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1“…Here we present immature stages (larvae and pupae) of the dipteran ingroup Bibionomorpha, from Baltic and Bitterfeld amber forests. We have recorded at least four different larval morphotypes, one with four distinct instars, and at least three pupal morphotypes. …”
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2por Drzewicz, Przemysław, Naglik, Beata, Natkaniec-Nowak, Lucyna, Dumańska-Słowik, Magdalena, Stach, Paweł, Kwaśny, Mirosław, Matusik, Jakub, Milovský, Rastislav, Skonieczny, Janusz, Kubica-Bąk, Dorota“…Simultaneously, glessite, a fossil resin from Upper Oligocene Bitterfeld deposit (Saxony-Anhalt, Germany), originating from similar botanical sources (i.e. angiosperms) was tested with the same analytical methods in order to find similarities and differences between the resins. …”
Publicado 2020
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6por Lüke, Carina, Ritterfeld, Ute, Grimminger, Angela, Rohlfing, Katharina J., Liszkowski, UlfEnlace del recurso
Publicado 2020
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8por Jensen, Kelly, Noazin, Sassan, Bitterfeld, Leandra, Carcelen, Andrea, Vargas-Cuentas, Natalia I., Hidalgo, Daniela, Valenzuela, Alejandra, Roman-Gonzalez, Avid, Krebs, Casey, Clement, Vincent, Nolan, Cody, Barrientos, Franklin, Mendoza, Ardi Knobel, Noriega-Donis, Paola, Palacios, Claudia, Ramirez, Andrea, Vittet, Macarena, Hafeez, Emil, Torres-Viso, Mariana, Velarde, Myriam, Moulton, Lawrence H., Powers, Michael D., Gilman, Robert H., Zimic, MirkoEnlace del recurso
Publicado 2021
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9por Feldman, Amy G., Beaty, Brenda L., Ferrolino, Jose A., Maron, Gabriela, Weidner, Hillary K., Ali, Saira A., Bitterfeld, Leandra, Boulware, Mary Alice, Campbell, Kathleen M., Carr, Emily, Chapman, Shelley, Chang, Yeh-Chung, Cunningham, Ryan, Dallas, Ronald H., Dantuluri, Keerti L., Domenick, Bryanna N., Ebel, Noelle H., Elisofon, Scott, Fawaz, Rima, Foca, Marc, Gans, Hayley A., Gopalareddy, Vani V., Gu, Cindy, Gupta, Nitika A., Harmann, Katherine, Hollenbeck, Jessica, Huppler, Anna R., Jaramillo, Catalina, Kasi, Nagraj, Kerkar, Nanda, Lerret, Stacee, Lobritto, Steven J., Lopez, Maclovio J., Marini, Elizabeth, Mavis, Alisha, Mehra, Sonia, Moats, Lynnette, Mohandas, Sindhu, Munoz, Flor M., Mysore, Krupa R., Onsan, Ceren, Ovchinsky, Nadia, Perkins, Kerrigan, Postma, Stacy, Pratscher, Lauren, Rand, Elizabeth B., Rowe, Regina K., Schultz, Danielle, Sear, Katherine, Sell, Megan L., Sharma, Tanvi, Stoll, Janis, Vang, Mychoua, Villarin, Dominique, Weaver, Carly, Wood, Phoebe, Woodford-Berry, Olivia, Yanni, George, Danziger-Isakov, Lara A.Enlace del recurso
Publicado 2023
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10“…The aim of this narrative review is to bridge that gap by combining epidemiological and experimental studies based on the same setting: Examples of Bitterfeld, Utah Valley, Beijing Olympic Games, and Viadana. …”
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11“…This cross-sectional epidemiological study collected health data for 2,470 school children between 5 and 14 years of age (89% of eligible children) who had lived most of their lives in either one of two counties strongly impacted by industrial pollution (Bitterfeld and Hettstedt) or in a neighboring county without any sources of industrial pollution (Zerbst). …”
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12por Kaasalainen, Ulla, Heinrichs, Jochen, Krings, Michael, Myllys, Leena, Grabenhorst, Heinrich, Rikkinen, Jouko, Schmidt, Alexander R.“…However, newly discovered inclusions from Paleogene Baltic and Bitterfeld amber verify that alectorioid morphologies in lichens were in existence by the Paleogene. …”
Publicado 2015
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13por Stanczak, Nova, Harvey, Mark S., Harms, Danilo, Hammel, Jörg U., Kotthoff, Ulrich, Loria, Stephanie F.“…We provide the second record of garypinids from the European succinite ambers of the Eocene by describing the first extinct genus in Garypinidae, Baltamblyolpium gen. nov., which includes two species: Baltamblyolpium gizmotum sp. nov. from Baltic amber and Baltamblyolpium grabenhorsti sp. nov. from Bitterfeld amber. The new genus exhibits a morphology that closely resembles Neoamblyolpium Hoff, 1956 from western North America and the genus Amblyolpium Simon, 1898, which is widespread but includes taxa restricted to Mediterranean refugia in Europe. …”
Publicado 2023
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14“…At weaning, pigs were allotted to pens in a completely randomized design and pens of pigs were randomly assigned to one of five dietary treatments: 1) negative control (CON; standard nursery diet containing only 150 ppm Zn from trace mineral premix and no acidifier); 2) control diet with 3,000 ppm added zinc from ZnO included in phase 1 and 2,000 ppm added zinc from ZnO included in phase 2 (ZnO); 3) control diet with 0.70% formic acid (FA; Amasil NA; BASF, Florham, NJ); 4) control diet with 0.18% glycerol monolaurate (GML; Natural Biologics GML, Natural Biologics, Newfield, NY); and 5) control diet with a 1.0% blend of formic acid and glycerol monolaurate (FORMI; FORMI 3G, ADDCON GmbH, Bitterfeld-Wolfen, Germany). Pigs were fed treatment diets from d 0 to d 28 and were then fed a common diet from d 28 to d 42. …”
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