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首页> 外文期刊>Fisheries Management and Ecology >Developing bioelectrical impedance analysis methods for age-0 brook trout
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Developing bioelectrical impedance analysis methods for age-0 brook trout

机译:开发用于0岁小河鳟的生物电阻抗分析方法

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摘要

Year class strength of many fishes often is determined by survival through the first winter. Increased fat reserves improve survival and overall cohort success. Bioelectrical impedance analysis (BIA) methods are established for estimating proximate composition of adult brook trout, Salvelinus fontinalis (Mitchill), but none have been developed for early life stages. Small-fish BIA would provide information about age-0 percent dry weight, a proxy for fat reserves, allowing for better prediction of cohort success. The objective of this study was to develop BIA methods that provide reliable estimates of percent dry weight for age-0 brook trout. BIA measurements were taken at seven anatomical locations from 48 to 115mm fish. A model developed using BIA measures taken by subdermal needle electrodes precisely predicted percent dry weight (best model, RMSE=1.03, R-2=0.86). Although lacking support, as determined by information theoretical analysis, BIA measured with non-invasive external rod electrodes also precisely predicted percent dry weight (RMSE=1.09, R-2=0.85). Models developed using two electrode locations performed better than models developed with only one location. For small brook trout, a dorsal to ventral pre-dorsal fin electrode location should be used in conjunction with a dorsal total length location when measuring BIA to predict percent dry weight.
机译:许多鱼类的年级强度通常取决于到第一个冬天的生存时间。增加的脂肪储备可改善生存率和总体队列成功率。建立了生物电阻抗分析(BIA)方法来估计成年河鳟Salvelinus fontinalis(Mitchill)的近似组成,但尚未开发出适合早期生命阶段的方法。小鱼BIA可以提供有关0%年龄干重的信息(脂肪储备的代表),从而可以更好地预测队列成功。这项研究的目的是开发BIA方法,该方法可以可靠地估算0岁小鳟鱼的干重百分比。 BIA测量是在48至115mm鱼的七个解剖位置进行的。使用皮下针电极采取BIA措施开发的模型可精确预测干重百分比(最佳模型,RMSE = 1.03,R-2 = 0.86)。尽管缺乏支持,如通过信息理论分析确定的那样,但使​​用无创外部棒状电极测量的BIA也可以精确预测干重百分比(RMSE = 1.09,R-2 = 0.85)。使用两个电极位置开发的模型比仅使用一个位置开发的模型表现更好。对于小型河鳟,在测量BIA以预测干重百分比时,应将背鳍到背鳍前鳍的电极位置与背鳍总长度位置结合使用。

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