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Data from: Observational study of hemostatic dysfunction and bleeding in neonates with hypoxic-ischemic encephalopathy
负责人:
关键词:
Bleeding disorders and coagulopathies;hypothermia;transfusion;hemostasis;hemorrhage
DOI:
doi:10.5061/dryad.gn5c8
摘要:
burden. Further studies are needed to determine the appropriate transfusion approaches in this population to prevent bleeding.
Data from: ENSO and frost co-determine decade-long temporal variation in flower and seed production in a subtropical rain forest
负责人:
关键词:
Hoya carnosa;Melastoma candidum;Pileostegia viburnoide;Aeschynanthus acuminatus;Cinnamomum micranthum;Clematis crassifolia;Smilax spp.;Castanopsis spp.;Limlia uraiana;extreme weather events;Mussaenda pubescens;Helicia formosana;Lasianthus spp.;frost;Pothos chinensis;Pachycentria formosana;Prunus phaeosticta;Tricalysia dubia;Elaeocarpus japonicus;reproductive ecology;Elatostema lineolatum var. majus;Dischidia formosana Elaeocarpus japonicus;Cyclobalanopsis gilva;Glochidion acuminatum;Myrsine seguinii;Diospyros morrisiana;Miscanthus floridulus;Schefflera octophylla;Meliosma squamulata;Blastus cochinchinensis;Pyrenaria shinkoensis;Lagerstroemia subcostata;phylogenetic signal;Machilus zuihoensis;Engelhardtia roxburghiana;Cryptocarya chinensis;Pericampylus formosanus;Machilus thunbergii;Eurya loquaiana;Dischidia formosana;Vaccinium emarginatum;Fushan Forest Dynamics Plot;Symplocos glauca;Rubus pyrifolius;Ardisia quinquegona;Psychotria serpens;El Ni?o Southern Oscillation;Maesa japonica;phenology;Litsea acuminata;Ampelopsis cantoniensis;Maesa perlaria var. formosana;Cyclobalanopsis longinux;Randia cochinchinensis;Michelia compressa;Cleyera japonica;Symplocos theophrastifolia
DOI:
doi:10.5061/dryad.75v7c
摘要:
that together the natural climatic oscillation (ENSO) and the extreme weather event (frost) determined the temporal variation in flower
Gene Expression Changes in a Tumor Xenograft by a Py-Im Polyamide
负责人:
BGI
关键词:
Transcriptome or Gene expression Multispecies
DOI:
doi:10.26036/cnphis0001056
摘要:
to 1-2.5 %. The floor of the imager was heated to +37 oC to avoid hypothermia. Breathing frequency was monitored and not allowed to drop below 1 s-1, adjusting
Data from: Warm bodies, cool wings: regional heterothermy in flying bats
负责人:
关键词:
muscle temperature;flight performance;Bat flight;Muscle;bat wings
DOI:
doi:10.5061/dryad.6h661t9
摘要:
Many endothermic animals experience variable limb temperatures, even as they tightly regulate core temperature. The limbs are often cooler tha
Data from: UV-B radiation interacts with temperature to determine animal performance
负责人:
关键词:
acclimation reactive oxygen species metabolism developmental plasticity locomotion antioxidants.
