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Artykuły w czasopismach na temat "Herb"

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Youngman, Angela. "Herbs and herb lore". Child Care 7, nr 9 (wrzesień 2010): 28–29. http://dx.doi.org/10.12968/chca.2010.7.9.78329.

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Benzel, Ed. "Herb". World Neurosurgery 108 (grudzień 2017): xx. http://dx.doi.org/10.1016/j.wneu.2017.09.111.

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Gerbner, George. "Herb Schiller". Television & New Media 2, nr 1 (luty 2001): 35–36. http://dx.doi.org/10.1177/152747640100200108.

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McChesney, Robert W. "Herb Schiller". Television & New Media 2, nr 1 (luty 2001): 45–50. http://dx.doi.org/10.1177/152747640100200112.

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Golding, Peter. "Herb Schiller". Television & New Media 2, nr 1 (luty 2001): 69–70. http://dx.doi.org/10.1177/152747640100200116.

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Stix, Gary. "Herb Remedy". Scientific American 279, nr 3 (wrzesień 1998): 18–19. http://dx.doi.org/10.1038/scientificamerican0998-18.

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Manning, Chris, Harold Crouch i John Maxwell. "HERB FEITH". Bulletin of Indonesian Economic Studies 38, nr 1 (kwiecień 2002): 39–41. http://dx.doi.org/10.1080/000749102753620266.

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Howard, Elizabeth. "Herb Woman". Appalachian Heritage 18, nr 2 (1990): 23. http://dx.doi.org/10.1353/aph.1990.0125.

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Eisenberg, Richard. "Remembering Herb". Inorganic Chemistry 51, nr 10 (10.05.2012): 5495–96. http://dx.doi.org/10.1021/ic3007348.

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Tremblay, Tony. "Herb Wylie". Acadiensis: Journal of the History of the Atlantic Region / Revue d’histoire de la region atlantique 46, nr 2 (2017): 242–47. http://dx.doi.org/10.1353/aca.2017.0030.

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Rozprawy doktorskie na temat "Herb"

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Heintze, Willian. "Propagação de Hippeastrum reticulatum var. striatifolium (Herb.) Herb". reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2014. http://hdl.handle.net/10183/108710.

