Academic literature on the topic 'Dmi3'

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Journal articles on the topic "Dmi3"

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Ané, Jean-Michel, Julien Lévy, Philippe Thoquet, et al. "Genetic and Cytogenetic Mapping of DMI1, DMI2, and DMI3 Genes of Medicago truncatula Involved in Nod Factor Transduction, Nodulation, and Mycorrhization." Molecular Plant-Microbe Interactions® 15, no. 11 (2002): 1108–18. http://dx.doi.org/10.1094/mpmi.2002.15.11.1108.

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The DMI1, DMI2, and DMI3 genes of Medicago truncatula, which are required for both nodulation and mycorrhization, control early steps of Nod factor signal transduction. Here, we have used diverse approaches to pave the way for the map-based cloning of these genes. Molecular amplification fragment length polymorphism markers linked to the three genes were identified by bulked segregant analysis. Integration of these markers into the general genetic map of M. truncatula revealed that DMI1, DMI2, and DMI3 are located on linkage groups 2, 5, and 8, respectively. Cytogenetic studies using fluoresce
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Messinese, Elsa, Jeong-Hwan Mun, Li Huey Yeun, et al. "A Novel Nuclear Protein Interacts With the Symbiotic DMI3 Calcium- and Calmodulin-Dependent Protein Kinase of Medicago truncatula." Molecular Plant-Microbe Interactions® 20, no. 8 (2007): 912–21. http://dx.doi.org/10.1094/mpmi-20-8-0912.

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Many higher plants establish symbiotic relationships with arbuscular mycorrhizal (AM) fungi that improve their ability to acquire nutrients from the soil. In addition to establishing AM symbiosis, legumes also enter into a nitrogen-fixing symbiosis with bacteria known as rhizobia that results in the formation of root nodules. Several genes involved in the perception and transduction of bacterial symbiotic signals named “Nod factors” have been cloned recently in model legumes through forward genetic approaches. Among them, DMI3(Doesn't Make Infections 3) is a calcium- and calmodulin-dependent k
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Bersoult, Anne, Sylvie Camut, Ariana Perhald, Attila Kereszt, György B. Kiss, and Julie V. Cullimore. "Expression of the Medicago truncatula DMI2 Gene Suggests Roles of the Symbiotic Nodulation Receptor Kinase in Nodules and During Early Nodule Development." Molecular Plant-Microbe Interactions® 18, no. 8 (2005): 869–76. http://dx.doi.org/10.1094/mpmi-18-0869.

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The Medicago truncatula DMI2 gene encodes a receptorlike kinase required for establishing root endosymbioses. The DMI2 gene was shown to be expressed much more highly in roots and nodules than in leaves and stems. In roots, its expression was not altered by nitrogen starvation or treatment with lipochitooligosaccharidic Nod factors. Moreover, the DMI2 mRNA abundance in roots of the nfp, dmi1, dmi3, nsp1, nsp2, and hcl symbiotic mutants was similar to the wild type, whereas lower levels in some dmi2 mutants could be explained by regulation by the nonsense-mediated decay, RNA surveillance mechan
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Godfroy, Olivier, Frédéric Debellé, Ton Timmers, and Charles Rosenberg. "A Rice Calcium- and Calmodulin-Dependent Protein Kinase Restores Nodulation to a Legume Mutant." Molecular Plant-Microbe Interactions® 19, no. 5 (2006): 495–501. http://dx.doi.org/10.1094/mpmi-19-0495.

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The Medicago truncatula DMI3 gene encodes a calcium- and calmodulin-dependent protein kinase (CCaMK) that is necessary for the establishment of both rhizobial and mycorrhizal symbioses. The two symbiotic signaling pathways diverge downstream of DMI3; therefore, it has been proposed that legumes have evolved a particular form of CCaMK, acting like a switch able both to discriminate between rhizobial and mycorrhizal calcium signatures and to trigger the appropriate downstream signaling pathway. To test this hypothesis, we examined whether a CCaMK gene from a nonlegume species was able to restore
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Ovchinnikova, Evgenia, Etienne-Pascal Journet, Mireille Chabaud, et al. "IPD3 Controls the Formation of Nitrogen-Fixing Symbiosomes in Pea and Medicago Spp." Molecular Plant-Microbe Interactions® 24, no. 11 (2011): 1333–44. http://dx.doi.org/10.1094/mpmi-01-11-0013.