DOI:
doi:10.5061/dryad.74ps0
摘要:
). Developmental plasticity and acclimation may interact to determine phenotypes in variable environments. Here, we tested the hypothesis that increased
Data from: Mediterranean and temperate treelines are controlled by different environmental drivers
负责人:
关键词:
Carbon limitation;Plant\u2013climate interactions;timberline;Pinus uncinata;drought;Pinus sylvestris;Holocene;carbon balance;Kageneckia angustifolia;Nothofagus pumilio
DOI:
doi:10.5061/dryad.ks97h
摘要:
in Mediterranean regions are not determined by only low temperature. We tested the GLH by examining the mean annual basal area and NSC concentrations in developing (ne
Data from: Soil fungal communities of grasslands are environmentally structured at a regional scale in the Alps
负责人:
关键词:
Trifolium medium;Microglossum;Anthoxanthum odoratum;Clavulina;Anthriscus sylvestris;Helianthemum nummularium;Arabis alpina;Juncus effusus;Vaccinium gaultherioides;Scabiosa lucida;Saxifraga paniculata;Cadophora;Ligusticum mutellina;Phyteuma spicatum;Achillea millefolium;Hypericum maculatum;Ranunculus aconitifolius;Lecythophora;Galium megalospermum;Geranium sylvaticum;Poa supina;Glechoma hederacea;Environmental DNA;Leontodon helveticus;Bromus hordeaceus;Carex atrata;Rumex acetosa;Helictotrichon versicolor;Polygala chamaebuxus;Calamagrostis varia;Luzula multiflora;Ajuga reptans;Trisetum flavescens;Alchemilla vulgaris;Tetracladium;Environmental Metagenomics;Rhinanthus alectorolophus;Russula;Arrhenatherum elatius;Poa minor;Prunella vulgaris;Gentiana verna;Festuca rubra;Trifolium badium;Pedicularis foliosa;Filipendula ulmaria;Cirsium acaule;Daucus carota;Coprinus;Trifolium pratense;Salix herbacea;Ononis repens;Knautia arvensis;Mortierella;Athamanta cretensis;Campanula cochleariifolia;Homogyne alpina;Taraxacum officinale;Rumex crispus;elevation gradient;Lolium perenne;Gibberella;Carex ferruginea;Tragopogon pratensis;Rhinanthus minor;Silene vulgaris;Campanula glomerata;Saxifraga aizoides;Molinia caerulea;Acaulospora;Embellisia;Rhododendron ferrugineum;Gentiana lutea;Cerastium latifolium;Androsace chamaejasme;Cerastium fontanum;Aster bellidiastrum;Herpotrichia;Gentiana acaulis;Trichosporon;Cudoniella;Saxifraga moschata;Lolium multiflorum;Polygonum viviparum;Crepis pyrenaica;Gentiana bavarica;Medicago lupulina;Tofieldia calyculata;Festuca pratensis;Festuca quadriflora;Fungi;Ranunculus alpestris;Phialocephala;Caltha palustris;Cryptococcus;Campanula rotundifolia;Valeriana montana;Cerastium arvense;Hippocrepis comosa;Thlaspi rotundifolium;Leucanthemum vulgare;Metarhizium;Chaerophyllum hirsutum;Species Interactions;Ranunculus acris;Leontodon autumnalis;Poa alpina;Carex pallescens;Hedysarum hedysaroides;Plantago media;Veronica officinalis;Vicia sepium;Anemone narcissiflora;mitosporic Trichocomaceae;Geum rivale;Gentiana campestris;Carex sempervirens;Myosotis arvensis;Cosmospora;Soldanella alpina;Carex flacca;Phleum pratense;Lathyrus pratensis;Rhodotorula;Glomus;Crepis vesicaria;Campanula scheuchzeri;Articulospora;Thymus praecox;environmental gradients;Monodictys;Gypsophila repens;Solidago virgaurea;Thesium alpinum;Pimpinella saxifraga;Pulsatilla alpina;Carduus defloratus;Centaurea montana;Community Ecology;Prunella grandiflora;Holcus lanatus;Primula farinosa;Veratrum album;Leohumicola;Trollius europaeus;Carex sylvatica;Luzula campestris;Primula veris;Cladophialophora;Viola biflora;Deschampsia cespitosa;Vaccinium myrtillus;Pimpinella major;Centaurea