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1

Brugere-Picoux, Jeanne, and Philippe Tessier. "Gastro-entérites virales des animaux domestiques et zoonoses." Bulletin de l'Académie Nationale de Médecine 194, no. 8 (2010): 1439–49. http://dx.doi.org/10.1016/s0001-4079(19)32174-0.

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2

Salvetti, Anna, and Sylvain Baize. "Zoonoses virales et émergence : la recherche ne fait que commencer." médecine/sciences 31, no. 12 (2015): 1055–56. http://dx.doi.org/10.1051/medsci/20153112001.

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3

Roche, Benjamin, and Serge Morand. "Perte de biodiversité, prélude aux émergences virales." médecine/sciences 38, no. 12 (2022): 1039–42. http://dx.doi.org/10.1051/medsci/2022160.

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Aujourd’hui, l’émergence de zoonoses est un phénomène des plus préoccupants. Avec les exemples récents du virus Ebola, des virus responsables des grippes aviaires, ou des coronavirus, cette menace s’intensifie et fait craindre des pandémies de la même ampleur que celle de la Covid-19. Dans cette synthèse, nous dressons l’état des connaissances sur les mécanismes impliqués dans ces émergences, que ce soit l’impact de l’homme sur les écosystèmes, l’élevage intensif d’animaux domestiques, ou encore le commerce de la faune sauvage. Nous concluons sur l’importance d’adopter une réelle approche inté
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4

Chastel, C. "Le « syndrome respiratoire du Moyen-Orient » (MERS) : qui est responsable, les chauves-souris ou le dromadaire ?" Bulletin de la Société de pathologie exotique 107, no. 2 (2014): 69–73. https://doi.org/10.5281/zenodo.13530078.

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(Uploaded by Plazi for the Bat Literature Project) En 2012, une nouvelle maladie virale émergente est apparue au Moyen-Orient, le MERS, abréviation en anglais pour « Syndrome respiratoire du Moyen-Orient ». Au 9 janvier 2014, elle avait déjà touché 178 personnes dans le monde, dont 75 étaient décédées dans un tableau d'insuffisance respiratoire et de diarrhée. La nouvelle maladie ressemblait cliniquement au SRAS (2002–2003), de sinistre mémoire, et comme le SRAS, était provoquée par un Betacoronavirus nouveau. On a donc pensé que des chiroptères pouvaient être à l'origine du MERS. D'ailleurs,
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5

Chastel, C. "Le « syndrome respiratoire du Moyen-Orient » (MERS) : qui est responsable, les chauves-souris ou le dromadaire ?" Bulletin de la Société de pathologie exotique 107, no. 2 (2014): 69–73. https://doi.org/10.5281/zenodo.13530078.

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(Uploaded by Plazi for the Bat Literature Project) En 2012, une nouvelle maladie virale émergente est apparue au Moyen-Orient, le MERS, abréviation en anglais pour « Syndrome respiratoire du Moyen-Orient ». Au 9 janvier 2014, elle avait déjà touché 178 personnes dans le monde, dont 75 étaient décédées dans un tableau d'insuffisance respiratoire et de diarrhée. La nouvelle maladie ressemblait cliniquement au SRAS (2002–2003), de sinistre mémoire, et comme le SRAS, était provoquée par un Betacoronavirus nouveau. On a donc pensé que des chiroptères pouvaient être à l'origine du MERS. D'ailleurs,
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6

Salinas, Sara, and Yannick Simonin. "Les atteintes neurologiques liées au SARS-CoV-2 et autres coronavirus humains." médecine/sciences 36, no. 8-9 (2020): 775–82. http://dx.doi.org/10.1051/medsci/2020122.

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L’émergence récente d’un nouveau coronavirus, le SARS-CoV-2, responsable de la maladie appelée COVID-19, est un nouvel avertissement du risque pour la santé publique représenté par les zoonoses virales et notamment par les coronavirus. Principalement connus pour leur capacité à infecter les voies respiratoires supérieures et inférieures, les coronavirus peuvent également affecter le système nerveux central et périphérique, comme c’est le cas pour de nombreux virus respiratoires, tels que les virus influenza ou le virus respiratoire syncytial. Les infections du système nerveux sont un problème
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7

Parodi, André-Laurent. "Zoonoses. Tome 1 : Maladies virales et parasitaires et Tome 2 : Maladies bactériennes, sous la direction de Christophe Brard. Éditions Bulletin des Groupements Techniques Vétérinaires, 2011." Bulletin de l'Académie Nationale de Médecine 198, no. 1 (2014): 151–52. http://dx.doi.org/10.1016/s0001-4079(19)31367-6.

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8

Sisa-Guambuguete, Jefferson Wladimir, Eduardo Antonio Cueva-Vega, and Mildre Mercedes Vidal-del-Río. "Zoonosis virales emergentes de impacto global." Revista Arbitrada Interdisciplinaria de Ciencias de la Salud. Salud y Vida 6, no. 1 (2022): 304. http://dx.doi.org/10.35381/s.v.v6i1.1735.