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A successful nitrogen-fixing symbiosis requires the accommodation of rhizobial bacteria as new organelle-like structures, called symbiosomes, inside the cells of their legume hosts. Two legume mutants that are most strongly impaired in their ability to form symbiosomes are sym1/TE7 in Medicago truncatula and sym33 in Pisum sativum. We have cloned both MtSYM1 and PsSYM33 and show that both encode the recently identified interacting protein of DMI3 (IPD3), an ortholog of Lotus japonicus (Lotus) CYCLOPS. IPD3 and CYCLOPS were shown to interact with DMI3/CCaMK, which encodes a calcium- and calmodu
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Amiour, Nardjis, Ghislaine Recorbet, Franck Robert, Silvio Gianinazzi, and Eliane Dumas-Gaudot. "Mutations in DMI3 and SUNN Modify the Appressorium-Responsive Root Proteome in Arbuscular Mycorrhiza." Molecular Plant-Microbe Interactions® 19, no. 9 (2006): 988–97. http://dx.doi.org/10.1094/mpmi-19-0988.

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Modification of the Medicago truncatula root proteome during the early stage of arbuscular mycorrhizal symbiosis was investigated by comparing, using two-dimensional electrophoresis, the protein patterns obtained from non-inoculated roots and roots synchronized for Glomus intraradices appressorium formation. This approach was conducted in wild-type (J5), mycorrhiza-defective (TRV25, dmi3), and autoregulation-defective (TR122, sunn) M. truncatula genotypes. The groups of proteins that responded to appressorium formation were further compared between wild-type and mutant genotypes; few overlaps
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Seddas, Pascale M. A., Cecilia M. Arias, Christine Arnould, et al. "Symbiosis-Related Plant Genes Modulate Molecular Responses in an Arbuscular Mycorrhizal Fungus During Early Root Interactions." Molecular Plant-Microbe Interactions® 22, no. 3 (2009): 341–51. http://dx.doi.org/10.1094/mpmi-22-3-0341.

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To gain further insight into the role of the plant genome in arbuscular mycorrhiza (AM) establishment, we investigated whether symbiosis-related plant genes affect fungal gene expression in germinating spores and at the appressoria stage of root interactions. Glomus intraradices genes were identified in expressed sequence tag libraries of mycorrhizal Medicago truncatula roots by in silico expression analyses. Transcripts of a subset of genes, with predicted functions in transcription, protein synthesis, primary or secondary metabolism, or of unknown function, were monitored in spores and germi
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Proffer, Tyre J., Raffaele Berardi, Zhonghua Ma, et al. "Occurrence, Distribution, and Polymerase Chain Reaction-Based Detection of Resistance to Sterol Demethylation Inhibitor Fungicides in Populations of Blumeriella jaapii in Michigan." Phytopathology® 96, no. 7 (2006): 709–17. http://dx.doi.org/10.1094/phyto-96-0709.

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The intensive use of site-specific fungicides in agricultural production provides a potent selective mechanism for increasing the frequency of fungicide-resistant isolates in pathogen populations. Practical resistance occurs when the frequency and levels of resistance are great enough to limit the effectiveness of disease control in the field. Cherry leaf spot (CLS), caused by the fungus Blumeriella jaapii, is a major disease of cherry trees in the Great Lakes region. The site-specific sterol demethylation inhibitor fungicides (DMIs) have been used extensively in the region. In 2002, CLS contr
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Ma, Zhonghua, Tyre J. Proffer, Janette L. Jacobs та George W. Sundin. "Overexpression of the 14α-Demethylase Target Gene (CYP51) Mediates Fungicide Resistance in Blumeriella jaapii". Applied and Environmental Microbiology 72, № 4 (2006): 2581–85. http://dx.doi.org/10.1128/aem.72.4.2581-2585.2006.

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ABSTRACT Sterol demethylation inhibitor (DMI) fungicides are widely used to control fungi pathogenic to humans and plants. Resistance to DMIs is mediated either through alterations in the structure of the target enzyme CYP51 (encoding 14α-demethylase), through increased expression of the CYP51 gene, or through increased expression of efflux pumps. We found that CYP51 expression in DMI-resistant (DMIR) isolates of the cherry leaf spot pathogen Blumeriella jaapii was increased 5- to 12-fold compared to that in DMI-sensitive (DMIS) isolates. Analysis of sequences upstream of CYP51 in 59 DMIR isol
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Parádi, István, Diederik van Tuinen, Dominique Morandi, et al. "Transcription of Two Blue Copper-Binding Protein Isogenes Is Highly Correlated with Arbuscular Mycorrhizal Development in Medicago truncatula." Molecular Plant-Microbe Interactions® 23, no. 9 (2010): 1175–83. http://dx.doi.org/10.1094/mpmi-23-9-1175.

