The Experts below are selected from a list of 2505 Experts worldwide ranked by ideXlab platform
Peyton H Young - One of the best experts on this subject based on the ideXlab platform.
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innovation diffusion in heterogeneous populations contagion social influence and social learning
The American Economic Review, 2009Co-Authors: Peyton H YoungAbstract:New ideas, products, and practices take time to diffuse, a fact that is often attributed to some form of heterogeneity among potential adopters. This paper examines three broad classes of diffusion models-contagion, social influence, and social learning-and shows how to incorporate heterogeneity into each at a high level of generality without losing analytical tractability. Each type of model leaves a characteristic "footprint" on the shape of the adoption curve which provides a basis for discriminating empirically between them. The approach is illustrated using the classic study of Ryan and Gross (1943) on the diffusion of hybrid corn.
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innovation diffusion in heterogeneous populations contagion social influence and social learning
The American Economic Review, 2009Co-Authors: Peyton H YoungAbstract:New ideas, products, and practices take time to diffuse, a fact that is often attributed to some form of heterogeneity among potential adopters. This paper examines three broad classes of diffusion models -- contagion, social influence, and social learning -- and shows how to incorporate heterogeneity into each at a high level of generality without losing analytical tractability. Each type of model leaves a characteristic "footprint" on the shape of the adoption curve which provides a basis for discriminating empirically between them. The approach is illustrated using the classic study of Ryan and Gross (1943) on the diffusion of hybrid corn. (JEL D83, O33, Q16, Z13)
Yoichi Kamagata - One of the best experts on this subject based on the ideXlab platform.
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Anaerolinea thermolimosa sp. nov., Levilinea saccharolytica gen. nov., sp. nov. and Leptolinea tardivitalis gen. nov., sp. nov., novel filamentous anaerobes, and description of the new classes Anaerolineae Classis nov. and Caldilineae Classis nov. in the bacterial phylum Chloroflexi.
International Journal of Systematic and Evolutionary Microbiology, 2006Co-Authors: Takeshi Yamada, Yuji Sekiguchi, Satoshi Hanada, Hiroyuki Imachi, Akiyoshi Ohashi, Hideki Harada, Yoichi KamagataAbstract:One thermophilic (strain IMO-1T) and two mesophilic (strains KIBI-1T and YMTK-2T) non-spore-forming, non-motile, Gram-negative, multicellular filamentous micro-organisms, which were previously isolated as members of the tentatively named class ‘Anaerolineae’ of the phylum Chloroflexi, were characterized. All isolates were strictly anaerobic micro-organisms. The length of the three filamentous isolates was greater than 100 μm and the width was 0.3–0.4 μm for strain IMO-1T, 0.4–0.5 μm for strain KIBI-1T and thinner than 0.2 μm for strain YMTK-2T. Strain IMO-1T could grow at pH 6.0–7.5 (optimum growth at pH 7.0). The optimal temperature for growth of strain IMO-1T was around 50 °C (growth occurred between 42 and 55 °C). Growth of the mesophilic strains KIBI-1T and YMTK-2T occurred at pH 6.0–7.2 with optimal growth at pH 7.0. Both of the mesophilic strains were able to grow in a temperature range of 25–50 °C with optimal growth at around 37 °C. Yeast extract was required for growth of all three strains. All the strains could grow with a number of carbohydrates in the presence of yeast extract. The G+C contents of the DNA of strains IMO-1T, KIBI-1T and YMTK-2T were respectively 53.3, 59.5 and 48.2 mol%. Major fatty acids for thermophilic strain IMO-1T were anteiso-C17 : 0, iso-C15 : 0, C16 : 0 and anteiso-C15 : 0, whereas those for mesophilic strains KIBI-1T and YMTK-2T were branched C14 : 0, iso-C15 : 0, C16 : 0 and branched C17 : 0, and branched C17 : 0, C16 : 0, C14 : 0 and C17 : 0, respectively. Detailed phylogenetic analyses based on their 16S rRNA gene sequences indicated that the isolates belong to the class-level taxon ‘Anaerolineae’ of the bacterial phylum Chloroflexi, which for a long time had been considered as a typical uncultured clone cluster. Their morphological, physiological, chemotaxonomic and genetic traits strongly support the conclusion that these strains should be described as three novel independent taxa in the phylum Chloroflexi. Here, Anaerolinea thermolimosa sp. nov. (type strain IMO-1T=JCM 12577T=DSM 16554T), Levilinea saccharolytica gen. nov., sp. nov. (type strain KIBI-1T=JCM 12578T=DSM 16555T) and Leptolinea tardivitalis gen. nov., sp. nov. (type strain YMTK-2T=JCM 12579T=DSM 16556T) are proposed. In addition, we formally propose to subdivide the tentative class-level taxon ‘Anaerolineae’ into Anaerolineae Classis nov. and Caldilineae Classis nov. We also propose the subordinate taxa Anaerolineales ord. nov., Caldilineales ord. nov., Anaerolineaceae fam. nov. and Caldilineaceae fam. nov.