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Objetivo: Analizar las principales zoonosis virales emergentes y su impacto a nivel global en la presentación de epidemias y pandemias que afectan la salud humana. Método: Se desarrolló una revisión sistemática de 15 artículos de la base de datos PubMed. Análisis de los resultados: Considerando que, en la inmensa mayoría de los casos, la intervención o control en la fuente animal podría evitar problemas ulteriores de salud pública, se hace necesario considerar y desarrollar intervenciones integradas, que tengan en cuenta las causas que interactúan y son responsables de los problemas intersecto
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9

ENRIA, D. A. M., and S. C. LEVIS. "Zoonosis virales emergentes : las infecciones por hantavirus." Revue Scientifique et Technique de l'OIE 23, no. 2 (2004): 595–611. http://dx.doi.org/10.20506/rst.23.2.1501.

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10

Hermida-Borroto, María Carla, and Geneviève Ménard. "El murciélago como fuente de zoonosis virales." Mediciego 28 (January 31, 2022): e1941. https://doi.org/10.5281/zenodo.13748375.

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<strong>Introducci&oacute;n:</strong> los murci&eacute;lagos (quir&oacute;pteros) son mam&iacute;feros transmisores de diversos virus zoon&oacute;ticos al hombre y otros animales. Seg&uacute;n evidencias recientes, uno de estos virus ser&iacute;a el causante de la COVID-19, enfermedad infecciosa surgida a finales de 2019 y actual pandemia. <strong>Objetivo:</strong> exponer los criterios actuales sobre la relevancia de la inmunidad quir&oacute;ptera en la cadena epidemiol&oacute;gica de estas zoonosis, a partir de describir los virus de origen quir&oacute;ptero con mayor impacto en el &uacute;
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11

Lorenzo, Consuelo, Gloria Tapia-Ramírez, Itandehui Hernández-Aguilar, and Jesús R. Hernández-Montero. "Zoonosis virales emergentes ¿Qué sabemos y qué desconocemos?" Therya ixmana 1, no. 3 (2022): 92–94. http://dx.doi.org/10.12933/therya_ixmana-22-248.

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Después del surgimiento de la pandemia por COVID-19, se difundió información sobre otras enfermedades transmitidas al humano a través de animales (zoonosis). Pero ¿cuál es el panorama de estas enfermedades en el país? ¿México podría ser epicentro de un evento pandémico?
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12

Octavio-Aguilar, Pablo, and Oscar Antonio González-Granillo. "Pandemias virales: aspectos generales sobre tres zoonosis de importancia médica." Herreriana 5, no. 1 (2023): 37–42. http://dx.doi.org/10.29057/h.v5i1.8564.

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La situación actual nos confronta con un problema de salud de proporciones globales, entender las implicaciones generales de una pandemia viral nos permitirá un mejor entendimiento de los procesos que las generan. En este trabajo se muestran aspectos históricos sobre el surgimiento de tres zoonosis virales pandémicas, además de los métodos estandarizados de diagnóstico y aspectos económicos y sociales relevantes para entender la repercusión que este tipo de padecimientos tienen sobre la humanidad. Si actualmente solo se conoce un 0.1 % de la diversidad de virus que afectan a los mamíferos, exi
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13

Bourée, Patrice, and Pascale Sarrand. "L’orf, une zoonose virale fréquente mais mal connue." Revue Francophone des Laboratoires 2016, no. 483 (2016): 63–66. http://dx.doi.org/10.1016/s1773-035x(16)30201-5.

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14

Borzée, Amaël, Jeffrey McNeely, Kit Magellan, et al. "COVID-19 Highlights the Need for More Effective Wildlife Trade Legislation." Trends in Ecology & Evolution 35, no. 12 (2020): 1052–55. https://doi.org/10.5281/zenodo.13536782.

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(Uploaded by Plazi for the Bat Literature Project) Zoonosis-based epidemics are inevitable unless we revisit our relationship with the natural world, protect habitats, and regulate wildlife trade, including live animals and non-sustenance products. To prevent future zoonoses, governments must establish effective legislation addressing wildlife trade, protection of habitats, and reduction of the wildlife-livestock-human interface.
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15

Borzée, Amaël, Jeffrey McNeely, Kit Magellan, et al. "COVID-19 Highlights the Need for More Effective Wildlife Trade Legislation." Trends in Ecology & Evolution 35, no. 12 (2020): 1052–55. https://doi.org/10.5281/zenodo.13536782.

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(Uploaded by Plazi for the Bat Literature Project) Zoonosis-based epidemics are inevitable unless we revisit our relationship with the natural world, protect habitats, and regulate wildlife trade, including live animals and non-sustenance products. To prevent future zoonoses, governments must establish effective legislation addressing wildlife trade, protection of habitats, and reduction of the wildlife-livestock-human interface.
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16

Griffiths, Megan E., Laura M. Bergner, Alice Broos, et al. "Epidemiology and biology of a herpesvirus in rabies endemic vampire bat populations." Nature Communications 11, no. 1 (2020): 5951. https://doi.org/10.5281/zenodo.14819254.