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Hippeastrum reticulatum var. striatifolium (Herb.) Herb. é uma espécie nativa no Brasil. Possui elevado potencial ornamental pela beleza de suas folhas perenes e floração anual. Moderadamente tolerante ao sombreamento, a torna indicada para uso em interiores. A produção de mudas é pouco estudada, refletindo em indisponibilidade e baixa difusão dessa espécie no mercado produtor e consumidor. Este trabalho teve por objetivo investigar aspectos relacionados à produção de mudas por micropropagação e por sementes. Bulbos de plantas existentes na Faculdade de Agronomia-UFRGS foram desinfestados com NaClO e termoterapia para micropropagação. Variações na posição de incubação (posição horizontal e vertical), concentrações de sacarose, reguladores de crescimento no meio de cultivo (BAP e ANA) e tamanho prévio dos bulbos foram avaliadas em relação à organogênese in vitro. Mudas micropropagadas foram aclimatizadas em diferentes substratos. Foi determinado o teor de umidade de sementes e avaliado o pré tratamento com frio e sua implicação na germinação. A desinfestação com NaClO 1,72% por 15‟ associada à imersão dos explantes por 30 minutos em água a 52°C diminuiu a contaminação in vitro sem ocasionar morte dos explantes. Explantes incubados na posição vertical em relação ao seu eixo polar apresentaram maior número e diâmetro de brotações, número e soma do comprimento de raízes e número de folhas por explante, em relação aos incubados na horizontal. Concentrações de sacarose próximas e menores que 60g L-1 aumentaram o número e tamanho de brotações, enquanto que menores que 50g L-1 melhoraram o enraizamento e a formação de folhas. A concentração testada de 100g L-1 foi prejudicial. A utilização de 6- benzilaminopurina (BAP) no meio de cultivo inibiu a formação de raízes e o diâmetro das brotações, enquanto a utilização de ácido naftaleno acético (ANA) aumentou o número de brotações. A combinação de ANA e BAP foi antagônica em relação à média do comprimento de raízes e folhas, com maior média observada na ausência de ambos. A presença de carvão ativado no meio de cultivo diminuiu os efeitos inibitórios do BAP. Explantes originários de bulbos com maior diâmetro formaram mudas maiores, mais numerosas e com maior massa de matéria fresca. A aclimatização de mudas micropropagadas foi eficiente em diversos substratos (sobrevivência > 90%), com destaque qualitativo à casca de Pinus compostada e quantitativo ao Comercial 1. Sementes maduras apresentaram teor de umidade próximo a 80%. A propagação por sementes foi possível, sem a necessidade de quebra de dormência com frio, com tempo médio de germinação em torno de 30 dias.
Hippeastrum reticulatum var. striatifolium (Herb.) Herb. is a native species on Brazil. Has high ornamental potential of its beautiful annual flowering and perennial leaves. Moderately tolerant to shade, makes it suitable for indoor use. Seedling production is poorly studied, reflecting in unavailability and low spread of this species in the producer and consumer markets. This work was aimed to investigate aspects related to seedling production through micropropagation and seedling. Bulbs of the plants conserved at the Faculty of Agronomy, UFRGS were disinfected with NaClO and thermotherapy for micropropagation. Variations in incubation position (horizontal and vertical), sucrose concentrations, growth regulators in the culture medium (BAP and NAA) and previous size of the bulbs, were evaluated for in vitro organogenesis. Seedlings were acclimatized in different substrates. The moisture content of seeds was determined and the pretreatment with cold as well as their involvement in germination were evaluated. The disinfection of the explants with 1.72% NaClO for 15' associated with the immersion of the explants for 30 minutes in water at 52 °C decreased contamination in vitro, without causing death. Explants incubated in an upright position on its polar axis showed higher germinating number and diameter as well as number and total root length and number of leaves per explants compared to those incubated horizontally. Concentrations of sucrose close and less than 60g L-1 increased the number and size of shoots, while less than 50 g L-1 improved rooting and leaf formation. The tested concentration of 100 g L-1 was harmful. The use of 6-benzylaminopurine (BAP) in the medium inhibited the formation of roots and the diameter of shoots, while the use of naphthalene acetic acid (NAA) increased the number of shoots. The combination of NAA and BAP was antagonistic in respect to length of roots and leaves, with the highest average observed in the absence of both. The presence of activated charcoal in the culture medium decreased the inhibitory effects of BAP. Explants originated from bulbs with highest diameter formed larger, more numerous and seedlings with more mass. The acclimatization of seedlings was efficient on various substrates (survival > 90 %), highlighting qualitative to Pinus bark composted and the quantitative to Commercial 1. Ripe seeds showed moisture content close to 80 %. Propagation by seed is possible, without the need to break dormancy with cold, with average germination time of around 30 days.
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Slade, A. J. "The population biology and foraging behaviour of the clonal perennial herb Glechoma hederacea". Thesis, University of Sussex, 1986. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.377070.

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Oliveira, Renata Souza de. "Flora da Cadeia do Espinhaço:Zephyranthes Herb. & Habranthus Herb. (Amaryllidaceae)". Universidade de São Paulo, 2006. http://www.teses.usp.br/teses/disponiveis/41/41132/tde-17092006-174500/.

