèse chez Arabidopsis thaliana." Thesis, Paris 11, 2012. http://www.theses.fr/2012PA112097.

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Les états chromatiniens peuvent être étudiés à l’échelle des unités transcriptionnelles par des approches moléculaires ou à l'échelle plus globale de l'hétérochromatine structurée au sein de chromocentres par des approches cytogénétiques. Ces deux niveaux d’organisation de la chromatine sont dynamiques et influencent l'ensemble des processus nucléaires. L’objectif de cette thèse était d'avancer la compréhension des dynamiques chromatiniennes à ces deux échelles chez la plante modèle Arabidopsis thaliana, en se focalisant sur une transition développementale majeure, la photomorphogenèse. Le pro
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Acquaviva, Laurent. "L' intéraction entre SPP1 et MER 2 : Le chaînon manquant entre la triméthylation de H3K4 et la recombinaison méiotique chez Saccharomyces cerevisiae?" Thesis, Aix-Marseille, 2012. http://www.theses.fr/2012AIXM4013.

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Chez Saccharomyces cerevisiae, la methylation de la lysine 4 de l'histone H3 (H3K4) est catalysée par le complexe à activité methyltransférase Set1, conservé au cours de l'évolution. Durant la méiose, l'absence de Set1 conduit à un retard de démarrage de la phase S, et à un défaut dans la formation des coupures double-brin de l'ADN (CDBs). Nous avons cherché à mieux caractériser ces deux conséquences phénotypiques liées à l'absence de Set1. Nous montrons que le retard de réplication est lié à la perte de méthylation de H3K4 mais qu'il ne résulte pas d'un défaut d'activité des kinases responsab
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Books on the topic "Chromatius"

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Giornate di studio per il 16o centenario dell'elevazione all'episcopato di San Cromazio Vescovo di Aquileia (1988 Aquileia, Italy). Chromatius Episcopus 388-1988. Arti grafiche Friulane, 1989.

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Centro di antichità altoadriatiche (Aquileia, Italy), ed. Chromatius episcopus, 388-1988. Arti grafiche friulane, 1989.

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Beatrice, Pier Franco, and Alessio Persic, eds. Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.6.09070802050003050304090106.

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Harambourg, Lydia. Roger Taillibert: Évasions chromatiques = chromatic evasions. Somogy, 2007.

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Françoise, Thelamon, and Comitato nazionale per il XVI centenario della morte di San Cromazio vescovo di Aquileia, eds. Chromatius of Aquileia and his age: Proceedings of the international conference held in Aquileia, 22-24 May 2008. Brepols, 2011.

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Beatrice, Pier Franco, and Alessio Peršič. Chromatius of Aquileia and his age: Proceedings of the international conference held in Aquileia, 22-24 May 2008. Brepols, 2011.

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David, Allis C., and Wu Carl, eds. Chromatin and chromatin remodeling enzymes. Elsevier/Academic Press, 2004.

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1942-, Gualerzi Claudio O., Pon Cynthia L. 1942-, and Symposium "Selected Topics on Chromatin Structure and Function" (1985 : University of Camerino), eds. Bacterial chromatin. Springer-Verlag, 1986.

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Horsfield, Julia, and Judith Marsman, eds. Chromatin. Springer US, 2022. http://dx.doi.org/10.1007/978-1-0716-2140-0.

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van Holde, Kensal E. Chromatin. Springer New York, 1989. http://dx.doi.org/10.1007/978-1-4612-3490-6.

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Book chapters on the topic "Chromatius"

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Lemarié, Joseph. "«Chromatius redivivus»." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100870.

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Williams, Megan H. "Chromatius and Jerome on Matthew." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100867.

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Pieri, Francesco. "Chromatius and the Apocalypse of John." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100879.

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Corgnali, Duilio, Pier Franco Beatrice, and Alessio Peršič. "Introduzione." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100858.