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(Uploaded by Plazi for the Bat Literature Project) Abstract Rabies is a viral zoonosis transmitted by vampire bats across Latin America. Substantial public health and agricultural burdens remain, despite decades of bats culls and livestock vaccinations. Virally vectored vaccines that spread autonomously through bat populations are a theoretically appealing solution to managing rabies in its reservoir host. We investigate the biological and epidemiological suitability of a vampire bat betaherpesvirus (DrBHV) to act as a vaccine vector. In 25 sites across Peru with serological and/or molecular e
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17

Peton, M., P. Vilain, O. Reilhes, E. Cardinale, B. A. Gaüzère, and L. Filleul. "Le concept de maladies virales émergentes : quel risque de zoonose pour La Réunion ?" Bulletin de la Société de pathologie exotique 106, no. 3 (2013): 170–75. http://dx.doi.org/10.1007/s13149-013-0294-9.

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18

Bouaicha, Faten, Safoine Benslama, and Sihem El Hamdi Mansour. "L’ecthyma contagieux chez les petits ruminants : toujours d’actualité ?" Le Nouveau Praticien Vétérinaire élevages & santé 16, no. 57-58 (2024): 62–72. https://doi.org/10.1051/npvelsa/2025005.

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L’ecthyma contagieux est une maladie virale contagieuse des petits ruminants due à un parapoxvirus. La forme classique de la maladie se manifeste par des lésions cutanées et muqueuses, localisées majoritairement au niveau de la cavité buccale, des pieds et de la mamelle. Le traitement de l’ecthyma contagieux est symptomatique et repose sur l’association d’un traitement local antiseptique à un traitement antibiotique et anti-inflammatoire. L’ecthyma contagieux est considéré comme une zoonose mineure.
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19

Lorenzo Monterrubio, Consuelo, Tamara Rioja Paradela, Arturo Carrillo Reyes, Jorge Bolaños Citalán, Eugenia C. Sántiz, and Darío Navarrete Gutiérrez. "Enfermedades zoonóticas virales emergentes. Importancia ecológica y su evaluación en el sureste de México." Sociedad y Ambiente, no. 15 (November 1, 2017): 131–46. http://dx.doi.org/10.31840/sya.v0i15.1791.

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Es de gran importancia conocer y evaluar las enfermedades zoonóticas emergentes que existen en el sureste de México, ya que representan una amenaza significativa para la salud pública. Los cambios antropogénicos, por ejemplo, la deforestación, el establecimiento de monocultivos, el aumento de la urbanización y la densidad poblacional humana son responsables de la mayoría de las enfermedades infecciosas emergentes zoonóticas. Pronósticos de eventos emergentes indican que en los países con ambientes tropicales (como México) existe una mayor diversidad de zoonosis transmitidas por animales silves
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20

Benavides-Arias, Diana Mercedes, and Diego Soler-Tovar. "Evaluación prospectiva de las iniciativas en contra de las zoonosis de países de América Latina." Revista de Salud Pública 23, no. 4 (2021): 1–9. http://dx.doi.org/10.15446/rsap.v23n4.88717.

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Objetivo Evaluar comparativamente las iniciativas a escala nacional en contra de las zoonosis en países de América Latina mediante la adaptación de la evaluación prospectiva. Materiales y Métodos Se analizó la vigilancia de los eventos de interés en salud pública y medidas ejecutadas y se adaptó el método de evaluación prospectiva de Haegeman con cinco criterios: evaluación, pertinencia, eficacia, oportunidad y sostenibilidad; estos fueron especificados y aplicados de manera cualitativa para medir el logro y el efecto de cada una de las iniciativas, determinando la eficacia de manera objetiva
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21

Baker, Kate S., Mary Tachedjian, Jennifer Barr, et al. "Achimota Pararubulavirus 3: A New Bat-Derived Paramyxovirus of the Genus Pararubulavirus." Viruses 12, no. 11 (2020): 1236. https://doi.org/10.5281/zenodo.13531802.

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(Uploaded by Plazi for the Bat Literature Project) Bats are an important source of viral zoonoses, including paramyxoviruses. The paramyxoviral Pararubulavirus genus contains viruses mostly derived from bats that are common, diverse, distributed throughout the Old World, and known to be zoonotic. Here, we describe a new member of the genus Achimota pararubulavirus 3 (AchPV3) and its isolation from the urine of African straw-coloured fruit bats on primary bat kidneys cells. We sequenced and analysed the genome of AchPV3 relative to other Paramyxoviridae, revealing it to be similar to known para
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Baker, Kate S., Mary Tachedjian, Jennifer Barr, et al. "Achimota Pararubulavirus 3: A New Bat-Derived Paramyxovirus of the Genus Pararubulavirus." Viruses 12, no. 11 (2020): 1236. https://doi.org/10.5281/zenodo.13531802.