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Expression profiling of two paralogous arbuscular mycorrhizal (AM)-specific blue copper-binding gene (MtBcp1a and MtBcp1b) isoforms was performed by real-time quantitative polymerase chain reaction in wild-type Medicago truncatula Jemalong 5 (J5) during the mycorrhizal development with Glomus intraradices for up to 7 weeks. Time-course analysis in J5 showed that expression of both MtBcp1 genes increased continuously and correlated strongly with the colonization intensity and arbuscule content. MtPT4, selected as a reference gene of the functional plant-fungus association, showed a weaker corre
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Dissertations / Theses on the topic "Dmi3"

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Lévy, Julien. "Clonage positionnel du gène DMI3 impliqué dans la nodulation et la mycorhization chez Medicago truncatula." Toulouse 3, 2003. http://www.theses.fr/2003TOU30193.

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Messinese, Elsa. "Recherche de partenaires protéiques de la protéine DMI3/CCaMK chez Medicago truncatula : analyse comparée du phosphoprotéome de plante sauvage et mutante ; Isolement de la protéine nucléaire IPD3 (Interacting Protein of DMI3) par une approche de double-hybride chez la levure." Toulouse 3, 2007. http://www.theses.fr/2007TOU30045.

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L’établissement de la symbiose Rhizobium-Légumineuse repose sur une reconnaissance spécifique par la plante hôte de signaux microbiens : les facteurs Nod. Chez Medicago truncatula, la voie de signalisation Nod fait intervenir DMI3, une protéine kinase dépendante du calcium et de la calmoduline (CCaMK), impliquée dans le décodage des oscillations calciques générées dans le noyau en réponse aux facteurs Nod. Le travail de thèse a visé à identifier les substrats ou les régulateurs de la CCaMK afin de mieux comprendre son mode d’action. L’étude comparée du phosphoprotéome racinaire de la lignée sa
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Godfroy, Olivier Rosenberg Charles Debelle Frédéric. "Etude génétique et moléculaire de deux gènes de Medicago truncatula, DMI3 et RPG, contrôlant l'établissement de symbioses racinaires." Toulouse (Université Paul Sabatier, Toulouse 3), 2008. http://thesesups.ups-tlse.fr/258.

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Godfroy, Olivier. "Etude génétique et moléculaire de deux gènes de Medicago truncatula, DMI3 et RPG, contrôlant l'établissement de symbioses racinaires." Toulouse 3, 2008. http://thesesups.ups-tlse.fr/258/.

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Le gène DMI3 de la légumineuse modèle Medicago truncatula code pour une Calcium and Calmodulin dependent protein Kinase (CCaMK) qui intervient dans les voies de signalisation nécessaires à l'établissement des symbioses mycorhizienne et rhizobienne. Nous avons montré qu'une CCaMK de riz peut restaurer la capacité d'un mutant dmi3 à noduler en présence de rhizobium. Une CCaMK de non légumineuse est donc capable de reconnaître et de transduire le signal calcique induit par les facteurs Nod du rhizobium. De plus, les résultats de complémentation ainsi que les études d'expression tissulaire de ce g
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Rival, Pauline. "Coordination entre l'épiderme et le cortex dans l'établissement des endosymbioses racinaires chez Medicago truncatula : rôle du gène DMI3 codant une protéine calcium et calmoduline dépendante." Toulouse 3, 2013. http://thesesups.ups-tlse.fr/1966/.

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Depuis qu'elles ont conquis la surface de la terre, les plantes ont développé de nombreuses stratégies pour faire face aux carences en eau et en nutriments essentiels de leur environnement. L'une des plus fascinantes est sans doute la mise en place d'endosymbioses racinaires avec des microorganismes du sol. Ainsi les champignons mycorhiziens à arbuscules (AM), qu'on trouve associés avec 80% des espèces végétales terrestres, permettent aux plantes d'utiliser plus efficacement les ressources du sol en phosphate et en eau. Les bactéries du sol fixatrices d'azote regroupées sous le terme de rhizob
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Sanchez, Lisa. "Identification chez Medicago truncatula d'une voie de transduction du signal dépendante du gène DMI3, inductible par Pseudomonas fluorescens et l'auxine : comparaison avec les interactions mycorhizienne et rhizobienne." Dijon, 2004. http://www.theses.fr/2004DIJOS061.

