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241.
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养殖大黄鱼在自然海区降温不同阶段抗氧化水平及血清酶活性的变化 总被引:2,自引:0,他引:2
为了解越冬期间水温下降对大黄鱼抗氧化水平和血清酶活性的影响, 作者研究了养殖大黄鱼(Pseudosciaena crocea)冬季海区自然降温不同阶段(20、16、12、10、8℃)肝脏和肌肉中抗氧化水平及血清酶活性的变化。结果显示: 自然降温过程中, 肝脏中3 种抗氧化酶变化趋势不同, 其中SOD 活性呈升高趋势, 8℃时SOD活性最强; POD 活性呈先升高后降低的变化趋势, 16℃时活性最高; CAT 活性呈下降趋势; 而肌肉中这3 种抗氧化酶活性均呈下降趋势。肝脏中GSH 和MDA 含量在16℃时最高; 肌肉中的3 种抗氧化酶活性、GSH 和MDA 含量以及总抗氧化能力(T-AOC)均明显低于肝脏中, 反映了肝脏对清除自由基具有重要作用, 在抗氧化调节方面起到主要作用。血清酶ALT、AST、ALP、LDH 及CK-MB 随水温自然下降酶活性均呈现降低趋势, 即20℃时酶活性最强; CK 和LIP 随着水温降低, 呈先上升再下降的趋势; ADA 和GGT 随水温降低活性呈上升趋势。血清酶的不同变化, 说明水温对大黄鱼血清酶活性有一定的影响。 相似文献
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介于区域性和单体滑坡之间,即对面积几十到上百平方千米的滑坡评价,适用于1∶5000~1∶25000之间的大比例尺,而如何对这类区域进行有效的滑坡风险评价是一个值得研究的问题。使用传统的基于GIS的单元栅格运算方法对这类区域进行滑坡风险评价,由于反映评价指标的基础数据精度与评价方法之间的不匹配,无论单元网格划分得如何精细,评价结果仍难达到精度要求。采用一种新的思路和方法,先期通过高精度数字高程模型(DEM)和Quick Bird遥感数据等多信息源,识别潜在的滑坡易发坡体,并初步圈画滑坡的危险区界线和进行承灾体信息解译,再逐一通过野外核查对以上信息加以验证、修正或取消,最后形成符合比例尺精度要求的风险评价图。实践证明,这是一种行之有效的进行大比例尺风险区划和评价的方法。 相似文献
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晚三叠世卡尼期湿润幕(Carnian Pluvial Episode, CPE)是近年来最受瞩目的地质事件之一。此次事件以卡尼中期全球不同纬度环境湿度显著上升为主要标志。CPE的发生不仅对全球各地沉积格局产生重大改变,也对三叠纪生物演化产生了深远影响。海洋生物群在跨越CPE期间发生了不同程度的灭绝与演替,大部分海洋无脊椎动物和部分脊椎动物的多样性在CPE之后出现明显的降低,著名的关岭生物群也受到了CPE的明显影响,并开始显现出危机。CPE之后,恐龙类群开始逐步占据陆地生态的主导地位,早中生代和现代生物的先祖开始在这一时期纷纷出现。CPE的发生揭开了现生生物演化史新的一页,并最终开创了早中生代和现生生物黎明。有关CPE的触发机制主要包括以下2个方面:① 晚三叠世巨型季风环流在卡尼期达到鼎盛并区域上影响了大气降水量;② 板块活动造成大规模火山喷发引发全球气候扰动。由于上述2种解释还未能与我国其他地质记录较好匹配,因而CPE在特提斯东缘的发生次序和发展过程并不清晰。这其中,对CPE触发机制的探讨,需要将全球板块变化与古气候模拟纳入其研究范畴。不同于晚二叠世生物大灭绝后生物类群缓慢重启和生态逐步复苏,CPE期间的生物演化与革新在短时间内促成了现代生物类群的形成。在我国,上三叠统卡尼阶分布广泛、发育齐全,且保存有各门类丰富的动植物化石,是开展卡尼期气候- 环境变化与生态效应研究的重要场所。然而目前国内有关CPE研究还十分有限,一些基础的地质工作仍然有待开展。位于特提斯东缘的我国地质记录有助于深刻理解CPE过程和环境- 生物协同演化关系,尤其在现代生物多样性起源和当代生态系统结构成型的研究过程中需要提供更多中国的对比方案。 相似文献
245.
Variations of the Kuroshio Axis South of Kyushu in Relation to the Large Meander of the Kuroshio 总被引:1,自引:0,他引:1
The characteristics of the Kuroshio axis south of Kyushu, which meanders almost sinusoidally, are clarified in relation to
the large meander of the Kuroshio by analyzing water temperature data during 1961–95 and sea level during 1984–95. The shape
of the Kuroshio axis south of Kyushu is classified into three categories of small, medium, and large amplitude of meander.