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Thelamon, Françoise. "In memoriam Joseph Lemarié (1917-2008)." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100859.

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Thelamon, Françoise. "Père Joseph Lemarié: bibliographie 1957-2004." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100860.

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Beatrice, Pier Franco. "The Sign of Jonah. The Paschal Mystery and the Conversion of the Pagans according to Chromatius of Aquileia." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100861.

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Steuernagel, Dirk. "Der topographische und soziale Rahmen der heidnischen Kulte im Aquileia des 4 Jhs. n. Chr." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100862.

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Bratož, Rajko. "La Chiesa aquileiese e l’Illirico Occidentale al tempo di Cromazio." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100863.

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Rousseau, Philip. "Homily and Asceticism in the North Italian Episcopate." In Chromatius of Aquileia and His Age. Brepols Publishers, 2011. http://dx.doi.org/10.1484/m.ipm-eb.1.100864.

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Conference papers on the topic "Chromatius"

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Delgado-Aguillon, J., Camilo Ruiz, M. Rosete-Aguilar, Enrique García-García, Cruz Méndez, and J. Garduño-Mejia. "Chromatic dispersion effects by sub-100 fs pulses on a non-linear confocal positioner based on a GaP photodiode." In Latin America Optics and Photonics Conference. Optica Publishing Group, 2024. https://doi.org/10.1364/laop.2024.tu4a.19.

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A nonlinear confocal positioning system was implemented for a ti:sapphire laser, where chromatic dispersion plays an important role for pulses below 100 fs. We use an astigmatic positioning system to characterize the chromatic aberration introduced.
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Devaney, Nicholas, and Bruno Femenía Castellá. "Chromatic anisoplanatism in adaptive optics." In Adaptive Optics Systems IX, edited by Dirk Schmidt, Elise Vernet, and Kathryn J. Jackson. SPIE, 2024. http://dx.doi.org/10.1117/12.3020056.

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Chen, Zhihao, and Yucui Li. "Chromatic aberration of a nonlinear graded-index-rod lens." In OSA Annual Meeting. Optica Publishing Group, 1993. http://dx.doi.org/10.1364/oam.1993.tub.3.

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It is well known that the use of graded index (GRIN) rod lenses provides many advantages over the use of conventional lenses. A nonlinear (intensity-dependent) GRIN rod lens may be the logical evolution of the linear (intensity-independent) GRIN rod lens. With the development of laser technology, nonlinear fiber optics, and nonlinear optical material, researches on nonlinear GRIN rod lenses are clearly needed. A nonlinear GRIN rod lens, for example, an erbium doped GRIN fiber lens, may be fabricated by the current technology. From the reference1, it is expected that the nonlinear coefficient i
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Perin, Gavin, and Linda Mathews. "Chromatic Cartography." In ARTECH2017: Eighth International Conference on Digital Arts. ACM, 2017. http://dx.doi.org/10.1145/3106548.3106597.

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Urbin, Ágnes, lára Wenzel, and Balázs Vince Nagy. "CHROMATIC DISCRIMINATION UNDER DIFFERENT STATES OF CHROMATIC ADAPTATION." In CIE 2017 Midterm Meetings and Conference on Smarter Lighting for Better Life. International Commission on Illumination, CIE, 2018. http://dx.doi.org/10.25039/x44.2017.pp02.

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Chen, Jiabin, Shuyuan Guan, Shaobai Li, Wenjun Kang, and Rongguang Liang. "Large chromatic shift objective for chromatic confocal microscopy." In Three-Dimensional and Multidimensional Microscopy: Image Acquisition and Processing XXXI, edited by Thomas G. Brown, Tony Wilson, and Laura Waller. SPIE, 2024. http://dx.doi.org/10.1117/12.3007669.

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Zhang, Xiao Xiao, Arthur Bradley, and Larry Thibos. "Interaction between longitudinal and lateral chromatic aberrations." In OSA Annual Meeting. Optica Publishing Group, 1988. http://dx.doi.org/10.1364/oam.1988.mr40.