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Chohan, Zahid H. "Co-ordination chemistry of the 1,3-dithiole-2-thione (DMIT) and 2-one-4,5-dithiolato (DMIO) compounds." Thesis, University of Aberdeen, 1997. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.244990.

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Various bis-dmio and -dmit zincate complexes, [Q]<SUB>2</SUB>[Zn(dmio)<SUB>2</SUB>] [Q = NEt<SUB>4</SUB>, 1,4-dmp, Ph<SUB>4</SUB>P and FcCH<SUB>2</SUB>NMe<SUB>3</SUB>] and [Q]<SUB>2</SUB>[Zn(dmit)<SUB>2</SUB>] [Q = FcCH<SUB>2</SUB>NMe<SUB>3</SUB>], have been prepared and characterised by IR, <SUP>1</SUP>H and <SUP>13</SUP>C-NMR spectral and elemental analysis data. The solid state structure of [FcCH<SUB>2</SUB>NMe<SUB>3</SUB>]<SUB>2</SUB>[Zn(dmio)<SUB>2</SUB>] was determined by X-ray crystallography. The complexes, [Q]<SUB>2</SUB>[Zn(dmio)<SUB>2</SUB>] and [Q]<SUB>2</SUB>[Zn(dmit)<SUB>2</SUB>]
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Trugilho, Monique Ramos de Oliveira. "Estudo da relação estrutura-função da proteína antiofídica DM43." reponame:Repositório Institucional da FIOCRUZ, 2009. https://www.arca.fiocruz.br/handle/icict/9109.

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Made available in DSpace on 2014-12-05T18:41:19Z (GMT). No. of bitstreams: 2 license.txt: 1748 bytes, checksum: 8a4605be74aa9ea9d79846c1fba20a33 (MD5) monique_trugilho_ioc_dout_2009.pdf: 10986205 bytes, checksum: 7de098da6c6025322360c2bb8516382d (MD5) Previous issue date: 2014-11-18<br>Fundação Oswaldo Cruz. Instituto Oswaldo Cruz. Rio de Janeiro, RJ, Brasil<br>A proteína antiofídica DM43 isolada do soro do gambá Didelphis aurita inibe o efeito hemorrágico e a atividade proteolítica de metaloproteases de venenos de serpentes (SVMPs). Ao se ligar às SVMPs, o homodímero de DM43 se dissocia
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Yang, Zhen. "Quality of service management for multicast applications using MPEG-4/DMIF." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2000. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape3/PQDD_0017/MQ58520.pdf.

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COUTINHO, Izabella Bezerra. "Sor??o de zinco, c?dmio, cobre e chumbo em organossolos." Universidade Federal Rural do Rio de Janeiro, 2014. https://tede.ufrrj.br/jspui/handle/jspui/1798.

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Submitted by Jorge Silva (jorgelmsilva@ufrrj.br) on 2017-06-20T20:25:30Z No. of bitstreams: 1 2014 - Izabella Bezerra Coutinho.pdf: 1340327 bytes, checksum: f1f665c57591a73de6229abeb35569f3 (MD5)<br>Made available in DSpace on 2017-06-20T20:25:30Z (GMT). No. of bitstreams: 1 2014 - Izabella Bezerra Coutinho.pdf: 1340327 bytes, checksum: f1f665c57591a73de6229abeb35569f3 (MD5) Previous issue date: 2014-09-11<br>CNPq<br>Soils have the capacity to retain metals due to the occurrence of the phenomenon of sorption, which is the accumulation of ions or molecules on the surface of organic and mi
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Books on the topic "Dmi3"

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Jorro, Francisco Aura. Diccionario micénico (DMic.). Consejo Superior de Investigaciones Cientifícas, Instituto de Filología, 1985.

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Gessel, John. DMI mathematics systems. CTB/McGraw-Hill, 1985.

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Muktamar, Dewan Masjid Indonesia. Ketetapan hasil Muktamar V Dewan Masjid Indonesia (DMI): Masa bakti 2006-2011. Pimpinan Pusat, Dewan Masjid Indonesia, 2006.