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(Uploaded by Plazi for the Bat Literature Project) Bats are an important source of viral zoonoses, including paramyxoviruses. The paramyxoviral Pararubulavirus genus contains viruses mostly derived from bats that are common, diverse, distributed throughout the Old World, and known to be zoonotic. Here, we describe a new member of the genus Achimota pararubulavirus 3 (AchPV3) and its isolation from the urine of African straw-coloured fruit bats on primary bat kidneys cells. We sequenced and analysed the genome of AchPV3 relative to other Paramyxoviridae, revealing it to be similar to known para
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AZIMI MAHALLEH, Azam, and Tarık Halûk ÇELİK. "Epidemiology of New Emerging and Re-Emerging Some Viral and Parasitic Food-Borne Zoonoses." Turkiye Klinikleri Journal of Veterinary Sciences 10, no. 1 (2019): 21–30. http://dx.doi.org/10.5336/vetsci.2018-62730.

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24

Sauvage, Virginie, and Jean-Marc Reynes. "Diagnostic de laboratoire d’une infection par un hantavirus." Revue de biologie médicale N° 371, no. 2 (2023): 17–33. http://dx.doi.org/10.3917/rbm.371.0017.

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Certains hantavirus associés aux rongeurs sont responsables annuellement, selon les pays, de quelques cas d’infections humaines à plusieurs milliers, de gravité variable, parfois mortelles. Cette zoonose se traduit par deux types de syndromes connus sous les noms de fièvre hémorragique à syndrome rénal (FHSR), causée principalement par des hantavirus de l’Ancien Monde (Europe et Asie), et syndrome pulmonaire à hantavirus (SPH) dû essentiellement à des hantavirus du Nouveau Monde (Amériques). Quelle que soit la forme clinique de l’infection, son diagnostic biologique repose avant tout sur une a
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25

Bonilla-Aldana, D. Katterine, Wilmer E. Villamil-Gómez, Ali A. Rabaan, and Alfonso J. Rodriguez-Morales. "Una nueva zoonosis viral de preocupación global." Iatreia 33, no. 2 (2020): 107–10. http://dx.doi.org/10.17533/udea.iatreia.85.

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Los coronavirus (CoV) en sentido amplio son un grupo de virus de ARN de cadena simple con envoltura. Estos pertenecen a la subfamilia Orthocoronavirinae, familia Coronaviridae, en el orden Nidovirales. Se clasifican en cuatro géneros: alfa, beta, gamma y Deltacoronavirus. Los dos primeros pueden infectar al ser humano (1,2). Los CoV son agentes patógenos que pueden ser transmitidos a los animales y al hombre; tienen una distribución mundial (3-5).&#x0D; La infección por CoV en animales particularmente en bovinos, cerdos, perros, entre otros, es conocida desde hace muchas décadas; estos al infe
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26

Abdullahi, Umar Suleiman, Bello Sharif Hauwa, and Shitu Sabi'u. "Knowledge, Attitudes and Perception of Some Selected Communities in Kaduna State towards Emerging Viral Zoonoses." AITU Scientific Research Journal 1, no. 4 (2023): 1–16. https://doi.org/10.5281/zenodo.8394301.

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27

Peláez, Dioselina, Daniel Martínez-Vargas, Martha Escalante-Mora, Mariel Palacios-Vivero, and Lady Contreras-Gómez. "Infección simultánea por el virus de la hepatitis E y de otras hepatitis virales en Colombia y su caracterización genotípica." Biomédica 36 (December 4, 2015): 69. http://dx.doi.org/10.7705/biomedica.v36i0.2957.

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&lt;p&gt;&lt;strong&gt;Introducción.&lt;/strong&gt; El virus de la hepatitis E se ha convertido en un problema de salud pública, especialmente en los países en desarrollo. Se conocen cuatro genotipos en mamíferos, de los cuales el G3 se ha encontrado en hepatitis autóctonas en países y regiones con gran población de cerdos, y el G1 se ha asociado a muertes maternas.&lt;br /&gt;&lt;strong&gt;Objetivo.&lt;/strong&gt; Determinar la infección simultánea con el virus de la hepatitis E y sus genotipos circulantes en Colombia en 1.097 sueros utilizando los marcadores serológicos de los virus de las h
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28

Temmam, Sarah, Bernard Davoust, Jean-Michel Berenger, Didier Raoult, and Christelle Desnues. "Viral Metagenomics on Animals as a Tool for the Detection of Zoonoses Prior to Human Infection?" International Journal of Molecular Sciences 15, no. 6 (2014): 10377–97. https://doi.org/10.5281/zenodo.13504367.

