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Titlebook: Hydrological, Socioeconomic and Ecological Impacts of the North Atlantic Oscillation in the Mediterr; Sergio M. Vicente-Serrano,Ricardo M.

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书目名称Hydrological, Socioeconomic and Ecological Impacts of the North Atlantic Oscillation in the Mediterr
编辑Sergio M. Vicente-Serrano,Ricardo M. Trigo
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概述Unique book on impacts of the North Atlantic Oscillation in a target region like the Mediterranean.Complete overview of the impacts in different economic sectors and environmental systems.Provides som
丛书名称Advances in Global Change Research
图书封面Titlebook: Hydrological, Socioeconomic and Ecological Impacts of the North Atlantic Oscillation in the Mediterr;  Sergio M. Vicente-Serrano,Ricardo M.
描述.The Mediterranean basin represents one of the most important “hot spots” of climate change in the world, with recent trends towards a hotter and drier climate being related to changes in atmospheric circulation patterns. Such changes can have significant impacts in the climate of this region but also on the natural environment and several socioeconomic activities. Among these patterns, the North Atlantic Oscillation (NAO) is one of the main forcing factors in the region with impact on extreme events such as droughts, severe precipitations or heat and cold waves, the availability of water resources, the ecological dynamics, the quality and quantity of crops, the migration and welfare of animal populations, the fisheries dynamics, the triggering of landslides and the air pollution and human health, among others. . The aim of .Hydrological, Socioeconomic and Ecological Impacts of the North Atlantic Oscillation in the Mediterranean Region,. is to serve as an updated reference text  that covers the wide range of evidences on the NAO impacts in the Mediterranean regions and from a multidisciplinary perspective. . This volume constitutes a unique document to present the state of the art
出版日期Book 2011
关键词Atmospheric circulation; Climate change; Climate impacts; Mediterranean; North Atlantic Oscillation; clim
版次1
doihttps://doi.org/10.1007/978-94-007-1372-7
isbn_softcover978-94-007-3648-1
isbn_ebook978-94-007-1372-7Series ISSN 1574-0919 Series E-ISSN 2215-1621
issn_series 1574-0919
copyrightSpringer Science+Business Media B.V. 2011
The information of publication is updating

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Sergio M. Vicente-Serrano,Ricardo M. Trigoive review of technologies used to detect MRD in solid cance.This book focuses on the biological mechanisms of minimal residual disease (MRD) and recurrence. It integrates this biology in solid cancers and in hematological malignancies. It reports also on technological advancements for monitoring MR
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Sergio M. Vicente-Serrano,Juan I. López-Moreno,Jorge Lorenzo-Lacruz,Ahmed El Kenawy,Cesar Azorin-Moler. In the resting state, the membrane potential of the nerve fiber is about ¡ 60 mV (negative inside with respect to the extracellular solution). When the action potential is initiated, the membrane potential becomes less negative and even reverses sign (overshoot) within a millisecond and then goe
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Ercan Kahyaannel are part of the same nanomolecular protein complex. This chapter will describe the properties and functions of the nicotinic acetylcholine LGIC superfamily, which play a critical role in the fast chemical transmission of electrical signals between nerve cells at synapses and between nerve and
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Juan I. López-Moreno,Sergio M. Vicente-Serrano,Enrique Morán-Tejeda,Jorge Lorenzo-Lacruz,Javier Zabambranes and the insertion and folding of membrane proteins. Quantitative structural models are especially important at the present time for validation of Monte Carlo and molecular dynamics simulations of lipid bilayers (Pastor, 1994). Diffraction studies of phospholipid crystals at low hydrations ca
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Francesc Maynoue focus here on the prediction of the structure of the light-harvesting complex II (LH-II) of ., an integral membrane protein of 16 polypeptides aggregating and binding to 24 bacteriochlorophyll a’s and 12 lycopenes. Hydropathy analysis was performed to identify the putative transmembrane segments,
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Simone Orlandini,Anna Dalla Marta,Marco Mancini,Daniele Grifonicell fusion, exocytosis, endocytosis, and ion permeation are a few examples of processes involving membranes. In recent years, powerful tools such as X-ray crystal­ lography, electron microscopy, nuclear magnetic resonance, and infra-red and Raman spectroscopy have been developed to characterize the
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