Takeshi Yamada - One of the best experts on this subject based on the ideXlab platform.
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Anaerolinea thermolimosa sp. nov., Levilinea saccharolytica gen. nov., sp. nov. and Leptolinea tardivitalis gen. nov., sp. nov., novel filamentous anaerobes, and description of the new classes Anaerolineae Classis nov. and Caldilineae Classis nov. in the bacterial phylum Chloroflexi.
International Journal of Systematic and Evolutionary Microbiology, 2006Co-Authors: Takeshi Yamada, Yuji Sekiguchi, Satoshi Hanada, Hiroyuki Imachi, Akiyoshi Ohashi, Hideki Harada, Yoichi KamagataAbstract:One thermophilic (strain IMO-1T) and two mesophilic (strains KIBI-1T and YMTK-2T) non-spore-forming, non-motile, Gram-negative, multicellular filamentous micro-organisms, which were previously isolated as members of the tentatively named class ‘Anaerolineae’ of the phylum Chloroflexi, were characterized. All isolates were strictly anaerobic micro-organisms. The length of the three filamentous isolates was greater than 100 μm and the width was 0.3–0.4 μm for strain IMO-1T, 0.4–0.5 μm for strain KIBI-1T and thinner than 0.2 μm for strain YMTK-2T. Strain IMO-1T could grow at pH 6.0–7.5 (optimum growth at pH 7.0). The optimal temperature for growth of strain IMO-1T was around 50 °C (growth occurred between 42 and 55 °C). Growth of the mesophilic strains KIBI-1T and YMTK-2T occurred at pH 6.0–7.2 with optimal growth at pH 7.0. Both of the mesophilic strains were able to grow in a temperature range of 25–50 °C with optimal growth at around 37 °C. Yeast extract was required for growth of all three strains. All the strains could grow with a number of carbohydrates in the presence of yeast extract. The G+C contents of the DNA of strains IMO-1T, KIBI-1T and YMTK-2T were respectively 53.3, 59.5 and 48.2 mol%. Major fatty acids for thermophilic strain IMO-1T were anteiso-C17 : 0, iso-C15 : 0, C16 : 0 and anteiso-C15 : 0, whereas those for mesophilic strains KIBI-1T and YMTK-2T were branched C14 : 0, iso-C15 : 0, C16 : 0 and branched C17 : 0, and branched C17 : 0, C16 : 0, C14 : 0 and C17 : 0, respectively. Detailed phylogenetic analyses based on their 16S rRNA gene sequences indicated that the isolates belong to the class-level taxon ‘Anaerolineae’ of the bacterial phylum Chloroflexi, which for a long time had been considered as a typical uncultured clone cluster. Their morphological, physiological, chemotaxonomic and genetic traits strongly support the conclusion that these strains should be described as three novel independent taxa in the phylum Chloroflexi. Here, Anaerolinea thermolimosa sp. nov. (type strain IMO-1T=JCM 12577T=DSM 16554T), Levilinea saccharolytica gen. nov., sp. nov. (type strain KIBI-1T=JCM 12578T=DSM 16555T) and Leptolinea tardivitalis gen. nov., sp. nov. (type strain YMTK-2T=JCM 12579T=DSM 16556T) are proposed. In addition, we formally propose to subdivide the tentative class-level taxon ‘Anaerolineae’ into Anaerolineae Classis nov. and Caldilineae Classis nov. We also propose the subordinate taxa Anaerolineales ord. nov., Caldilineales ord. nov., Anaerolineaceae fam. nov. and Caldilineaceae fam. nov.
Frank T Peters - One of the best experts on this subject based on the ideXlab platform.
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analytical toxicology of emerging drugs of abuse an update
Therapeutic Drug Monitoring, 2012Co-Authors: Markus R Meyer, Frank T PetersAbstract:The steady increase of new drugs of abuse on the illicit drug market is a great challenge for analytical toxicologists. Because most of these new drugs or drug classes are not included in established analytical methods targeting classic drugs of abuse, analytical procedures must be adapted or new procedures must be developed to cover such new compounds. This review summarizes procedures for analysis of these drugs of abuse published from January 2009 to January 2012 covering the following classes of emerging drugs of abuse as follows: β-keto-amphetamines, pyrrolidinophenones, tryptamines, and synthetic cannabinoids.
