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浅色黄姑鱼鳃结构及其呼吸面积的研究 被引量:16
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作者 李加儿 许晓娟 +1 位作者 区又君 刘士瑞 《南方水产》 2008年第1期22-27,共6页
应用扫描电镜技术对体重范围在4.75~35.51g的浅色黄姑鱼(Nibea coibor)鳃结构及鳃小片进行了观察与呼吸面积计算,研究体重、体长与呼吸面积之间的相关关系。结果表明,浅色黄姑鱼的平均相对呼吸面积为4.01±1.62cm.2g-1。体重与一... 应用扫描电镜技术对体重范围在4.75~35.51g的浅色黄姑鱼(Nibea coibor)鳃结构及鳃小片进行了观察与呼吸面积计算,研究体重、体长与呼吸面积之间的相关关系。结果表明,浅色黄姑鱼的平均相对呼吸面积为4.01±1.62cm.2g-1。体重与一侧鳃丝总数的相关性N=28.81+158.45lnW(R2=0.9670,P<0.01)较体长与一侧鳃丝总数的相关性N=17.31L1.4542(R2=0.8241,P<0.01)更为显著。单位mm鳃小片的数目随着体重的不断增加显著减少,N=49.971W-0.3909(P<0.01)。单个鳃小片的面积随体重的增大而显著增加,a=0.3199W0.2528(P<0.01)。总呼吸面积随体重的增大而显著增加,A=11.559W0.7109(P<0.01)。相对呼吸面积随体重的增大而显著减小,RA=11.561W-0.2904(P<0.01)。 展开更多
关键词 浅色黄姑鱼 鳃小片 呼吸面积
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几种鲤科鱼类鳃的研究——Ⅰ.呼吸面积的研究 被引量:7
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作者 董双林 李群 +1 位作者 王莉 王志余 《大连水产学院学报》 CSCD 1989年第3期41-46,共6页
本文研究了6种鲤科鱼类的呼吸面积和体重变化对鳃小片面积,鳃小片间距、呼吸面积等的影响。3种小个体种类较大个体种类相对呼吸面积大,活动性较强的凶猛鱼类相对活动呼吸面积较大,鲢鱼随体重增加鳃小片间距和相对呼吸面积非线性减小,两... 本文研究了6种鲤科鱼类的呼吸面积和体重变化对鳃小片面积,鳃小片间距、呼吸面积等的影响。3种小个体种类较大个体种类相对呼吸面积大,活动性较强的凶猛鱼类相对活动呼吸面积较大,鲢鱼随体重增加鳃小片间距和相对呼吸面积非线性减小,两鳃丝数、鳃小片面积和总呼吸面积呈非线性增加。鲢鱼体重(W,g)与总呼吸面积(A,mm^2)和相对呼吸面积(RA,mm^2/g)的关系式为: A=1.23×10~4W^(0.781),r=0.901,n=7; RA=2.96×10~4W^(-0.399),r=0.947,n=7。 展开更多
关键词 鲤科 鱼类 呼吸面积
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鲻早期发育阶段鳃的超微结构及其呼吸表面积的研究 被引量:7
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作者 区又君 李加儿 +2 位作者 谢菁 马之明 陈怡飚 《南方水产科学》 CAS CSCD 北大核心 2014年第4期52-57,共6页
应用扫描电镜技术对人工繁育鲻(Mugil cephalus)早期发育阶段10、15、23、36、40和44日龄的仔、稚、幼鱼鳃结构作了观察,同时计测其呼吸表面积,探讨幼体体质量、体长与呼吸表面积之间的相关关系。结果显示,随着日龄增长,仔、稚、幼鱼的... 应用扫描电镜技术对人工繁育鲻(Mugil cephalus)早期发育阶段10、15、23、36、40和44日龄的仔、稚、幼鱼鳃结构作了观察,同时计测其呼吸表面积,探讨幼体体质量、体长与呼吸表面积之间的相关关系。结果显示,随着日龄增长,仔、稚、幼鱼的鳃结构和功能逐渐完善,鳃丝总数随仔、稚、幼鱼全长和体质量的增加分别呈幂指数式和对数式增加;单位长度鳃小片数与体质量之比值随体质量的增长呈幂指数式增加;体质量与总呼吸面积之间的变化关系以及体质量与单个鳃小片面积之间的变化关系可分别用二次项关系式表达。研究结果表明,鲻鳃的发育和分化是与仔、稚、幼鱼的生长、形态发育及生理功能的完善同步。 展开更多
关键词 仔、稚、幼鱼 超微结构 呼吸面积
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Stem Respiration of a Larch (Larix gmelini) Plantation in Northeast China 被引量:11
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作者 王文杰 杨逢建 +4 位作者 祖元刚 王慧梅 TAKAGI Kentaro SASA Kaichiro KOIKE Takayoshi 《Acta Botanica Sinica》 CSCD 2003年第12期1387-1397,共11页
Stem respiration is an important part of the activity of a tree and is an important source of CO2 evolution from a forest ecosystem. Presently, no standard methods are available for the accurate estimation of total st... Stem respiration is an important part of the activity of a tree and is an important source of CO2 evolution from a forest ecosystem. Presently, no standard methods are available for the accurate estimation of total stem CO2 efflux from a forest. In the current study, a 33-year-old (by the year 2001) larch (Larix gmelini Rupr.) plantation was measured throughout 2001-2002 to analyze its monthly and seasonal patterns of stem respiration. Stem respiration rate was also measured at different heights, at different daily intervals and any variation in the larch plantation was recorded. The relationship between stem temperature, growth status and respiration rate was analyzed. Higher respiration rates were recorded in upper reaches of the larch tree throughout the season and these were affected partially by temperature difference. Midday depression was found in the diurnal changes in stem respiration. In the morning, but not in the afternoon, stem respiration was positively correlated with stem temperature. The reason for this variation may be attributed to water deficit, which was stronger in the afternoon. In the larch plantation, a maximum 7-fold variation in stem respiration was found. The growth status (such as mean growth rate of stem and canopy projection area) instead of stem temperature difference was positively correlated with this large variation. An S-model (sigmoid curve) or Power model shows the greatest regression of the field data. In the courses of seasonal and annual changes of stem respiration, peak values were observed in July of both years, but substantial interannual differences in magnitude were observed. An exponential model can clearly show this regression of the temperature-respiration relationship. In our results, Q(10) values ranged from 2.22 in 2001 to 3.53 in 2002. Therefore, estimation of total stem CO2 efflux only by a constant Q(10) value may give biased results. More parameters of growth status and water status should be considered for more accurate estimation. 展开更多
关键词 Larix gmelini stem respiration growth status growth rate canopy projection area Q(10)
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