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Habranthus Herb. (Amaryllidaceae) é caracterizado pelas brácteas da inflorescência fundidas formando um tubo e flores zigomorfas. O gênero se distribui na América do Sul, México e sudoeste dos Estados Unidos. Este trabalho teve por objetivos levantar as espécies de Habranthus (Amaryllidaceae) ocorrentes na Cadeia do Espinhaço (Minas Gerais e Bahia), bem como elucidar sua delimitação taxonômica por meio de análise morfológica. O gênero está representado na região por 8 espécies: H. bahiensis Ravenna (endêmica de Morro do Chapéu – BA), H. datensis Ravenna (distribuída desde a Serra do Cipó até região de Diamantina - MG), H. cf. gracilifolius Herb. (ocorrente na região de Corinto – MG), H. irwinianus Ravenna (em serras próximas a Belo Horizonte, Serra da Canastra e Ibitipoca – MG), H. itaobinus Ravenna (no norte de Minas Gerais e região Nordeste), H. sylvaticus (Mart ex Schult) Herb. (na região Nordeste), H. botumirensis R. S. Oliveira & P. T. Sano (endêmico de Botumirim – MG) H. lucidus R. S. Oliveira & P. T. Sano (endêmica de Rio de Contas – BA). Habranthus botumirensis e H. lucidus constituem espécies novas para a ciência e foi proposta a sinonímização de H. duarteanus em H. irwinianus. O trabalho apresenta chave para as espécies, descrições, ilustrações, comentários e distribuição geográfica. São apresentadas análises na morfologia de bulbo, anatomia de folha, escapo e raiz, dados de morfologia floral, além do provimento de box-plots e análise de ordenação (PCA) com dados morfométricos. O número de ramos no bulbo, ornamentação da cutícula foliar, distribuição dos estômatos, formato das tépalas, e de seus ápices, características do paraperigônio, posição dos filetes e coloração da flor foram os principais caracteres que auxiliaram na distinção de grupos e/ou espécies. A análise com dados morfométricos colaborou na distinção das maiores espécies e auxiliou na separação das populações de H. irwinianus.
Habranthus Herb. (Amaryllidaceae) is characterized by inflorescence bracts fused forming a tube and zigomorphic flowers. The genus is distributed in South America, Mexico and southwest United States. The present study attempts to survey Habranthus (Amaryllidaceae) species that occur in Espinhaço Range (Minas Gerais and Bahia states), and clarify their taxonomic delimitation utilizing morphologic data. The genus is represented in the region by 8 species: H. bahiensis Ravenna (endemic in Morro do Chapéu – BA), H. datensis Ravenna (distributed from Serra do Cipó to Diamantina region - MG), H. cf. gracilifolius Herb. (Corinto region – MG), H. irwinianus Ravenna (mountains near to Belo Horizonte, Serra da Canastra and Ibitipoca – MG), H. itaobinus Ravenna (northern Minas Gerais and Northeast of Brazil), H. sylvaticus (Mart ex Schult) Herb. (Northeast of Brazil), H. botumirensis R. S. Oliveira & P. T. Sano (endemic in Botumirim – MG) H. lucidus R. S. Oliveira & P. T. Sano (endemic in Rio de Contas – BA). Habranthus botumirensis and H. lucidus are new species for science and H. duarteanus is proposed as synonym in H. irwinianus. This study presents a key to the species, descriptions, illustrations, comments and geographic distribution. Analyses in bulb morphology, leaf, scape and root anatomy, floral morphology, besides box-plots and ordination (PCA) with morphometric data are presented. Number of branches in the bulb, leave cuticle’s sculpture, stomata distribution, tepals shape and their apices, paraperigone characteristics, filaments position and flower color were major characteristics that helped to distinct groups and/or species. Morphometric analysis helped to distinct the largest species and to separate H. irwinianus populations.
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Blackwelder, Reid B. "Drug-Herb Interactions". Digital Commons @ East Tennessee State University, 2005. https://dc.etsu.edu/etsu-works/6913.

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Flores, Alcántara Mayra Paulina. "Micropropagación de Hymenocallis harrisiana (Herb.)". Tesis de Licenciatura, Universidad Autónoma del Estado de México, 2016. http://hdl.handle.net/20.500.11799/65825.

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Mutiplicación in vitro de una especie silvestre ornamental nativa de México.
Hymenocallis harrisiana (Herb.) pertenece a la familia Amaryllidaceae. Se conoce como lirio araña, y es nativa de México. A pesar de tener gran potencial ornamental, por sus características llamativas de su flor, no hay estudios sobre su micropropagación que contribuyan a su mejoramiento genético. El objetivo del presente estudio fue establecer un protocolo de micropropagación para H. harrisiana (Herb.), en el cual, se evaluó el efecto del ácido indolbutírico (AIB) y el ácido naftalenacético (ANA) solos, o en combinación con tidiazuron (TDZ), en la germinación de embriones, así como en la inducción de bulbillos a partir de secciones de escamas de bulbo, explantes de hoja y callos, obtenidos a partir de plántulas in vitro. Los resultados mostraron que en las concentraciones de 0.5-1.0 mg L-1 de AIB + 0.5-1.0 mg L-1 de TDZ, respectivamente fue posible obtener una germinación del 100%. Para la inducción de bulbillos, las secciones de escamas de bulbo fueron el mejor tipo de explante, obteniendo en promedio 4.87 ± 2.62 bulbillos, en el tratamiento con 1.0 mg L-1 de AIB + 1.0 mg L-1 de TDZ. La adición de ANA en la etapa de enraizamiento favoreció el desarrollo de raíces sanas y de buena longitud. El estudio histológico confirmó que las estructuras formadas fueron bulbillos. Después de 60 días, las plántulas aclimatadas a condiciones de invernadero mostraron más del 80% de adaptación. El protocolo desarrollado podría ser el punto de partida para desarrollar futuras estrategias de conservación y de mejoramiento genético de la especie.
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FLORES, ALCÁNTARA MAYRA PAULINA. "MICROPROPAGACIÓN DE Hymenocallis harrisiana (Herb.) TESIS". Tesis de Licenciatura, Universidad Autónoma del Estado de México, 2016. http://hdl.handle.net/20.500.11799/65262.

