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首页> 外文期刊>Aquaculture >Rapid and non-invasive measurements of fat and pigment concentrations in live and slaughtered Atlantic salmon (Salmo salar L.)
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Rapid and non-invasive measurements of fat and pigment concentrations in live and slaughtered Atlantic salmon (Salmo salar L.)

机译:快速,无创地测量活的和屠宰的大西洋鲑鱼(Salmo salar L.)中的脂肪和色素浓度

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The aim of this study was to non-invasively determine fat and pigment concentrations in salmon muscle based on visible and near infrared (VIS/NIR) spectroscopy measurements of live/whole fish and fillets, and by means of digital photography (DP) of fillets. The fish used were two populations of farmed Atlantic salmon (Salmo salar L.) consisting of 46 salmon averaging 0.7 kg (range 0.17-1.7 kg, Group S) and 30 salmon averaging 2.3 kg (range 1.4-4.1 kg, Group L). Chemical analyses (fat and pigment content) and computerized tomography, CT (fat content) were used as reference methods. Group L was analysed in the live state (VIS/NIR), after gutting (VIS/NIR and CT), and as fillets (VIS/NIR and DP). Group S was analysed in the gutted state (VIS/NIR) and as fillets (VIS/NIR and DP). VIS spectroscopy predictions of pigment in whole salmon from Group S were obtained with a root mean square error of prediction (RMSEP) of 0.9 mg kg super(-) super(1) astaxanthin, and a correlation between VIS spectroscopy predicted and chemically measured pigment of r=0.85 (p<0.0001). The fat concentration was determined by the NIR spectroscopy in live fish with RMSEP=1.0 fat% unit, and a correlation with chemical reference values of r=0.94 (p<0.0001). Fat predictions from NIR spectroscopy correlated also well with predictions from CT analyses, r=0.95 (p<0.0001). VIS spectroscopy and DP were equally well suited to determine pigment concentrations in salmon fillets, with prediction errors of only 0.4 mg kg super(-) super(1) astaxanthin, and a correlation with chemically determined pigment of r=0.92 (p<0.0001). The results obtained in the present study are the first to demonstrate successful non-invasive pigment predictions in whole salmon using VIS/NIR spectroscopy, and the possibility for simultaneous, rapid and non-destructive quantification of fat and pigment concentrations.
机译:这项研究的目的是基于活鱼/整条鱼和鱼片的可见和近红外(VIS / NIR)光谱测量结果,以及通过鱼片的数字摄影(DP),无创地确定鲑鱼肌肉中的脂肪和色素浓度。所用的鱼是两个养殖的大西洋鲑鱼(Salmo salar L.)种群,其中包括46头平均0.7千克的鲑鱼(范围为0.17-1.7公斤,S组)和30头平均2.3千克的鲑鱼(范围为1.4-4.1 kg,L组)。化学分析(脂肪和色素含量)和计算机断层扫描,CT(脂肪含量)用作参考方法。 L组在活体状态下(VIS / NIR和CT)进行实时分析(VIS / NIR和CT),并以鱼片(VIS / NIR和DP)进行分析。 S组以内脏状态(VIS / NIR)和鱼片(VIS / NIR和DP)进行分析。获得的S组全鲑鱼色素的VIS光谱预测结果的预测均方根误差(RMSEP)为0.9 mg kg超级(-)超级(1)虾青素,并且VIS光谱预测值与化学测得的色素之间的相关性r = 0.85(p <0.0001)。通过NIR光谱法测定活鱼中的脂肪浓度,RMSEP = 1.0脂肪%单位,并与r = 0.94的化学参考值相关(p <0.0001)。 NIR光谱的脂肪预测值与CT分析的预测值也很好相关,r = 0.95(p <0.0001)。 VIS光谱法和DP同样适用于测定鲑鱼片中的色素浓度,其预测误差仅为0.4 mg kg super(-)super(1)虾青素,与化学测定色素的相关性为r = 0.92(p <0.0001) 。在本研究中获得的结果首次证明了使用VIS / NIR光谱技术成功地对整个鲑鱼进行了非侵入性色素预测,以及同时,快速和无损定量脂肪和色素浓度的可能性。

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