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Human eyes exhibit both longitudinal and lateral chromatic aberration. Achromatizing lenses have been designed to correct longitudinal chromatic aberration. However, these lenses are not designed to correct for the lateral chromatic aberration of the eye. Based on optical models of human eyes and two different achromatizing lenses,1,2 we have evaluated the relative effects on retinal image quality of longitudinal and lateral chromatic aberrations separately and in combination. The eye’s 2 diopters of longitudinal chromatic aberration may seem large, but with a 5-mm pupil its effect in the reti
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Wei, M. C., K. Y. Hung, Y. J. Chuang, and S. H. Huang. "The chromatic dispersion module with large chromatic focal shift." In 2012 7th IEEE International Conference on Nano/Micro Engineered and Molecular Systems (NEMS). IEEE, 2012. http://dx.doi.org/10.1109/nems.2012.6196798.

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Sekiguchi, Nobutoshi, David R. Williams, and David H. Brainard. "Foveal resolution limit for chromatic interference fringes." In OSA Annual Meeting. Optica Publishing Group, 1991. http://dx.doi.org/10.1364/oam.1991.mw1.

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We measured chromatic contrast sensitivity using red–green interference fringes. This allowed the production of chromatic gratings with high intensity, spatial frequency, and contrast, without blur ring by optical factors such as axial chromatic aberration and diffraction. One persistent problem in producing isoluminant gratings is the possibility of a luminance artifact due to a phase shift between the red and green components, which can be caused by transverse chromatic aberration or, in the Maxwellian view, movements of the head and eyes relative to the optical system. We intro duce a new p
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Miks, Antonin, Jiri Novak, and Pavel Novak. "Chromatic aberration coefficients." In SPIE Proceedings, edited by Miroslav Miler, Dagmar Senderáková, and Miroslav Hrabovský. SPIE, 2007. http://dx.doi.org/10.1117/12.739687.

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Reports on the topic "Chromatius"

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Kun, Ernest. Molecular Toxicology of Chromatin. Defense Technical Information Center, 1992. http://dx.doi.org/10.21236/ada247307.

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Jeans, C., M. Thelen, and A. Noy. Single Molecule Studies of Chromatin. Office of Scientific and Technical Information (OSTI), 2006. http://dx.doi.org/10.2172/877892.

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Lee, S. Y. Chromatic Correction for the RHIC Lattice. Office of Scientific and Technical Information (OSTI), 1986. http://dx.doi.org/10.2172/1119271.

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Pandita, Tej K. Chromatin Structure and Breast Cancer Radiosensitivity. Defense Technical Information Center, 2004. http://dx.doi.org/10.21236/ada434814.

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Maloney, Laurence T. Visual Neural Development and Chromatic Aberration. Defense Technical Information Center, 1993. http://dx.doi.org/10.21236/ada277402.

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Maloney, Laurence T. Visual Neural Development and Chromatic Aberration. Defense Technical Information Center, 1994. http://dx.doi.org/10.21236/ada285064.

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Pandita, Tej K. Chromatin Structure and Breast Cancer Radiosensitivity. Defense Technical Information Center, 2007. http://dx.doi.org/10.21236/ada588290.

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Pandita, Tej K. Chromatin Structure and Breast Cancer Radiosensitivity. Defense Technical Information Center, 2003. http://dx.doi.org/10.21236/ada423679.

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Richards, Gordon, Christina Peters, Bee Martin, et al. Leveraging Differential Chromatic Refraction in LSST. LSST AGN Science Collaboration, 2018. http://dx.doi.org/10.17918/k90k-ey97.

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Duncan, CClarke J. Isolation of Genes Required for the Regulated Separation of Sister Chromatids. Defense Technical Information Center, 1998. http://dx.doi.org/10.21236/ada352347.

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