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Hymenocallis harrisiana (Herb.) pertenece a la familia Amaryllidaceae. Se conoce como lirio araña, y es nativa de México. A pesar de tener gran potencial ornamental, por sus características llamativas de su flor, no hay estudios sobre su micropropagación que contribuyan a su mejoramiento genético. El objetivo del presente estudio fue establecer un protocolo de micropropagación para H. harrisiana (Herb.), en el cual, se evaluó el efecto del ácido indolbutírico (AIB) y el ácido naftalenacético (ANA) solos, o en combinación con tidiazuron (TDZ), en la germinación de embriones, así como en la inducción de bulbillos a partir de secciones de escamas de bulbo, explantes de hoja y callos, obtenidos a partir de plántulas in vitro. Los resultados mostraron que en las concentraciones de 0.5-1.0 mg L-1 de AIB + 0.5-1.0 mg L-1 de TDZ, respectivamente fue posible obtener una germinación del 100%. Para la inducción de bulbillos, las secciones de escamas de bulbo fueron el mejor tipo de explante, obteniendo en promedio 4.87 ± 2.62 bulbillos, en el tratamiento con 1.0 mg L-1 de AIB + 1.0 mg L-1 de TDZ. La adición de ANA en la etapa de enraizamiento favoreció el desarrollo de raíces sanas y de buena longitud. El estudio histológico confirmó que las estructuras formadas fueron bulbillos. Después de 60 días, las plántulas aclimatadas a condiciones de invernadero mostraron más viii  del 100% de adaptación. El protocolo desarrollado podría ser el punto de partida para desarrollar futuras estrategias de conservación y de mejoramiento genético de la especie.
El género Hymenocallis Salisb., viene del griego y significa “hermosa membrana” aludiendo a la corona estaminal que caracteriza al género (Tapia-Campos et al., 2012). Comúnmente conocida como lirio araña, se distribuye en zonas templadas y tropicales desde el sureste y centro de los Estados Unidos de América, el Caribe, México, Centroamérica y noreste de Sudamérica, presentando su mayor riqueza en Mesoamérica (García-Mendoza 2010). Nuestro país posee el mayor número de especies (30) de este género (Rodríguez et al., 2013), la Comisión Nacional para el Conocimiento y Uso de la Biodiversidad (CONABIO 2009), señala que muchas de ellas son endémicas y en algunos casos son consideradas maleza. Aun así, en algunas partes se cultivan en jardines y parques por la belleza y fragancia de su flor (López y Espejo 2002). Hymenocallis harrisiana (Herb.), es nativa de México. En estados como Sinaloa, Nayarit y Jalisco se cultiva como planta ornamental, mientras que de manera silvestre, es una planta más bien escasa, con poblaciones pequeñas y muy localizadas, cuya floración se presenta de mayo a julio (CONABIO 2009). En nuestro país, desde el 2008 el género es considerado un recurso fitogénetico con valor real y con potencial ornamental. En la actualidad, la red Hymenocallis del SINAREFI (Sistema Nacional de Recursos Fitogéneticos), cuenta con tres proyectos vigentes que contemplan: a) la validación de recursos genéticos de Hymenocallis, b) un programa de mejoramiento genético a corto, mediano y largo plazo, y c) la validación de recursos genéticos de Hymenocallis en Puebla, Tlaxcala, Veracruz, Estado de México y Morelos. 1 Por lo anterior, se requieren establecer protocolos de multiplicación masiva de las especies del citado género. Las especies se propagan de manera asexual llegando a producir de seis a ocho bulbillos por bulbo, mientras que de forma sexual, una planta puede llegar a producir 200 semillas aunque no todas germinan, además de que el período de germinación tarda de uno a cuatro meses dependiendo de las condiciones en las que se encuentre la semilla. Una alternativa de propagación a gran escala, es el cultivo de tejidos vegetales, el cual permite establecer en condiciones asépticas, estructuras vegetales (células, órganos y tejidos) en medios de cultivo definidos, bajo condiciones de incubación controladas (Mendoza 2007). En la literatura son escasos los trabajos de micropropagación en el género. Yanagawa e Ito (1988) reportaron que al utilizar escamas de bulbos con parte del disco basal, y cultivándolas en el medio semi-solido de White (1943) suplementado con 0.01 mg L-1 de ácido naftalenacético (ANA) y 5 mg L-1 de 6-bencilaminopurina (BA), pudieron regenerar de tres a cuatro bulbillos en Hymenocallis speciosa. Así, resulta interesante el desarrollo de un protocolo para la propagación in vitro de H. harrisiana (Herb.) que contribuya a su rápida multiplicación y al mismo tiempo, facilite el diseño de futuras estrategias de mejoramiento genético de esta y otras especies del género.
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Yang, Hongyi. "Herb and Life: A Chinese Medical Family". Thesis, University of North Texas, 2002. https://digital.library.unt.edu/ark:/67531/metadc3296/.

