首页> 外文期刊>Acta Radiologica >Dual-frequency ultrasound technique minimizes errors induced by soft tissue in ultrasound bone densitometry.
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Dual-frequency ultrasound technique minimizes errors induced by soft tissue in ultrasound bone densitometry.

机译:双频超声技术可最大程度地减少超声骨密度测定法中由软组织引起的误差。

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BACKGROUND: Most bone ultrasound devices are designed for through-transmission measurements of the calcaneus. In principle, ultrasound backscattering measurements are possible at more typical fracture sites of the central skeleton. Unfortunately, soft tissue overlying the bones diminishes reliability of these measurements. PURPOSE: To apply the single-transducer dual-frequency ultrasound (DFUS) technique to eliminate the errors induced by soft tissue on the measurements of integrated reflection coefficient (IRC) in human distal femur in vivo. MATERIAL AND METHODS: Ultrasound and dual-energy X-ray absorptiometry (DXA) examinations were conducted on a bodybuilder during a 21-week training and dieting period. RESULTS: Significant changes in quantity and composition of soft tissue took place during the diet. However, DXA measurements showed no significant effects on bone density measurements. The single transducer DFUS technique enabled the determination of local soft-tissue composition, as verified by comparison with the DXA (r=0.91, n=8, p<0.01). Further, the technique eliminated the soft-tissue-induced error from IRC measured for the bone. The uncorrected IRC associated significantly with the change in local soft-tissue composition (r=-0.83, n=8, p<0.05), whereas the corrected IRC values showed no significant dependence (r=-0.30, n=8, p=0.46) on local soft-tissue composition. CONCLUSION: The DFUS technique may significantly enhance the accuracy of clinical ultrasound measurements of bone.
机译:背景:大多数骨超声设备被设计用于跟骨的透射测量。原则上,可以在中央骨骼的更典型的骨折部位进行超声反向散射测量。不幸的是,覆盖骨骼的软组织降低了这些测量的可靠性。目的:应用单换能器双频超声(DFUS)技术,消除人体内股骨远端的综合反射系数(IRC)测量中软组织引起的误差。材料与方法:在21周的训练和节食期间,对健美运动员进行了超声和双能X射线吸收仪(DXA)检查。结果:饮食期间软组织的数量和组成发生了显着变化。但是,DXA测量显示对骨密度测量没有显着影响。单个换能器DFUS技术能够确定局部软组织成分,通过与DXA的比较进行验证(r = 0.91,n = 8,p <0.01)。此外,该技术还消除了IRC对骨骼的测量,从而消除了软组织引起的误差。未经校正的IRC与局部软组织成分的变化显着相关(r = -0.83,n = 8,p <0.05),而校正的IRC值无显着依赖性(r = -0.30,n = 8,p = 0.46)在局部软组织上。结论:DFUS技术可显着提高临床超声骨测量的准确性。

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