The small amplitude category occupies more than a half of the large-meander (LM) period, while the medium amplitude category
takes up more than a half of the non-large-meander (NLM) period. Therefore, the amplitude and, in turn, the curvature of the
Kuroshio axis is smaller on average during the LM period than the NLM period. The mean Kuroshio axis during the LM period
is located farther north at every longitude south of Kyushu than during the NLM period, with a slight difference west of the
Tokara Islands and a large difference to the east. A northward shift of the Kuroshio axis in particular east of the Tokara
Islands induces small amplitude and curvature of the meandering shape during the LM period. During the NLM period, the meandering
shape and position south of Kyushu change little with Kuroshio volume transport. In the LM formation stage, the variation
of the Kuroshio axis is small west of the Tokara Islands but large to the east due to a small meander of the Kuroshio. In
the LM decay stage, the Kuroshio meanders greatly south of Kyushu and is located stably near the coast southeast of Kyushu.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
246.
大比例尺地理信息数据由于详尽的数据内容和精准的位置信息,在城市经济社会发展中发挥着重要作用。然而由于传统的服务方式的限制,数据的使用效率并不高。地理空间框架数据结合GIS技术和网络技术,将大比例尺地理信息数据使用方式从线下转到线上,提高了数据使用效率。而本文提出的主动式地理信息服务模式是一种全新的地理信息服务模式,将大比例尺地理信息服务数据与用户业务数据深度融合,最大限度地满足用户的业务需求,将是地理信息服务模式未来的发展方向。 相似文献
247.
Bo Yang Alan S. Collins Grant M. Cox Amber J. M. Jarrett Steven Denyszyn Morgan L. Blades Juraj Farkaš Stijn Glorie 《Basin Research》2020,32(6):1734-1750
The Beetaloo Sub-basin, northern Australia, is considered the main depocentre of the 1,000-km scale Mesoproterozoic Wilton package of the greater McArthur Basin – the host to one of the oldest hydrocarbon global resources. The ca. 1.40–1.31 Ga upper Roper Group and the latest Mesoproterozoic to early Neoproterozoic unnamed group of the Beetaloo Sub-basin, together, record ca. 500 million years of depositional history within the North Australia Craton. Whole-rock shale Sm–Nd and Pb isotope data from these sediments reveal sedimentary provenance and their evolution from ca. 1.35 to 0.85 Ga. Furthermore, these data, together with shale major/trace elements data from this study and pyrolysis data from previous publications, are used to develop a dynamic tectonic geography model that links the organic carbon production and burial to an enhanced weathering of nutrients from a large igneous province. The ca. 1.35–1.31 Ga Kyalla Formation of the upper Roper Group is composed of isotopically evolved sedimentary detritus that passes up, into more isotopically juvenile Pb values towards the top of the formation. The increase in juvenile compositions coincides with elevated total organic carbon (TOC) contents of these sediments. The coherently enriched juvenile compositions and TOC the upper portions of the Kyalla Formation are interpreted to reflect an increase in nutrient supply associated with the weathering of basaltic sources (e.g. phosphorous). Possible, relatively juvenile, basaltic sources include the Wankanki Supersuite in the western Musgraves and the Derim Derim–Galiwinku large igneous province (LIP). The transition into juvenile, basaltic sources directly before a supersequence-bounding unconformity is here interpreted to reflect uplift and erosion of the Derim Derim–Galiwinku LIP, rather than an influx of southern Musgrave sources. A new baddeleyite crystallisation age of 1,312.9 ± 0.7 Ma provides both a tight constraint on the age of this LIP, along with its associated magmatic uplift, as well as providing a minimum age constraint for Roper Group deposition. The unconformably overlying lower and upper Jamison sandstones are at least 300 million years younger than the Kyalla Formation and were sourced from the Musgrave Province. An up-section increase in isotopically juvenile compositions seen in these rocks is interpreted to document the progressive exhumation of the western Musgrave Province. The overlying Hayfield mudstone received detritus from both the Musgrave and Arunta regions, and its isotopic geochemistry reveals affinities with other early Neoproterozoic basins (e.g. Amadeus, Victoria and Officer basins), indicating the potential for inter-basin correlations. 相似文献
248.
This paper investigates the dynamic behavior and the seismic effectiveness of a non‐conventional Tuned Mass Damper (TMD) with large mass ratio. Compared with conventional TMD, the device mass is increased up to be comparable with the mass of the structure to be protected, aiming at a better control performance. In order to avoid the introduction of an excessive additional weight, masses already present on the structure are converted into tuned masses, retaining structural or architectural functions beyond the mere control function. A reduced order model is introduced for design purposes and the optimal design of a large mass ratio TMD for seismic applications is then formulated. The design method is specifically developed to implement High‐Damping Rubber Bearings (HDRB) to connect the device mass to the main structure, taking advantage of combining stiffness and noticeable damping characteristics. Ground acceleration is modeled as a Gaussian random process with white noise power spectral density. A numerical searching technique is used to obtain the optimal design parameter, the frequency ratio alpha, which minimizes the root‐mean‐square displacement response of the main structure. The study finally comprises shaking table tests on a 1:5 scale model under a wide selection of accelerograms, both artificial and natural, to assess the seismic effectiveness of the proposed large mass ratio TMD. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献
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