Search results for "LPI"
showing 10 items of 535 documents
CCDC 2011813: Experimental Crystal Structure Determination
2021
Related Article: Yolanda Navarro, Guilherme P. Guedes, Miguel A. del Águila-Sánchez, María José Iglesias, Francisco Lloret, Fernando López-Ortiz|2021|Dalton Trans.|50|2585|doi:10.1039/D0DT04298F
CCDC 1431264: Experimental Crystal Structure Determination
2015
Related Article: Zoe Livingstone, Alberto Hernán-Gómez, Sharon E. Baillie, David R. Armstrong, Luca M. Carrella, William Clegg, Ross W. Harrington, Alan R. Kennedy, Eva Rentschler, Eva Hevia|2016|Dalton Trans.|45|6175|doi:10.1039/C5DT04044B
CCDC 1978264: Experimental Crystal Structure Determination
2020
Related Article: Yolanda Navarro, Guilherme P. Guedes, Joan Cano, Pilar Ocón, María José Iglesias, Francisco Lloret, Fernando López-Ortiz|2020|Dalton Trans.|49|6280|doi:10.1039/D0DT00541J
CCDC 1823715: Experimental Crystal Structure Determination
2018
Related Article: Nathalie Cosquer, Emeric Lefebvre, Bénédicte Douziech, Sylvie Houille, François Michaud, Carlos J. Gómez-García, Françoise Conan|2018|Inorg.Chim.Acta|479|1|doi:10.1016/j.ica.2018.04.026
CCDC 1978260: Experimental Crystal Structure Determination
2020
Related Article: Yolanda Navarro, Guilherme P. Guedes, Joan Cano, Pilar Ocón, María José Iglesias, Francisco Lloret, Fernando López-Ortiz|2020|Dalton Trans.|49|6280|doi:10.1039/D0DT00541J
CCDC 1825467: Experimental Crystal Structure Determination
2018
Related Article: Quentin Bonnin, Sook-Yen Wong, Cedric Balan, Virginie Comte, Raluca Malacea, Marie-Jose Penouilh, Philippe Richard, Gerald Kehr, Adrien T. Normand, Gerhard Erker, Pierre Le Gendre|2018|Eur.J.Inorg.Chem.|2018|3813|doi:10.1002/ejic.201800636
CCDC 990231: Experimental Crystal Structure Determination
2014
Related Article: Maria J. Feio, Isabel Sousa, Mariana Ferreira, Luís Cunha-Silva, Raúl G. Saraiva, Carla Queirós, José G. Alexandre, Vasco Claroa, AdéliaMendes, RosaOrtiz, Sandra Lopes, Ana Luísa Amaral, João Lino, Patrícia Fernandes, Ana João Silva, Lisete Moutinho, Baltazar de Castro, Eulália Pereira, Lourdes Perelló, Paula Gameiro|2014|J.Inorg.Biochem.|138|129|doi:10.1016/j.jinorgbio.2014.05.007
CCDC 1900203: Experimental Crystal Structure Determination
2019
Related Article: Yathreb Oueslati, Sevgi Kansız, Arto Valkonen, Thameur Sahbani, Necmi Dege, Wajda Smirani|2019|J.Mol.Struct.|1196|499|doi:10.1016/j.molstruc.2019.06.110
Plant trait‐environment relationships in tundra are consistent across spatial scales
2023
Patterns and processes shaping ecosystems vary across spatiotemporal scales. As plant functional traits reflect ecosystem properties, investigating their relationships with environment provides an important tool to understand and predict ecosystem structure and functioning. This is particularly important in the tundra where a changing climate may trigger severe alterations in plant communities as both summer and winter conditions are changing. Here, we investigate the relationships between key environmental drivers including summer temperature, snow persistence, topographic position and soil pH, and species height, specific leaf area (SLA) and seed mass as plant traits. The study is carried…
How Does the Benzamide Antipsychotic Amisulpride get into the Brain?—An In Vitro Approach Comparing Amisulpride with Clozapine
2003
This study evaluated the disposition of the two atypical antipsychotics, amisulpride (AMS) and clozapine (CLZ), and its main metabolite N-desmethylclozapine (DCLZ), to their target structures in the central nervous system by applying an in vitro blood-brain barrier and blood-cerebrospinal fluid (CSF) barrier based on monolayers of porcine brain microvessel endothelial cells (PMEC) or porcine choroid plexus epithelial cells (PCEC). Permeation studies through PMEC- and PCEC-monolayers were conducted for 60 min at drug concentrations of 1, 5, 10, and 30 muM applied to the donor compartment. PMEC were almost impermeable for AMS (permeation coefficient, P1 x 10(-7) cm/s) in the resorptive direct…