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Bayles, R. A. Yellow rust of wheat-survey of sensitivity to DMI fungicides in 1997. HGCA, 1998.

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Service, Direct Mail Information, ed. DMIS factbook. Direct Mail Information Service, 1995.

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R, Kramer Thomas, National Institute of Standards and Technology (U.S.), and Catholic University of America, eds. The NIST DMIS interpreter, version 2. U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1998.

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Walker, James R. SAS/DMI user's guide. SAS Institute Inc, 1985.

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Ltd, ICON Group, and ICON Group International Inc. DMIB BERHAD (MALAYSIA): Labor Productivity Benchmarks and International Gap Analysis. 2nd ed. Icon Group International, 2000.

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Ltd, ICON Group. DMIB BERHAD (MALAYSIA): International Competitive Benchmarks and Financial Gap Analysis. 2nd ed. Icon Group International, Inc., 2000.

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inc, International Resource Development, ed. PBX/computer interfaces: The impact of CPI, DMI, ISDN, and IBM. International Resource Development, 1986.

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Book chapters on the topic "Dmi3"

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Ishiguro, Takehiko, and Kunihiko Yamaji. "DMIT Salts: Anion Conductors." In Springer Series in Solid-State Sciences. Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-97190-7_7.

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Calegario, Filipe. "Challenges in Designing DMIs." In Designing Digital Musical Instruments Using Probatio. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-030-02892-3_2.

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Ishiguro, Takehiko, Kunihiko Yamaji, and Gunzi Saito. "DMIT Salts: Anion Conductors." In Springer Series in Solid-State Sciences. Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-642-58262-2_7.

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Ziogas, Basil Nicholas, and Anastasios Andreas Malandrakis. "Sterol Biosynthesis Inhibitors: C14 Demethylation (DMIs)." In Fungicide Resistance in Plant Pathogens. Springer Japan, 2015. http://dx.doi.org/10.1007/978-4-431-55642-8_13.

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Meena, Shweta, Rahul Johari, John Sushant Sundharam, and Kalpana Gupta. "CbdA: Cloud Computing Based DMIS on ANEKA." In Communications in Computer and Information Science. Springer Singapore, 2017. http://dx.doi.org/10.1007/978-981-10-6544-6_1.

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Chenevez, Jérôme. "Advection Experiments with DMI-HIRLAM-TRACER." In Air Pollution Modelling and Simulation. Springer Berlin Heidelberg, 2002. http://dx.doi.org/10.1007/978-3-662-04956-3_21.

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Holze, Rudolf. "Ionic conductivities of DMIm-(HF)2.3F ionic liquid." In Electrochemistry. Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-642-02723-9_468.

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Clark, R. A., A. E. Underhill, R. Friend, et al. "Synthesis and Properties of the New Molecular Metals Na[Ni(dmit)2]2 and NH4[Ni(dmit)2]2." In Springer Proceedings in Physics. Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-75424-1_5.

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Baklanov, Alexander, Alexander Mahura, Ulrik Korsholm, Roman Nuterman, Jens Havskov Sørensen, and Bjarne Amstrup. "Overview of DMI ACT-NWP Modelling Systems." In Integrated Systems of Meso-Meteorological and Chemical Transport Models. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-13980-2_16.

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Wu, Zhenbin, Baocui Chen, and Xuebo Chen. "Sensitivity Analysis of Intercultural Relationship Based on DMIS Model." In Advances in Intelligent Systems and Computing. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-20145-6_60.

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Conference papers on the topic "Dmi3"

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Borovicka, Michael. "DMIS." In the 6th International Conference. ACM Press, 2008. http://dx.doi.org/10.1145/1497185.1497288.

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Zhang, Shuang, Peiji Wu, Peng Wang, and Cheng Ye. "Optical power limiting of [M(DMID) 2 ][C] x and [M(DMIT) 2 ][C] X (M=NI,CU)(C=TMA;TBA)." In Asia-Pacific Optical and Wireless Communications Conference and Exhibit, edited by Tien Pei Lee and Qiming Wang. SPIE, 2001. http://dx.doi.org/10.1117/12.445011.

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Barbara, Fadi, and Claudio Schifanella. "DMix: decentralized mixer for unlinkability." In 2020 2nd Conference on Blockchain Research & Applications for Innovative Networks and Services (BRAINS). IEEE, 2020. http://dx.doi.org/10.1109/brains49436.2020.9223282.

