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Investigating a relationship between body composition and spinal curvature in farmed adult New Zealand king salmon (Oncorhynchus tshawytscha): A novel application of dual-energy X-ray absorptiometry

机译:养殖成人新西兰王鲑鱼(Oncorhynchus Tshawytscha)中身体成分和脊柱曲率之间的关系:一种新的双能X射线吸收测定法

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Characterising the pathology of skeletal anomalies in farmed finfish is key to elucidating the underlying causes. Spinal curvature is frequently observed in farmed New Zealand king salmon (Oncorhynchus tshawytscha), but its cause is currently unknown and knowledge about its pathology is limited. Dual-energy X-ray absorptiometry (DXA) was used to investigate the relationship between spinal curvature and body composition in farmed adult New Zealand king salmon. Differences in fat mass (FM), lean mass (LM) and bone mineral content (BMC) between harvest-sized fish affected and unaffected by spinal curvature were evaluated. As there is presently no evidence of an association between spinal curvature and vertebral mineral loss, between-group differences in BMC were not anticipated. Conversely, as spinal anomalies can alter the swimming and feeding of affected fish, and existing research suggests a role for soft tissues in spinal curvature development, differences in FM and LM were expected. Whole-body and regional (cranial, trunco-cranial, trunco-caudal and caudal spine) measurements of percent FM, LM and BMC were obtained from lateral DXA scans of size-matched adult female king salmon (1890-6903 g) affected (n = 31) and unaffected (n = 31) by spinal curvature. Repeatability was comparable to previous DXA studies. Measurements of FM and LM by DXA and chemical carcass analysis (CCA) were highly similar. As frequently reported in previous animal-based studies, DXA-derived BMC values were significantly lower than those obtained from CCA. Contrary to the overarching hypothesis, there were no significant between-group differences in whole-body or regional FM, LM or BMC, suggesting that there was no relationship between body composition and spinal curvature. Though the relationship between soft tissue changes and spinal curvature remains to be determined, DXA appears to be a viable tool for non-invasive assessment of king salmon body composition. However, studying end-stage disease has recognised limitations, so future investigations should utilise longitudinal designs.
机译:表征养殖翅目中骨骼异常的病理是阐明潜在原因的关键。养殖曲率经常观察到养殖新西兰王鲑鱼(Oncorhynchus TShawytscha),但其原因目前未知,有关其病理学的知识是有限的。使用双能X射线吸收测定法(DXA)探讨养殖成人新西兰王鲑鱼脊柱曲率与身体组成的关系。评价脂肪质量(FM),贫质量(LM)和骨矿物质含量(BMC)在受影响和不受脊柱曲率影响的收获尺寸的鱼之间的差异。由于目前没有脊柱曲率和椎体损失之间关联的证据,因此未预期BMC的组差异。相反,由于脊柱异常可以改变受影响鱼的游泳和喂养,并且现有的研究表明脊柱曲率发展中软组织的作用,预期FM和LM的差异。从阳性匹配的成年女性王鲑鱼(1890-6903g)的横向DXA扫描(1890-6903g)的横向DXA扫描获得全身和区域(颅骨,Trunco​​-颅骨,Trunco​​-caudcal和尾脊柱)测量的百分比百分比(N = 31)通过脊柱曲率不受影响(n = 31)。可重复性与之前的DXA研究相当。 DXA和化学胴体分析(CCA)的FM和LM的测量非常相似。正如在以前的动物的研究中报告的那样,DXA衍生的BMC值显着低于从CCA获得的BMC值。与总体假设相反,全身或区域FM,LM或BMC的组差异没有显着差异,表明身体成分和脊柱曲率之间没有关系。虽然软组织变化和脊柱曲率之间的关系仍有待确定,但DXA似乎是王鲑鱼体组合物非侵入性评估的可行工具。然而,研究终级疾病具有认可的局限性,因此未来的调查应利用纵向设计。

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