Mostrando 101 - 120 Resultados de 3,549 Para Buscar '"amphibian"', tiempo de consulta: 0.14s Limitar resultados
  1. 101
    “…Here we report that fertilization of amphibian Xenopus laevis eggs also initiates a zinc spark that progresses across the cell surface in coordination with dynamic calcium waves. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  2. 102
    “…Yet, specific processes shaping host-pathogen relationships within and among communities for amphibian pathogens such as ranaviruses (RV) remain poorly understood. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  3. 103
    “…SFTPs are known to be present in amniotes (mammals, reptiles and birds) and amphibians, whereas SEDCs have not yet been reported in amphibians. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  4. 104
    “…For this purpose, two relevant biological and aquatic models—amphibian larvae, Xenopus laevis, and dipters, Chironomus riparius—were used under normalized exposure conditions. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  5. 105
    “…This resource will represent a useful tool to evaluate the vulnerability of amphibians, and ectotherms more generally, to changing temperatures.…”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  6. 106
    “…Amphibians have undergone important evolutionary transitions in reproductive modes and life-cycles. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  7. 107
    “…Amphibians and non-avian reptiles represent a significant proportion of terrestrial vertebrates, however knowledge of their viruses is not proportional to their abundance. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  8. 108
    “…We demonstrate that, in amphibians, terrestrial egg deposition, laying eggs in hidden locations and direct development promote the evolution of female egg attendance. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  9. 109
  10. 110
    “…The amphibian metamorphosis assay (AMA; US Environmental Protection Agency [USEPA] test guideline 890.1100 and Organisation for Economic Co‐Operation and Development test guideline 231) has been used for more than a decade to assess the potential thyroid‐mediated endocrine activity of chemicals. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  11. 111
    por Lee, Julian C.
    Publicado 2000
    “…Amphibians and reptiles of the Maya world…”
    Libro
  12. 112
    “…In this study, 358 specimens of 10 amphibian host species collected from the rural Chengdu region of southwest China were selected as island models for evaluating SAR curve shapes and assessing the skin microbiota from different amphibian species. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  13. 113
    por Ford, Jessica, Green, David M.
    Publicado 2023
    “…The outcomes of species interactions can vary by life stage, year, and surrounding environmental conditions. Amphibian species are expected to compete most strongly during their tadpole stage when they exist in the highest densities. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  14. 114
    por Luedtke, Jennifer A., Chanson, Janice, Neam, Kelsey, Hobin, Louise, Maciel, Adriano O., Catenazzi, Alessandro, Borzée, Amaël, Hamidy, Amir, Aowphol, Anchalee, Jean, Anderson, Sosa-Bartuano, Ángel, Fong G., Ansel, de Silva, Anslem, Fouquet, Antoine, Angulo, Ariadne, Kidov, Artem A., Muñoz Saravia, Arturo, Diesmos, Arvin C., Tominaga, Atsushi, Shrestha, Biraj, Gratwicke, Brian, Tjaturadi, Burhan, Martínez Rivera, Carlos C., Vásquez Almazán, Carlos R., Señaris, Celsa, Chandramouli, S. R., Strüssmann, Christine, Cortez Fernández, Claudia Fabiola, Azat, Claudio, Hoskin, Conrad J., Hilton-Taylor, Craig, Whyte, Damion L., Gower, David J., Olson, Deanna H., Cisneros-Heredia, Diego F., Santana, Diego José, Nagombi, Elizah, Najafi-Majd, Elnaz, Quah, Evan S. H., Bolaños, Federico, Xie, Feng, Brusquetti, Francisco, Álvarez, Francisco S., Andreone, Franco, Glaw, Frank, Castañeda, Franklin Enrique, Kraus, Fred, Parra-Olea, Gabriela, Chaves, Gerardo, Medina-Rangel, Guido F., González-Durán, Gustavo, Ortega-Andrade, H. Mauricio, Machado, Iberê F., Das, Indraneil, Dias, Iuri Ribeiro, Urbina-Cardona, J. Nicolas, Crnobrnja-Isailović, Jelka, Yang, Jian-Huan, Jianping, Jiang, Wangyal, Jigme Tshelthrim, Rowley, Jodi J. L., Measey, John, Vasudevan, Karthikeyan, Chan, Kin Onn, Gururaja, Kotambylu Vasudeva, Ovaska, Kristiina, Warr, Lauren C., Canseco-Márquez, Luis, Toledo, Luís Felipe, Díaz, Luis M., Khan, M. Monirul H., Meegaskumbura, Madhava, Acevedo, Manuel E., Napoli, Marcelo Felgueiras, Ponce, Marcos A., Vaira, Marcos, Lampo, Margarita, Yánez-Muñoz, Mario H., Scherz, Mark D., Rödel, Mark-Oliver, Matsui, Masafumi, Fildor, Maxon, Kusrini, Mirza D., Ahmed, Mohammad Firoz, Rais, Muhammad, Kouamé, N’Goran G., García, Nieves, Gonwouo, Nono Legrand, Burrowes, Patricia A., Imbun, Paul Y., Wagner, Philipp, Kok, Philippe J. R., Joglar, Rafael L., Auguste, Renoir J., Brandão, Reuber Albuquerque, Ibáñez, Roberto, von May, Rudolf, Hedges, S. Blair, Biju, S. D., Ganesh, S. R., Wren, Sally, Das, Sandeep, Flechas, Sandra V., Ashpole, Sara L., Robleto-Hernández, Silvia J., Loader, Simon P., Incháustegui, Sixto J., Garg, Sonali, Phimmachak, Somphouthone, Richards, Stephen J., Slimani, Tahar, Osborne-Naikatini, Tamara, Abreu-Jardim, Tatianne P. F., Condez, Thais H., De Carvalho, Thiago R., Cutajar, Timothy P., Pierson, Todd W., Nguyen, Truong Q., Kaya, Uğur, Yuan, Zhiyong, Long, Barney, Langhammer, Penny, Stuart, Simon N.
    Publicado 2023
    “…We find that amphibians are the most threatened vertebrate class (40.7% of species are globally threatened). …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  15. 115
    “…The cause of limb deformities in wild amphibian populations remains unclear, even though the apparent increase in prevalence of this condition may have implications for human health. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Texto
  16. 116
  17. 117
    por Rouse, J D, Bishop, C A, Struger, J
    Publicado 1999
    “…The potential for nitrate to affect amphibian survival was evaluated by examining the areas in North America where concentrations of nitrate in water occur above amphibian toxicity thresholds. …”
    Enlace del recurso
    Enlace del recurso
    Texto
  18. 118
    por Karasaki, Shuichi
    Publicado 1963
    “…The yolk platelets of mature eggs and young embryonic cells of all amphibian species studied (Rana pipiens, Triturus pyrrhogaster, Diemictylus viridescens, Rana nigromaculata, and Bufo vulgaris) have a superficial layer of fine particles or fibrils (ca. 50 A in diameter), a central main body with a crystalline lattice structure, and an enclosing membrane approximately 70 A in thickness. …”
    Enlace del recurso
    Enlace del recurso
    Texto
  19. 119
  20. 120
    “…The relationship between blood protein (vitellogenin) incorporation and nuclear maturation was studied in individual amphibian oocytes after in vitro exposure to desoxycorticosterone acetate (DOCA). …”
    Enlace del recurso
    Enlace del recurso
    Texto
Herramientas de búsqueda: RSS