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排序方式: 共有225条查询结果,搜索用时 15 毫秒
221.
McIntosh MP Narita H Kameyama Y Rajewski RA Goto H 《Veterinary anaesthesia and analgesia》2007,34(3):149-156
OBJECTIVE: To evaluate and compare the effects of the aqueous sulfobutyl ether beta-cyclodextrin (SBE-CD) etomidate formulation and the commercial etomidate formulation on mean arterial pressure (MAP), heart rate, and sympathetic outflow using neuraxis-intact and baro-denervated rabbits. STUDY DESIGN: Prospective experimental study. ANIMALS: Twenty-seven male New Zealand white rabbits. METHODS: Under basal anesthesia (urethane) and ventilation with intermittent positive pressure (IPPV), the New Zealand white rabbits underwent surgical preparation including isolation of the left renal sympathetic nerve and, in the baro-denervated models, additional combined denervation of bilateral carotid sinus, aortic, and vagal nerves. After hemodynamic stabilization, both neuraxis-intact and baro-denervated animals received bolus intravenous (IV) injection (0.6 mg kg(-1)) of either the SBE-CD or commercial etomidate formulation over 5 seconds (n = 6 animals per group). RESULTS: Mean arterial pressure decreased significantly in all four groups to the same extent. However, the rate of MAP decrease was lower in the SBE-CD-treated groups relative to the commercial formulation. Renal sympathetic nerve activity was decreased significantly less in the SBE-CD group in the baro-denervated studies. Independent pharmacokinetic evaluation demonstrated that the two formulations had comparable plasma concentration-time profiles. CONCLUSIONS AND CLINICAL RELEVANCE: Etomidate in the commercial drug product is solubilized with propylene glycol, a cosolvent associated with adverse side effects on injection. An aqueous formulation of etomidate has been developed, which utilizes SBE-CD as a solubilizing agent. The data suggest that the SBE-CD etomidate formulation may be a safer IV induction formulation than the commercial etomidate drug product. 相似文献
222.
- Local population characteristics and habitat connectivity both have important influences on metapopulation persistence; however, the relative importance of each can vary depending on the ecological context, making it difficult to apply general ‘rules-of-thumb’ for conservation actions. This is particularly true in dendritic networks, where habitat connections are constrained.
- By constructing a metapopulation model that specifically accounts for the unique characteristics and ecological system of a target species, the relative influence of local population characteristics and habitat connectivity on metapopulation persistence can be assessed more accurately.
- This modelling approach was used to improve conservation outcomes for the Canterbury mudfish (kо̄waro Neochanna burrowsius), a critically endangered and poorly understood species that is endemic to the Canterbury Plains of Aotearoa/New Zealand. A spatially structured metapopulation model of N. burrowsius was used to investigate the relationship between habitat patch connectivity, rate of population growth as limited by habitat quality (rconditional), and metapopulation persistence.
- N. burrowsius metapopulation persistence increased most strongly under increases in rconditional, but increases in habitat connectivity also had positive effects (94% metapopulation persistence for highly connected networks vs. 39% metapopulation persistence for poorly connected networks where rconditional = 1.3).
- Although rates of population growth were more influential than increases in habitat connectivity in this case study, both will be important to consider for effectively allocating conservation resources for metapopulations in dendritic networks, depending on what managers could effectively manipulate to enhance metapopulation persistence.
223.
Changes in soil microbial biomass, metabolic quotient, and organic matter turnover under Hieracium (H. pilosella L.) 总被引:9,自引:0,他引:9
In New Zealand Hieracium is an opportunistic plant that invades high country sites more or less depleted of indigenous vegetation. To understand the
invasive nature of this weed we assessed the changes in soil C, N and P, soil microbial biomass C, N and P contents, microbial
C : N and C : P ratios, the metabolic quotient, and turnover of organic matter in soils beneath Hieracium and its adjacent herbfield resulting from the depletion of tussock vegetation. The amounts of soil organic C and total N
were higher under Hieracium by 25 and 11%, respectively, compared to soil under herbfield. This change reflects an improvement in both the quantity and
quality of organic matter input to mineral soil under Hieracium, with higher percentage organic C and a lower C : N ratio. The microbial biomass C, N and P contents were also higher under
Hieracium. The amount of C respired during the 34-week incubation indicated differences in the nature of soil organic matter under
Hieracium, the unvegetated "halo" zone surrounding Hieracium patches, and herbfield (depleted tussock grassland). Decomposition of organic matter in these zones showed that the Hieracium soil had the greatest rate of CO2 respired, and the halo soil had the lowest. We relate the enhanced organic C turnover to the invasive nature of Hieracium. Net N mineralization was significantly lower from the Hieracium soil (57 mg N g–1 soil N) than from herbfield and halo soils (74 and 71 mg N g–1 soil N, respectively), confirming that the nature of organic N in Hieracium soil is different from adjoining halo and herbfield soils. It seems plausible that specific compounds such as polyphenols
and lignins released by Hieracium are not only responsible for increased organic N, but also control the form and amount of N released during organic matter
transformations. We conclude that the key to the success of Hieracium in the N-deficient South Island high country of New Zealand lies in its ability to control and sequester N supply through
modifying the soil organic matter cycle.
Received: 1 December 1998 相似文献
224.
Dolors Villegas Radhika Bartaula Carlos Cantero-Martínez Douglas Luster Les Szabo Pablo Olivera Anna Berlin Julian Rodriguez-Algaba Mogens S. Hovmøller Robert McIntosh Yue Jin 《Plant pathology》2022,71(5):1174-1184
Stem rust, caused by Puccinia graminis, is a destructive group of diseases. The pathogen uses Berberis species as alternate hosts to complete its life cycle. B. vulgaris and the endemic species B. hispanica and B. garciae are present in Spain. The objective of this study was to investigate the functionality of the indigenous barberry as alternate hosts. Field surveys were conducted in 2018 and 2019 in Huesca, Teruel and Albacete provinces of Spain. Aecial samples on barberry were analysed via infection assays and DNA analysis. B. garciae was predominant in Huesca and Teruel provinces, often found in the field margins of cereal crops. Aecial infections on B. garciae were observed in May and uredinial infections on cereal crops in June. Scattered B. hispanica bushes were occasionally found near cereal crops in Albacete, where aecial infections on B. hispanica were observed in June when most cereal crops were mature. Infection assays using aeciospores resulted in stem rust infections on susceptible genotypes of wheat, barley, rye and oat, indicating the presence of the sexual cycle for P. graminis f. sp. tritici, f. sp. secalis and f. sp. avenae. Sequence analyses from aecial samples supported this finding as well as the presence of Puccinia brachypodii. This study provides the first evidence that indigenous Berberis species play an active role in the sexual cycle of P. graminis under natural conditions in Spain. 相似文献
225.
Nicastro D Schwartz C Pierson J Gaudette R Porter ME McIntosh JR 《Science (New York, N.Y.)》2006,313(5789):944-948
Eukaryotic flagella and cilia are built on a 9 + 2 array of microtubules plus >250 accessory proteins, forming a biological machine called the axoneme. Here we describe the three-dimensional structure of rapidly frozen axonemes from Chlamydomonas and sea urchin sperm, using cryoelectron tomography and image processing to focus on the motor enzyme dynein. Our images suggest a model for the way dynein generates force to slide microtubules. They also reveal two dynein linkers that may provide "hard-wiring" to coordinate motor enzyme action, both circumferentially and along the axoneme. Periodic densities were also observed inside doublet microtubules; these may contribute to doublet stability. 相似文献