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(Uploaded by Plazi for the Bat Literature Project) Many human viral infections have a zoonotic, i.e., wild or domestic animal, origin. Several zoonotic viruses are transmitted to humans directly via contact with an animal or indirectly via exposure to the urine or feces of infected animals or the bite of a bloodsucking arthropod. If a virus is able to adapt and replicate in its new human host, human-to-human transmissions may occur, possibly resulting in an epidemic, such as the A/H1N1 flu pandemic in 2009. Thus, predicting emerging zoonotic infections is an important challenge for public heal
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29

Temmam, Sarah, Bernard Davoust, Jean-Michel Berenger, Didier Raoult, and Christelle Desnues. "Viral Metagenomics on Animals as a Tool for the Detection of Zoonoses Prior to Human Infection?" International Journal of Molecular Sciences 15, no. 6 (2014): 10377–97. https://doi.org/10.5281/zenodo.13504367.

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(Uploaded by Plazi for the Bat Literature Project) Many human viral infections have a zoonotic, i.e., wild or domestic animal, origin. Several zoonotic viruses are transmitted to humans directly via contact with an animal or indirectly via exposure to the urine or feces of infected animals or the bite of a bloodsucking arthropod. If a virus is able to adapt and replicate in its new human host, human-to-human transmissions may occur, possibly resulting in an epidemic, such as the A/H1N1 flu pandemic in 2009. Thus, predicting emerging zoonotic infections is an important challenge for public heal
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Temmam, Sarah, Bernard Davoust, Jean-Michel Berenger, Didier Raoult, and Christelle Desnues. "Viral Metagenomics on Animals as a Tool for the Detection of Zoonoses Prior to Human Infection?" International Journal of Molecular Sciences 15, no. 6 (2014): 10377–97. https://doi.org/10.5281/zenodo.13504367.

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(Uploaded by Plazi for the Bat Literature Project) Many human viral infections have a zoonotic, i.e., wild or domestic animal, origin. Several zoonotic viruses are transmitted to humans directly via contact with an animal or indirectly via exposure to the urine or feces of infected animals or the bite of a bloodsucking arthropod. If a virus is able to adapt and replicate in its new human host, human-to-human transmissions may occur, possibly resulting in an epidemic, such as the A/H1N1 flu pandemic in 2009. Thus, predicting emerging zoonotic infections is an important challenge for public heal
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31

Temmam, Sarah, Bernard Davoust, Jean-Michel Berenger, Didier Raoult, and Christelle Desnues. "Viral Metagenomics on Animals as a Tool for the Detection of Zoonoses Prior to Human Infection?" International Journal of Molecular Sciences 15, no. 6 (2014): 10377–97. https://doi.org/10.5281/zenodo.13504367.

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(Uploaded by Plazi for the Bat Literature Project) Many human viral infections have a zoonotic, i.e., wild or domestic animal, origin. Several zoonotic viruses are transmitted to humans directly via contact with an animal or indirectly via exposure to the urine or feces of infected animals or the bite of a bloodsucking arthropod. If a virus is able to adapt and replicate in its new human host, human-to-human transmissions may occur, possibly resulting in an epidemic, such as the A/H1N1 flu pandemic in 2009. Thus, predicting emerging zoonotic infections is an important challenge for public heal
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32

Savadogo, Madi, Philippe Koné, Laibané Dieudonné Dahourou, et al. "Epidémiologie de la rage et connaissance, attitudes et pratiques des communautés au Burkina Faso." Revue d’élevage et de médecine vétérinaire des pays tropicaux 73, no. 2 (2020): 133–40. http://dx.doi.org/10.19182/remvt.31863.

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La rage est une zoonose endémique dans les pays en développement et compte parmi les pathologies virales les plus virulentes et mortelles. Elle constitue une menace pour la sante publique et animale au Burkina Faso. La présente étude transversale a été conduite pour décrire l’épidémiologie de la rage et les connaissances, attitudes et pratiques (CAP) des populations à Ouagadougou. Elle a consisté en une collecte de données auprès des ménages et des structures techniques impliquées dans la prévention, le contrôle et la surveillance de la rage humaine et animale. L’enquête CAP a été réalisée aup
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33

Geerdes-Fenge, H. F. "Pneumonien mit Reiseanamnese." Pneumologie 68, no. 10 (2014): 685–95. https://doi.org/10.5281/zenodo.13530245.

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(Uploaded by Plazi for the Bat Literature Project) Fieberhafte Erkrankungen nach Tropenaufenthalt werden in bis zu 11 % der Fälle durch Atemwegsinfektionen verursacht. Pneumonien bei Reiserückkehrern oder bei Migranten aus tropischen oder subtropischen Regionen werden in der Regel durch die auch in Europa üblichen Erreger verursacht: Pneumokokken, <i>Haemophilus influenzae</i>, <i>Mycoplasma pneumoniae</i>, <i>Chlamydophila pneumoniae</i>, Influenza, <i>Legionella pneumophila</i>. Es gibt jedoch auch Lungenerkrankungen, die nach einem Aufenthalt in den Tropen oder Subtropen auf dort endemische
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Geerdes-Fenge, H. F. "Pneumonien mit Reiseanamnese." Pneumologie 68, no. 10 (2014): 685–95. https://doi.org/10.5281/zenodo.13530245.