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This written thesis examines the process of producing Herb and Life: a Chinese Medical Family, a thirty-minute documentary video that explores the producer's family members' relationship with Traditional Chinese Medicine. This documentary uses interviews, narration, music, and observational sequences to display documentary subjects' career choices and their experiences with Traditional Chinese Medicine. This written thesis reveals the development of this documentary, from the pre-production to production and post-production stages. It also incorporates theoretical analysis and self-evaluation of this documentary video.
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Wong, Queenie Lai Lai. "Pharmacognostic studies on folk medicinal herb xihuangcao". HKBU Institutional Repository, 2015. https://repository.hkbu.edu.hk/etd_oa/215.

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Xihuangcao is a folk medicinal herb used in southern China with three botanical origins: Isodon lophanthoides (IL), I. lophanthoides var. graciliflorus (ILG) and I. serra (IS). They are often used indiscriminately, numerous commercially available herbal products list Xihuangcao as an ingredient without listing the source. This situation has led to a growing concern about the differentiation and quality evaluation of Xihuangcao. To address this concern, a systematic study was conducted to identify the origin. The study is divided into five parts, which aimed to establish and apply the authentication methods of the origins. Four Isodon species were recorded in research papers as the plant sources. However, a new classification suggested in 2004 and two of the IL varieties were merged. In the ancient herbal documents, ILG was first recorded as the origin plant. IL was the major species in the ancient texts, IS was only listed as an additional sources in recent herbal references. The“yellow juices which proven to be the exudates of glandular scales was the key identification features recorded. Macroscopic and microscopic studies provided identification features of the three Isodon species. IL and ILG share very similar features, but IS can be easily distinguished. By morphological features, IL and ILG can be distinguished by the shape of leaves, which IL has a broader leaves than ILG; IS can be identified by its very bitter taste and broadly winged petioles. By microscopic features, IL and ILG have a tiny difference in the shape of epidermal cells of leaf, and IS can be recognized by small raphides of calcium oxalate. In the UPLC-MS fingerprinting and tissue-specific profiling, the chemical profiles the three species were revealed. The chemical profiles of IL and ILG were similar, while IS has its specific chemical profiles. Twenty-seven characteristic peaks were chosen and showed a good distinction of the three species. The tissue-specific profiling of leaves showed the diterpenoids of all the species were accumulated only in the glandular scales. Lipidomics study on IL, ILG and IS was also conducted. A total of 92 lipids were identified. The variation of lipid profiles of the three Isodon species was further quantified, the results showed that the contents of the lipids in the three Isodon species varied. Statistical analyses showed IS has distinctly different lipid profile, while that of IL and ILG are very similar. Finally, the methods of macroscopic microscopic authentication and UPLC-MS fingerprinting were applied in identifying the source species of commercial Xihuangcao products. Twenty-seven batches of Xihuangcao decoction pieces were identified, results showed ILG is the major source of the collected samples. The ingredients in eight Xihuangcao herbal tea bags were also identified. IS is the major species, and none of the samples match their labels. The study provided valuable information on the authentication and quality control of folk medicinal herb Xihuangcao. The work also provided fundamental information on further studies on the chemical constituents of IL and ILG, also and role of lipids in the production of bioactive diterpenoids in Isodon species
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Kireger, Eliud Kiplimo. "Natural regeneration and bark production in Prunus Africana (Hook.F.) Kalkman (Rosaceae) and its sustaibable utilization and conservation in Kenya". Thesis, Bangor University, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.273609.

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Oleas, Nora. "Landscape Genetics of Phaedranassa Herb. (Amaryllidaceae) in Ecuador". FIU Digital Commons, 2011. http://digitalcommons.fiu.edu/etd/443.