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"DMIR 2007 Organizing and Program Committees." In 21st International Conference on Advanced Information Networking and Applications Workshops (AINAW'07). IEEE, 2007. http://dx.doi.org/10.1109/ainaw.2007.155.

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Hinrichsen, Amelie, and Till Bovermann. "Post-DMI musical Instruments." In AM '16: Audio Mostly 2016. ACM, 2016. http://dx.doi.org/10.1145/2986416.2986440.

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"Message from the DMIR 2007 Symposium Chairs." In 21st International Conference on Advanced Information Networking and Applications Workshops (AINAW'07). IEEE, 2007. http://dx.doi.org/10.1109/ainaw.2007.234.

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Ahn, Shinyoung, Gyuil Cha, Youngho Kim, Eunji Lim, Seungjo Bae, and Won-Young Kim. "Design of distributed memory integration framework(DMIf)." In 2016 International Conference on Information Networking (ICOIN). IEEE, 2016. http://dx.doi.org/10.1109/icoin.2016.7427128.

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"About DMI College of Engineering." In 2016 International Conference on Electrical, Electronics, and Optimization Techniques (ICEEOT). IEEE, 2016. http://dx.doi.org/10.1109/iceeot.2016.7755675.

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Liang, Hongliang, Yilun Xie, and Yan Song. "DMIA : A Malware Detection System on IOS Platform." In Eighth International Conference on Networks & Communications. Academy & Industry Research Collaboration Center (AIRCC), 2016. http://dx.doi.org/10.5121/csit.2016.61506.

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Duan, Guijiang, and Ye Ren. "A Method of Inspection Feature Evaluation Based on DMIS." In 2015 International Industrial Informatics and Computer Engineering Conference. Atlantis Press, 2015. http://dx.doi.org/10.2991/iiicec-15.2015.299.

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Reports on the topic "Dmi3"

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Kramer, Thomas R., Frederick M. Proctor, William G. Rippey, and Harry Scott. The NIST DMIS interpreter. National Institute of Standards and Technology, 1997. http://dx.doi.org/10.6028/nist.ir.6012.

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Kramer, Thomas R., and John Horst. Users manual for version 2.1.5 of the NIST DMIS test suite (for DMIS 5.1). National Institute of Standards and Technology, 2009. http://dx.doi.org/10.6028/nist.ir.7603.

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Kramer, Thomas R., and John Horst. Maintainers manual for version 2.2.1 of the NIST DMIS test suite (for DMIS 5.2). National Institute of Standards and Technology, 2010. http://dx.doi.org/10.6028/nist.ir.7720.

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Kramer, Thomas R., and John Horst. Users manual for version 2.2.1 of the NIST DMIS test suite (for DMIS 5.2). National Institute of Standards and Technology, 2010. http://dx.doi.org/10.6028/nist.ir.7735.

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Kramer, Thomas R., and John Horst. System builders manual for version 2.1.5 of the NIST DMIS test suite (for DMIS 5.1). National Institute of Standards and Technology, 2009. http://dx.doi.org/10.6028/nist.ir.7610.

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Kramer, Thomas R., and John Horst. System builders manual for version 2.2.1 of the NIST DMIS test suite (for DMIS 5.2). National Institute of Standards and Technology, 2010. http://dx.doi.org/10.6028/nist.ir.7715.

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Kramer, Thomas R., Frederick M. Proctor, William G. Rippey, and Harry Scott. The NIST DMIS interpreter, version 2. National Institute of Standards and Technology, 1998. http://dx.doi.org/10.6028/nist.ir.6252.

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ARMY WAR COLL CARLISLE BARRACKS PA. Department of the Navy (DON) Data Management and Interoperability (DMI) Strategic Plan. Defense Technical Information Center, 2000. http://dx.doi.org/10.21236/ada389811.

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Reed, David M. DPEM (Depot Purchased Equipment Maintenance)Versus DMIF (Depot Maintenance Industrial Fund): What's the Difference and Why Should We Care? Defense Technical Information Center, 1988. http://dx.doi.org/10.21236/ada202640.

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Wade, James Rokwel, Kurt Tomlinson, and Edwin Anthony Bryce. Agile machining and inspection thrust area team-on-machine probing / compatibility assessment of Parametric Technology Corporation (PTC) pro/CMM DMIS with Zeiss DMISEngine. Office of Scientific and Technical Information (OSTI), 2008. http://dx.doi.org/10.2172/941407.

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