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(Uploaded by Plazi for the Bat Literature Project) Fieberhafte Erkrankungen nach Tropenaufenthalt werden in bis zu 11 % der Fälle durch Atemwegsinfektionen verursacht. Pneumonien bei Reiserückkehrern oder bei Migranten aus tropischen oder subtropischen Regionen werden in der Regel durch die auch in Europa üblichen Erreger verursacht: Pneumokokken, <i>Haemophilus influenzae</i>, <i>Mycoplasma pneumoniae</i>, <i>Chlamydophila pneumoniae</i>, Influenza, <i>Legionella pneumophila</i>. Es gibt jedoch auch Lungenerkrankungen, die nach einem Aufenthalt in den Tropen oder Subtropen auf dort endemische
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35

Dieye, Papa Samba, Youssou Bamar Gueye, Boly Diop, et al. "Fièvre Hémorragique Crimée Congo au Sénégal en 2023 : situation épidémiologique et riposte." Santé Publique 37, no. 2 (2025): 239–44. https://doi.org/10.3917/spub.252.0239.

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Introduction : La Fièvre Hémorragique de Crimée-Congo (FHCC) est une maladie virale sévère causée par un virus du genre Nairovirus, principalement transmise par les tiques et, dans certains cas, par contact avec du sang ou des fluides corporels infectés. La FHCC est endémique dans plusieurs régions d’Afrique. Cette étude se concentre sur les cas de FHCC au Sénégal en 2023 et sur les réponses déployées pour gérer l’épidémie. Méthodologie : Une étude rétrospective a été réalisée pour analyser l’épidémie de FHCC au Sénégal en 2023. Le Réseau de Surveillance Sentinelle Syndromique (Réseau 4S), a p
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36

Dieye, Papa Samba, Youssou Bamar Gueye, Boly Diop, et al. "Fièvre Hémorragique Crimée Congo au Sénégal en 2023 : situation épidémiologique et riposte." Santé Publique Prépublications (January 1, 2030): I67—VI. https://doi.org/10.3917/spub.pr2.0067.

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Introduction : La Fièvre Hémorragique de Crimée-Congo (FHCC) est une maladie virale sévère causée par un virus du genre Nairovirus, principalement transmise par les tiques et, dans certains cas, par contact avec du sang ou des fluides corporels infectés. La FHCC est endémique dans plusieurs régions d’Afrique. Cette étude se concentre sur les cas de FHCC au Sénégal en 2023 et sur les réponses déployées pour gérer l’épidémie. Méthodologie : Une étude rétrospective a été réalisée pour analyser l’épidémie de FHCC au Sénégal en 2023. Le Réseau de Surveillance Sentinelle Syndromique (Réseau 4S), a p
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37

Riesle-Sbarbaro, S. A., G. Wibbelt, A. Düx, et al. "Selective replication and vertical transmission of Ebola virus in experimentally infected Angolan free-tailed bats." Nature Communications 15, no. 1 (2024): 925. https://doi.org/10.5281/zenodo.13533273.

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(Uploaded by Plazi for the Bat Literature Project) The natural reservoir of Ebola virus (EBOV), agent of a zoonosis burdening several African countries, remains unidentified, albeit evidence points towards bats. In contrast, the ecology of the related Marburg virus is much better understood; with experimental infections of bats being instrumental for understanding reservoir-pathogen interactions. Experiments have focused on elucidating reservoir competence, infection kinetics and specifically horizontal transmission, although, vertical transmission plays a key role in many viral enzootic cycle
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38

Riesle-Sbarbaro, S. A., G. Wibbelt, A. Düx, et al. "Selective replication and vertical transmission of Ebola virus in experimentally infected Angolan free-tailed bats." Nature Communications 15, no. 1 (2024): 925. https://doi.org/10.5281/zenodo.13533273.

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Abstract:
(Uploaded by Plazi for the Bat Literature Project) The natural reservoir of Ebola virus (EBOV), agent of a zoonosis burdening several African countries, remains unidentified, albeit evidence points towards bats. In contrast, the ecology of the related Marburg virus is much better understood; with experimental infections of bats being instrumental for understanding reservoir-pathogen interactions. Experiments have focused on elucidating reservoir competence, infection kinetics and specifically horizontal transmission, although, vertical transmission plays a key role in many viral enzootic cycle
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39

Rondón-Carrasco, Joel, Mislaidis Fajardo-Rodríguez, and Carmen Luisa Morales-Vázquez. "Caracterización clínico-epidemiológica de la infección por viruela del mono." Mediciego 29 (January 25, 2023): e3565. https://doi.org/10.5281/zenodo.11493644.