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Speciation can be understood as a continuum occurring at different levels, from population to species. The recent molecular revolution in population genetics has opened a pathway towards understanding species evolution. At the same time, speciation patterns can be better explained by incorporating a geographic context, through the use of geographic information systems (GIS). Phaedranassa (Amaryllidaceae) is a genus restricted to one of the world’s most biodiverse hotspots, the Northern Andes. I studied seven Phaedranassa species from Ecuador. Six of these species are endemic to the country. The topographic complexity of the Andes, which creates local microhabitats ranging from moist slopes to dry valleys, might explain the patterns of Phaedranassa species differentiation. With a Bayesian individual assignment approach, I assessed the genetic structure of the genus throughout Ecuador using twelve microsatellite loci. I also used bioclimatic variables and species geographic coordinates under a Maximum Entropy algorithm to generate distribution models of the species. My results show that Phaedranassa species are genetically well-differentiated. Furthermore, with the exception of two species, all Phaedranassa showed non-overlapping distributions. Phaedranassa viridiflora and P. glauciflora were the only species in which the model predicted a broad species distribution, but genetic evidence indicates that these findings are likely an artifact of species delimitation issues. Both genetic differentiation and non-overlapping geographic distribution suggest that allopatric divergence could be the general model of genetic differentiation. Evidence of sympatric speciation was found in two geographically and genetically distinct groups of P. viridiflora. Additionally, I report the first register of natural hybridization for the genus. The findings of this research show that the genetic differentiation of species in an intricate landscape as the Andes does not necessarily show a unique trend. Although allopatric speciation is the most common form of speciation, I found evidence of sympatric speciation and hybridization. These results show that the processes of speciation in the Andes have followed several pathways. The mixture of these processes contributes to the high biodiversity of the region
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Książki na temat "Herb"

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Briccetti, Rebecca W. Atwater. Herb gardens. New York: Friedman/Fairfax, 1997.

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Houdret, Jessica. Herb gardening. London: Hermes House, 2000.

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Rosenfeld, Richard. Herb gardens. New York: DK Publishing, 1999.

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Herb gardening. Ramsbury: Crowood Press Ltd., 2009.

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Herb gardens. London: Ward Lock, 1994.

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Hollmann, Pauline. Herbs and herb gardening. Washington, D.C: Science Reference Section, Science and Technology Division, Library of Congress, 1985.

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New York Botanical Garden. Institute of Urban Horticulture., red. The herb garden. New York, N.Y., U.S.A: Penguin Books, 1996.

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Marjorie, Snyder, red. Wisconsin herb cookbook. Madison, Wis: Prairie Oak Press, 1996.

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1937-, Barclay Gwen, i Hardy Jean 1943-, red. Southern herb growing. Fredericksburg, Tex: Shearer Pub., 1987.

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Patricia, Hopkinson, Cornell Plantations, University of Michigan. Matthaei Botanical Gardens. i University of California, Berkeley. Botanical Garden., red. Herb gardening. New York: Pantheon Books, 1994.

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Części książek na temat "Herb"

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Herb-Herb and Food-Drug Interactions". W Herb-Drug Combinations, 15–26. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_3.

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Bährle-Rapp, Marina. "herb(s)". W Springer Lexikon Kosmetik und Körperpflege, 254. Berlin, Heidelberg: Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-71095-0_4685.

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Vimalavathini, R., R. Shri Hari Subhashri i S. Kavimani. "Herb-Drug Interactions". W Evidence Based Validation of Traditional Medicines, 649–58. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-15-8127-4_31.

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Regulations and Guidelines Involving Synergistic Herb-Drug Interactions". W Herb-Drug Combinations, 245–49. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_16.

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Introduction". W Herb-Drug Combinations, 1–4. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_1.

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Antagonistic Herb-Drug Interactions". W Herb-Drug Combinations, 45–60. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_5.

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Synergistic Herb-Drug Interactions Against Viral Diseases". W Herb-Drug Combinations, 103–30. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_8.

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Synergistic Herb-Drug Interactions with Antifungal and Antiparasitic Agents". W Herb-Drug Combinations, 217–34. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_14.

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Synergistic Herb Interactions with Anticancer Drugs". W Herb-Drug Combinations, 145–73. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_10.

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Hemaiswarya, Shanmugam, Pranav Kumar Prabhakar i Mukesh Doble. "Synergistic Herb-Drug Interactions Against Bacteria". W Herb-Drug Combinations, 61–84. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5125-1_6.

