Publicaciones

Reiniciar
DetailsTítuloDOIAutoresFechaTipoMedio
Airborne DNA: State of the art – Established methods and missing pieces in the molecular genetic detection of airborne microorganisms, viruses and plant particleshttps://doi.org/10.1016/j.scitotenv.2024.177439Pogner C.E., Antunes C., Apangu G.P., Bruffaerts N., Celenk S., Cristofori A., González Roldán N., Grinn-Gofroń A., Lara B., Lika M., Magyar D., Martinez-Bracero M., Muggia L., Muyshondt B., O'Connor D., Pallavicini A., Marchã Penha M.A., Pérez-Badia R., Ribeiro H., Rodrigues Costa A., Tischner Z., Xhetani M., Ambelas Skjøth C.Dic 2024ReviewScience of the Total Environment
Agroclimatic characterization of the crop of Agave tequilana Weber in the ravine of the Santiago Riverhttps://doi.org/10.29312/remexca.v14i3.3085Tena-Meza M.P., Navarro-Cerrillo R.M., Villavicencio-García R., Contreras-Rodriguez S.H.Ene 2023ArticleRevista Mexicana De Ciencias Agricolas
Agricultural intensification indirectly reshapes bee–plant interaction networks through shifts in bee functional traitshttps://doi.org/10.1002/eap.70105Cano D., Martínez-Núñez C., Pérez A.J., Alcántara J.M., Moretti M., Salido T., Rey P.J.Sep 2025ArticleEcological Applications
Agricultural intensification erodes taxonomic and functional diversity in Mediterranean olive groves by filtering out rare specieshttps://doi.org/10.1111/1365-2664.13970Tarifa R., Martínez-Núñez C., Valera F., González-Varo J.P., Salido T., Rey P.J.Oct 2021ArticleJournal of Applied Ecology
Agricultural extensification enhances functional diversity but not phylogenetic diversity in Mediterranean olive groves: A case study with ant and bird communitieshttps://doi.org/10.1016/j.agee.2021.107708García-Navas V., Martínez-Núñez C., Tarifa R., Manzaneda A.J., Valera F., Salido T., Camacho F.M., Isla J., Rey P.J.Feb 2022ArticleAgriculture Ecosystems and Environment
A global view on the effect of water uptake on aerosol particle light scatteringhttps://doi.org/10.1038/s41597-019-0158-7Burgos M.A., Andrews E., Titos G., Alados-Arboledas L., Baltensperger U., Day D., Jefferson A., Kalivitis N., Mihalopoulos N., Sherman J., Sun J., Weingartner E., Zieger P.Dic 2019Data PaperScientific Data
A global study of hygroscopicity-driven light-scattering enhancement in the context of other in situ aerosol optical propertieshttps://doi.org/10.5194/acp-21-13031-2021Titos G., Burgos M.A., Zieger P., Alados-Arboledas L., Baltensperger U., Jefferson A., Sherman J., Weingartner E., Henzing B., Luoma K., O'Dowd C., Wiedensohler A., Andrews E.Sep 2021ArticleAtmospheric Chemistry and Physics
A global model-measurement evaluation of particle light scattering coefficients at elevated relative humidityhttps://doi.org/10.5194/acp-20-10231-2020Burgos M.A., Andrews E., Titos G., Benedetti A., Bian H., Buchard V., Curci G., Kipling Z., Kirkeväg A., Kokkola H., Laakso A., Letertre-Danczak J., T. Lund M., Matsui H., Myhre G., Randles C., Schulz M., Van Noije T., Zhang K., Alados-Arboledas L., Baltensperger U., Jefferson A., Sherman J., Sun J., Weingartner E., Zieger P.Sep 2020ArticleAtmospheric Chemistry and Physics
A global analysis of climate-relevant aerosol properties retrieved from the network of Global Atmosphere Watch (GAW) near-surface observatorieshttps://doi.org/10.5194/amt-13-4353-2020Laj P., Bigi A., Rose C., Andrews E., Lund Myhre C., Collaud Coen M., Lin Y., Wiedensohler A., Schulz M., A. Ogren J., Fiebig M., Gliß J., Mortier A., Pandolfi M., Petäja T., Kim S.W., Aas W., Putaud J.P., Mayol-Bracero O., Keywood M., Labrador L., Aalto P., Ahlberg E., Alados Arboledas L., Alastuey A., Andrade M., Artinano B., Ausmeel S., Arsov T., Asmi E., Backman J., Baltensperger U., Bastian S., Bath O., Paul Beukes J., T. Brem B., Bukowiecki N., Conil S., Couret C., Day D., Dayantolis W., Degorska A., Eleftheriadis K., Fetfatzis P., Favez O., Flentje H., I. Gini M., Gregorič A., Gysel-Beer M., Gannet Hallar A., Hand J., Hoffer A., Hueglin C., K. Hooda R., Hyvärinen A., Kalapov I., Kalivitis N., Kasper-Giebl A., Eun Kim J., Kouvarakis G., Kranjc I., Krejci R., Kulmala M., Labuschagne C., Lee H.J., Lihavainen H., Lin N.H., Löschau G., Luoma K., Marinoni A., Martins Dos Santos S., Meinhardt F., Merkel M., Metzger J.M., Mihalopoulos N., Anh Nguyen N., Ondracek J., Pérez N., Rita Perrone M., Pichon J.M., Picard D., Pichon J.M., Pont V., Prats N., Prenni A., Reisen F., Romano S., Sellegri K., Sharma S., Schauer G., Sheridan P., Patrick Sherman J., Schütze M., Schwerin A., Sohmer R., Sorribas M., Steinbacher M., Sun J., Titos G., Toczko B.Ago 2020ArticleAtmospheric Measurement Techniques
Aggregative oviposition varies with density in processionary moths—Implications for insect outbreak propensityhttps://doi.org/10.1111/een.13205Battisti A., Hódar J.A., Hernández R., Larsson S.Feb 2023ArticleEcological Entomology