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<strong>Introducci&oacute;n</strong>: el virus de la viruela s&iacute;mica es una enfermedad zoon&oacute;tica viral, rara, que puede transmitirse de animales a humanos y entre personas. <strong>Objetivo</strong>: exponer la distribuci&oacute;n epidemiol&oacute;gica, las caracter&iacute;sticas cl&iacute;nicas, de diagn&oacute;stico y tratamiento, as&iacute; como las acciones de prevenci&oacute;n. <strong>M&eacute;todos</strong>: se realiz&oacute; una revisi&oacute;n bibliogr&aacute;fica sistem&aacute;tica para la cual se consultaron 36 fuentes en espa&ntilde;ol e ingl&eacute;s, de las cuales se
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40

Esona, M. D., S. Mijatovic-Rustempasic, C. Conrardy, et al. "Reassortant group A rotavirus from straw-colored fruit bat (Eidolon helvum)." Emerg Infect Dis 16, no. 12 (2010): 1844–52. https://doi.org/10.5281/zenodo.13526006.

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(Uploaded by Plazi for the Bat Literature Project) Bats are known reservoirs of viral zoonoses. We report genetic characterization of a bat rotavirus (Bat/KE4852/07) detected in the feces of a straw-colored fruit bat (Eidolon helvum). Six bat rotavirus genes (viral protein [VP] 2, VP6, VP7, nonstructural protein [NSP] 2, NSP3, and NSP5) shared ancestry with other mammalian rotaviruses but were distantly related. The VP4 gene was nearly identical to that of human P[6] rotavirus strains, and the NSP4 gene was closely related to those of previously described mammalian rotaviruses, including human
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41

Esona, M. D., S. Mijatovic-Rustempasic, C. Conrardy, et al. "Reassortant group A rotavirus from straw-colored fruit bat (Eidolon helvum)." Emerg Infect Dis 16, no. 12 (2010): 1844–52. https://doi.org/10.5281/zenodo.13526006.

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Abstract:
(Uploaded by Plazi for the Bat Literature Project) Bats are known reservoirs of viral zoonoses. We report genetic characterization of a bat rotavirus (Bat/KE4852/07) detected in the feces of a straw-colored fruit bat (Eidolon helvum). Six bat rotavirus genes (viral protein [VP] 2, VP6, VP7, nonstructural protein [NSP] 2, NSP3, and NSP5) shared ancestry with other mammalian rotaviruses but were distantly related. The VP4 gene was nearly identical to that of human P[6] rotavirus strains, and the NSP4 gene was closely related to those of previously described mammalian rotaviruses, including human
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42

Esona, M. D., S. Mijatovic-Rustempasic, C. Conrardy, et al. "Reassortant group A rotavirus from straw-colored fruit bat (Eidolon helvum)." Emerg Infect Dis 16, no. 12 (2010): 1844–52. https://doi.org/10.5281/zenodo.13526006.

Full text
Abstract:
(Uploaded by Plazi for the Bat Literature Project) Bats are known reservoirs of viral zoonoses. We report genetic characterization of a bat rotavirus (Bat/KE4852/07) detected in the feces of a straw-colored fruit bat (Eidolon helvum). Six bat rotavirus genes (viral protein [VP] 2, VP6, VP7, nonstructural protein [NSP] 2, NSP3, and NSP5) shared ancestry with other mammalian rotaviruses but were distantly related. The VP4 gene was nearly identical to that of human P[6] rotavirus strains, and the NSP4 gene was closely related to those of previously described mammalian rotaviruses, including human
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43

Esona, M. D., S. Mijatovic-Rustempasic, C. Conrardy, et al. "Reassortant group A rotavirus from straw-colored fruit bat (Eidolon helvum)." Emerg Infect Dis 16, no. 12 (2010): 1844–52. https://doi.org/10.5281/zenodo.13526006.

Full text
Abstract:
(Uploaded by Plazi for the Bat Literature Project) Bats are known reservoirs of viral zoonoses. We report genetic characterization of a bat rotavirus (Bat/KE4852/07) detected in the feces of a straw-colored fruit bat (Eidolon helvum). Six bat rotavirus genes (viral protein [VP] 2, VP6, VP7, nonstructural protein [NSP] 2, NSP3, and NSP5) shared ancestry with other mammalian rotaviruses but were distantly related. The VP4 gene was nearly identical to that of human P[6] rotavirus strains, and the NSP4 gene was closely related to those of previously described mammalian rotaviruses, including human
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44

Plowright, Raina K., Alison J. Peel, Daniel G. Streicker, et al. "Transmission or Within-Host Dynamics Driving Pulses of Zoonotic Viruses in Reservoir–Host Populations." PLOS Neglected Tropical Diseases 10, no. 8 (2016): e0004796. https://doi.org/10.5281/zenodo.13504469.

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(Uploaded by Plazi for the Bat Literature Project) Progress in combatting zoonoses that emerge from wildlife is often constrained by limited knowledge of the biology of pathogens within reservoir hosts. We focus on the host–pathogen dynamics of four emerging viruses associated with bats: Hendra, Nipah, Ebola, and Marburg viruses. Spillover of bat infections to humans and domestic animals often coincides with pulses of viral excretion within bat populations, but the mechanisms driving such pulses are unclear. Three hypotheses dominate current research on these emerging bat infections. First, pu
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45

Plowright, Raina K., Alison J. Peel, Daniel G. Streicker, et al. "Transmission or Within-Host Dynamics Driving Pulses of Zoonotic Viruses in Reservoir–Host Populations." PLOS Neglected Tropical Diseases 10, no. 8 (2016): e0004796. https://doi.org/10.5281/zenodo.13504469.