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Streszczenia konferencji na temat "Herb"

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Mitrpanont, Jarernsri L., Aphinat Atchaphan, Saran Rattanajung i Sirachai Chaiphadung. "Herbe — Herb database management system". W 2017 6th ICT International Student Project Conference (ICT-ISPC). IEEE, 2017. http://dx.doi.org/10.1109/ict-ispc.2017.8075328.

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Yang, Kuo, Xuezhong Zhou, Runshun Zhang, Baoyan Liu, Lei Lei, Xiaoping Zhang, Hongwei Chu, Changkai Sun, Zhuye Gao i Hao Xu. "Integrating herb effect similarity for network-based herb target prediction". W 2015 8th International Conference on Biomedical Engineering and Informatics (BMEI). IEEE, 2015. http://dx.doi.org/10.1109/bmei.2015.7401553.

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Poon, Josiah, Simon Poon, Dawei Yin, Kelvin Chan, Clement Loy, Xuezhong Zhou, Runshun Zhang i in. "Studying herb-herb interaction for insomnia through the theory of complementarities". W 2010 IEEE International Conference on Bioinformatics and Biomedicine Workshops (BIBMW). IEEE, 2010. http://dx.doi.org/10.1109/bibmw.2010.5703897.

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Zhao, Gansen, Xutian Zhuang, Xinming Wang, Weimin Ning, Zijing Li, Jianfei Wang, Qiang Chen, Zefeng Mo, Bingchuan Chen i Huiyan Chen. "Data-Driven Traditional Chinese Medicine Clinical Herb Modeling and Herb Pair Recommendation". W 2018 7th International Conference on Digital Home (ICDH). IEEE, 2018. http://dx.doi.org/10.1109/icdh.2018.00037.

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Matveeva, M. V., P. S. Volkova, A. S. Chistyakova i A. A. Gudkova. "TLC ANALYSIS OF PERSICARIALAPATHIFÓLIA HERB". W 90 лет - от растения до лекарственного препарата: достижения и перспективы. Москва: Федеральное государственное бюджетное научное учреждение "Всероссийский научно-исследовательский институт лекарственных и ароматических растений", 2021. http://dx.doi.org/10.52101/9785870191003_2021_213.

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Pornpanomchai, Chomtip, Ponrath Sakunreraratsame, Rosita Wongsasirinart i Nuttakan Youngtavichavhart. "Herb flower recognition system (HFRS)". W 2010 International Conference on Electronics and Information Engineering (ICEIE 2010). IEEE, 2010. http://dx.doi.org/10.1109/iceie.2010.5559906.

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Poon, Josiah, Dawei Yin, Simon Poon, Runshun Zhang, Baoyan Liu i Daniel Sze. "Co-evolution of symptom-herb relationship". W 2012 IEEE Congress on Evolutionary Computation (CEC). IEEE, 2012. http://dx.doi.org/10.1109/cec.2012.6256575.

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Tan, Jia Wei, Kian Ming Lim i Chin Poo Lee. "Herb Classification with Convolutional Neural Network". W 2021 IEEE International Conference on Artificial Intelligence in Engineering and Technology (IICAIET). IEEE, 2021. http://dx.doi.org/10.1109/iicaiet51634.2021.9573706.

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Pathiranage, Nirmani, Nilfa Nilfa, Mithula Nithmali, Nadee Kumari, Lokesha Weerasinghe i Ishara Weerathunga. "Arogya -An Intelligent Ayurvedic Herb Management Platform". W 2020 61st International Scientific Conference on Information Technology and Management Science of Riga Technical University (ITMS). IEEE, 2020. http://dx.doi.org/10.1109/itms51158.2020.9259290.

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Борабанова, Н. М. "PHYTOCHEMICAL ANALYSIS OF THE PARIETARIA OFFICINALIS HERB". W ОТ БИОХИМИИ РАСТЕНИЙ К БИОХИМИИ ЧЕЛОВЕКА. Москва: Федеральное государственное бюджетное научное учреждение "Всероссийский научно-исследовательский институт лекарственных и ароматических растений", 2022. http://dx.doi.org/10.52101/9785870191041_139.

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Raporty organizacyjne na temat "Herb"

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Henderson, P. J., i I. McMartin. Surficial geology, Herb Lake, Manitoba. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2007. http://dx.doi.org/10.4095/224577.