jacea;Silene acaulis;Veronica persica;Camarophyllopsis;Polygonum bistorta;Arnica montana;Bromus erectus;Kernia;Alchemilla conjuncta;Centaurea scabiosa;Lachnum;Diversispora;Poa cenisia;Brachypodium pinnatum;Olpidium;Astrantia major;Hypochaeris radicata;Lotus corniculatus;Trifolium montanum;Lysimachia nummularia;Sanguisorba minor;Senecio doronicum;Preussia;Acinos alpinus;Achillea atrata;Onobrychis montana;Aposeris foetida;Cruciata laevipes;Adenostyles glabra;Knautia dipsacifolia;Potentilla erecta;Euphorbia cyparissias;Landscape Genetics;Fragaria vesca;Pritzelago alpina;Stachys officinalis;Bellis perennis;Festuca violacea;Phleum rhaeticum;Dryas octopetala;Primula elatior;Salvia pratensis;Saxifraga oppositifolia;mitosporic Herpotrichiellaceae;Podospora;Linum catharticum;Agrostis schraderiana;Exophiala;Origanum vulgare;Trifolium repens;Ganoderma;Campanula barbata;Cirsium oleraceum;Plantago major;Poa trivialis;Veronica chamaedrys;Carlina acaulis;Anthyllis vulneraria;Poa pratensis;Vicia cracca;Agrostis capillaris;Holocene\/Anthropocene;Dactylis glomerata;Ranunculus montanus;Geomyces;Tussilago farfara;Entoloma;Phyteuma orbiculare;Carex nigra;Geum montanum;Globularia nudicaulis;Doronicum grandiflorum;Myosotis alpestris;Alatospora;Phleum hirsutum;Taraxacum alpinum;Vicia sativa;Agrostis rupestris;Hieracium villosum;Ranunculus repens;Laccaria;Hieracium lactucella;Cylindrocarpon;Luzula sylvatica;Cirsium spinosissimum;Polygala vulgaris;Salix retusa;plant-fungi interactions;Inocybe;Gentiana purpurea;Agrostis alpina;Plantago alpina;Alchemilla xanthochlora;Sesleria caerulea;Hypocrea;Parnassia palustris;Globularia cordifolia;Trifolium thalii;Alchemilla glabra;Plantago atrata;Briza media;Rumex alpinus;Clinopodium vulgare;Carex panicea;Hieracium pilosella;Cynosurus cristatus;Plantago lanceolata;Petasites paradoxus;Veronica alpina;Bartsia alpina;Soil fungal community;Potentilla crantzii;Chaerophyllum aureum;Claroideoglomus;Nardus stricta;Tremella;Galium album;Leontodon hispidus;Paecilomyces;Microdochium;Oxytropis jacquinii;phylogenetic diversity;Salix reticulata;Neonectria;Heracleum sphondylium;Pseudeurotium;Pseudonectria;Mrakia;Galium pumilum;Linaria alpina;Agrostis stolonifera;Carum carvi;Galium anisophyllon;Potentilla aurea;Veronica aphylla;Adenostyles alliariae;Vaccinium vitisidaea;Crepis aurea;Hygrocybe;Hieracium bifidum;alpine grassland;Panaeolus;454 pyrosequencing;Laserpitium latifolium
DOI:
doi:10.5061/dryad.88fm3
摘要:
n at a regional scale, and follow environmental determinism, mediated by interactions with other taxonomic groups, such as plants.
Data from: Modeling and mapping the probability of occurrence of invasive wild pigs across the contiguous United States
负责人:
关键词:
feral hog feral swine invasive species habitat heterogeneity physiological constraints species distribution model logistic discrimination function multi-model inference
DOI:
doi:10.5061/dryad.vt46n
摘要:
stand the physiological and ecological factors that may determine their invasive potential and to guide future study and eradication efforts. Using national-scale wild pig occurrence
Data from: Going to extremes for sodium acquisition: use of community land and high-altitude areas by mountain gorillas Gorilla beringei in Rwanda
负责人:
Grueter, Cyril C.
关键词:
crop raiding habitat use mountain gorilla sodium.
DOI:
doi:10.5061/dryad.3695391
摘要:
high-altitude areas may increase the risk of hypothermia.

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