Full text
Abstract:
(Uploaded by Plazi for the Bat Literature Project) Progress in combatting zoonoses that emerge from wildlife is often constrained by limited knowledge of the biology of pathogens within reservoir hosts. We focus on the host–pathogen dynamics of four emerging viruses associated with bats: Hendra, Nipah, Ebola, and Marburg viruses. Spillover of bat infections to humans and domestic animals often coincides with pulses of viral excretion within bat populations, but the mechanisms driving such pulses are unclear. Three hypotheses dominate current research on these emerging bat infections. First, pu
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46

Plowright, Raina K., Alison J. Peel, Daniel G. Streicker, et al. "Transmission or Within-Host Dynamics Driving Pulses of Zoonotic Viruses in Reservoir–Host Populations." PLOS Neglected Tropical Diseases 10, no. 8 (2016): e0004796. https://doi.org/10.5281/zenodo.13504469.

Full text
Abstract:
(Uploaded by Plazi for the Bat Literature Project) Progress in combatting zoonoses that emerge from wildlife is often constrained by limited knowledge of the biology of pathogens within reservoir hosts. We focus on the host–pathogen dynamics of four emerging viruses associated with bats: Hendra, Nipah, Ebola, and Marburg viruses. Spillover of bat infections to humans and domestic animals often coincides with pulses of viral excretion within bat populations, but the mechanisms driving such pulses are unclear. Three hypotheses dominate current research on these emerging bat infections. First, pu
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47

Plowright, Raina K., Alison J. Peel, Daniel G. Streicker, et al. "Transmission or Within-Host Dynamics Driving Pulses of Zoonotic Viruses in Reservoir–Host Populations." PLOS Neglected Tropical Diseases 10, no. 8 (2016): e0004796. https://doi.org/10.5281/zenodo.13504469.

Full text
Abstract:
(Uploaded by Plazi for the Bat Literature Project) Progress in combatting zoonoses that emerge from wildlife is often constrained by limited knowledge of the biology of pathogens within reservoir hosts. We focus on the host–pathogen dynamics of four emerging viruses associated with bats: Hendra, Nipah, Ebola, and Marburg viruses. Spillover of bat infections to humans and domestic animals often coincides with pulses of viral excretion within bat populations, but the mechanisms driving such pulses are unclear. Three hypotheses dominate current research on these emerging bat infections. First, pu
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48

Carlson, Colin J., Maxwell J. Farrell, Zoe Grange, et al. "The future of zoonotic risk prediction." Philosophical Transactions of the Royal Society B: Biological Sciences 376, no. 1837 (2021): 20200358. https://doi.org/10.5281/zenodo.14822502.

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(Uploaded by Plazi for the Bat Literature Project) In the light of the urgency raised by the COVID-19 pandemic, global investment in wildlife virology is likely to increase, and new surveillance programmes will identify hundreds of novel viruses that might someday pose a threat to humans. To support the extensive task of laboratory characterization, scientists may increasingly rely on data-driven rubrics or machine learning models that learn from known zoonoses to identify which animal pathogens could someday pose a threat to global health. We synthesize the findings of an interdisciplinary wo
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49

Orba, Yasuko, Michihito Sasaki, Hiroki Yamaguchi, et al. "Orthopoxvirus infection among wildlife in Zambia." Journal of General Virology 96, Pt 2 (2015): 390–94. https://doi.org/10.5281/zenodo.13534174.

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(Uploaded by Plazi for the Bat Literature Project) Human monkeypox is a viral zoonosis caused by monkeypox virus, an orthopoxvirus (OPXV). The majority of human monkeypox cases have been reported in moist forested regions in West and Central Africa, particularly in the Democratic Republic of the Congo (DRC). In this study we investigated zoonotic OPXV infection among wild animals in Zambia, which shares a border with DRC, to assess the geographical distribution of OPXV. We screened for OPXV antibodies in sera from non-human primates (NHPs), rodents and shrews by ELISA, and performed real-time
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50

Orba, Yasuko, Michihito Sasaki, Hiroki Yamaguchi, et al. "Orthopoxvirus infection among wildlife in Zambia." Journal of General Virology 96, Pt 2 (2015): 390–94. https://doi.org/10.5281/zenodo.13534174.

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Abstract:
(Uploaded by Plazi for the Bat Literature Project) Human monkeypox is a viral zoonosis caused by monkeypox virus, an orthopoxvirus (OPXV). The majority of human monkeypox cases have been reported in moist forested regions in West and Central Africa, particularly in the Democratic Republic of the Congo (DRC). In this study we investigated zoonotic OPXV infection among wild animals in Zambia, which shares a border with DRC, to assess the geographical distribution of OPXV. We screened for OPXV antibodies in sera from non-human primates (NHPs), rodents and shrews by ELISA, and performed real-time
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