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analytical toxicology of emerging drugs of abuse
Therapeutic Drug Monitoring, 2010Co-Authors: Frank T Peters, Jorge A MartinezramirezAbstract:The emergence of ever new drugs of abuse on the illicit drug market is an ongoing challenge for analytical toxicologists. Because most of these new drugs or drug classes are not detected by established analytical methods targeting classic drugs of abuse, analytical procedures must be adapted or new procedures must be developed to cover these new compounds. This review summarizes the analytical toxicology of the following classes of emerging drugs of abuse: piperazines, phenethylamines (2Cs and FLYs), 4-substituted amphetamines, β-keto-amphetamines, 2,5-dimethoxy-amphetamines, pyrrolidinophenones, and synthetic cannabinoids.
Hiroyuki Imachi - One of the best experts on this subject based on the ideXlab platform.
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Anaerolinea thermolimosa sp. nov., Levilinea saccharolytica gen. nov., sp. nov. and Leptolinea tardivitalis gen. nov., sp. nov., novel filamentous anaerobes, and description of the new classes Anaerolineae Classis nov. and Caldilineae Classis nov. in the bacterial phylum Chloroflexi.
International Journal of Systematic and Evolutionary Microbiology, 2006Co-Authors: Takeshi Yamada, Yuji Sekiguchi, Satoshi Hanada, Hiroyuki Imachi, Akiyoshi Ohashi, Hideki Harada, Yoichi KamagataAbstract:One thermophilic (strain IMO-1T) and two mesophilic (strains KIBI-1T and YMTK-2T) non-spore-forming, non-motile, Gram-negative, multicellular filamentous micro-organisms, which were previously isolated as members of the tentatively named class ‘Anaerolineae’ of the phylum Chloroflexi, were characterized. All isolates were strictly anaerobic micro-organisms. The length of the three filamentous isolates was greater than 100 μm and the width was 0.3–0.4 μm for strain IMO-1T, 0.4–0.5 μm for strain KIBI-1T and thinner than 0.2 μm for strain YMTK-2T. Strain IMO-1T could grow at pH 6.0–7.5 (optimum growth at pH 7.0). The optimal temperature for growth of strain IMO-1T was around 50 °C (growth occurred between 42 and 55 °C). Growth of the mesophilic strains KIBI-1T and YMTK-2T occurred at pH 6.0–7.2 with optimal growth at pH 7.0. Both of the mesophilic strains were able to grow in a temperature range of 25–50 °C with optimal growth at around 37 °C. Yeast extract was required for growth of all three strains. All the strains could grow with a number of carbohydrates in the presence of yeast extract. The G+C contents of the DNA of strains IMO-1T, KIBI-1T and YMTK-2T were respectively 53.3, 59.5 and 48.2 mol%. Major fatty acids for thermophilic strain IMO-1T were anteiso-C17 : 0, iso-C15 : 0, C16 : 0 and anteiso-C15 : 0, whereas those for mesophilic strains KIBI-1T and YMTK-2T were branched C14 : 0, iso-C15 : 0, C16 : 0 and branched C17 : 0, and branched C17 : 0, C16 : 0, C14 : 0 and C17 : 0, respectively. Detailed phylogenetic analyses based on their 16S rRNA gene sequences indicated that the isolates belong to the class-level taxon ‘Anaerolineae’ of the bacterial phylum Chloroflexi, which for a long time had been considered as a typical uncultured clone cluster. Their morphological, physiological, chemotaxonomic and genetic traits strongly support the conclusion that these strains should be described as three novel independent taxa in the phylum Chloroflexi. Here, Anaerolinea thermolimosa sp. nov. (type strain IMO-1T=JCM 12577T=DSM 16554T), Levilinea saccharolytica gen. nov., sp. nov. (type strain KIBI-1T=JCM 12578T=DSM 16555T) and Leptolinea tardivitalis gen. nov., sp. nov. (type strain YMTK-2T=JCM 12579T=DSM 16556T) are proposed. In addition, we formally propose to subdivide the tentative class-level taxon ‘Anaerolineae’ into Anaerolineae Classis nov. and Caldilineae Classis nov. We also propose the subordinate taxa Anaerolineales ord. nov., Caldilineales ord. nov., Anaerolineaceae fam. nov. and Caldilineaceae fam. nov.