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Yang, Yueyan, Shijia Liu, Guangrong Zhu, Wen Xia, Pengjun Jiang, Jianmin Ji i Fang Ye. The Chinese herb for multiple myeloma: A protocol of systematic review and meta-analysis. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, styczeń 2021. http://dx.doi.org/10.37766/inplasy2021.1.0040.

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Tang, Shengnan, Ran Teng, Dangsheng Zhao, Guiyuan Nie, Zhuanping Dong i Wenjun Zhang. Chinese herb injection combined with chemotherapy for advanced colorectal cancer: A protocol for Bayesian network meta-Analysis. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, marzec 2021. http://dx.doi.org/10.37766/inplasy2021.3.0089.

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Peng, Melinda S., Simon W. Chang i Richard M. Hodur. Performance Evaluation of the Naval Research Laboratory COAMPS on the Forecast of Typhoon Herb in the Western Pacific in 1996,. Fort Belvoir, VA: Defense Technical Information Center, styczeń 1997. http://dx.doi.org/10.21236/ada327706.

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Stransky, John J., Jimmy C. Huntley i Wanda J. Risner. Net community production dynamics in the herb-shrub stratum of a loblolly pine-hardwood forest: effects of clearcutting and site preparation. New Orleans, LA: U.S. Department of Agriculture, Forest Service, Southern Forest Experiment Station, 1986. http://dx.doi.org/10.2737/so-gtr-61.

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Hall, Frederick C. Variation in shrub and herb cover and production on ungrazed pine and sagebrush sites in eastern Oregon: a 27-year photomonitoring study. Portland, OR: U.S. Department of Agriculture, Forest Service, Pacific Northwest Research Station, 2007. http://dx.doi.org/10.2737/pnw-gtr-704.

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Dai, Ning, Fangfang Zhao, Min Fang, Lingyao Kong, Fenglan Pu i Jianping Liu. Gynostemma Pentaphyllum for Dyslipidemia: A protocol of Systematic Review of Randomized Controlled Trials. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, styczeń 2022. http://dx.doi.org/10.37766/inplasy2022.1.0135.

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Streszczenie:
Review question / Objective: The aim of this systematic review is to compare Chinese herb Gynostemma pentaphyllum with no treatment, placebo, lipid-lowering agents, or other Chinese herbal products that containing red yeast rice extracts to evaluate effectiveness, safety and cost-effectiveness in people with dyslipidemia to inform clinical practice. To this end, the proposed systematic review will address the following question: Is Chinese herb Gynostemma pentaphyllum effective for dyslipidemia? Information sources: The PubMed, the Cochrane Library, EMBASE, Web of Science, China National Knowledge Infrastructure (CNKI), Chinese Scientific Journal Database (VIP), SinoMed, and Wanfang Data will be searched in January 2022. We also explored the World Health Organization International Clinical Trials Registry Platform (https://www.who.int/clinical-trials-registry-platform), ClinicalTrials.gov (www.clinicaltrials.gov/), and the Chinese Clinical Trial Registry (http://www.chictr.org.cn/index.aspx) for ongoing or unpublished trials to January 2022. Subject words or text words are determined based on published systematic reviews, clinical practice guidelines, ICD-10, ICD-11, MeSH terms, and Emtree. In addition, the reference lists of all identified studies will also be searched to find any relevant trials for inclusion.
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Yang, Xiaomei. Clinical Efficacy and Safety of Chinese Herb Medicine for the Treatment of Patients With Early Diabetic Nephropathy : A Protocol for Systematic Review and Meta-analysis. INPLASY - International Platform of Registered Systematic Review Protocols, kwiecień 2020. http://dx.doi.org/10.37766/inplasy2020.4.0139.

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Hu, Shuaihang, Zheng Li, Lili Zhu, Shuo Wang, Siyu Xu, Xinyan Wang, Xiumei Ma i Wei Hou. Clinical efficacy and safety of Chinese herb injections combination with platinum-based chemotherapy for advanced non-small cell lung cancer:A protocol for Bayesian network meta-Analysis. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, listopad 2021. http://dx.doi.org/10.37766/inplasy2021.11.0105.

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Tu, Shijuan, Yali Zheng, Ni Jin i H. Yang. The efficacy and safety of warming acupuncture and moxibustion combined with Chinese herb medicine on knee osteoarthritis A protocol for a systematic review and meta-analysis. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, marzec 2022. http://dx.doi.org/10.37766/inplasy2022.3.0012.

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