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Speed of sound and shear wave speed for calf soft tissue composition and nonlinearity assessment

机译:Calf软组织成分和非线性评估的声音和剪力波速度的速度

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Background: The purpose of this study was threefold: (I) to study the correlation of speed-of-sound (SoS) and shear-wave-speed (SWS) ultrasound (US) in the gastrocnemius muscle, (II) to use reproducible tissue compression to characterize tissue nonlinearity effects, and (III) to compare the potential of SoS and SWS for tissue composition assessment. Methods: Twenty gastrocnemius muscles of 10 healthy young subjects (age range, 23–34 years, two females and eight males) were prospectively examined with both clinical SWS (GE Logiq E9, in m/s) and a prototype system that measures SoS (in m/s). A reflector was positioned opposite the US probe as a timing reference for SoS, with the muscle in between. Reproducible tissue compression was applied by reducing probe-reflector distance in 5 mm steps. The Ogden hyperelastic model and the acoustoelastic theory were used to characterize SoS and SWS variations with tissue compression and extract novel metrics related to tissue nonlinearity. The body fat percentage (BF%) of the subjects was estimated using bioelectrical impedance analysis. Results: A weak negative correlation was observed between SWS and SoS (r=?0.28, P=0.002). SWS showed an increasing trend with increasing tissue compression (P=0.10) while SoS values decayed nonlinearly (P0.001). The acoustoelastic modeling showed a weak correlation for SWS (r=?0.36, P0.001) but a very strong correlation for SoS (r=0.86, P0.001), which was used to extract the SoS acoustoelastic parameter. SWS showed higher variability between both calves [intraclass correlation coefficient (ICC) =0.62, P=0.08] than SoS (ICC =0.91, P0.001). Correlations with BF% were strong and positive for SWS (r=0.60, P0.001), moderate and negative for SoS (r=?0.43, P=0.05), and moderate positive for SoS acoustoelastic parameter (r=0.48, P=0.03). Conclusions: SWS and SoS provide independent information about tissue elastic properties. SWS correlated stronger with BF% than SoS, but measurements were less reliable. SoS enabled the extraction of novel metrics related to tissue nonlinearity with potential complementary information.
机译:背景:本研究的目的是三倍:(i)研究声速(SOS)和剪切波 - 速度(SWS)超声(SWS)超声(US)的相关性,(ii)使用可重复组织压缩表征组织非线性效应,(iii)比较SOS和SWS用于组织成分评估的潜力。方法:临床SWS(GE LOGIQ E9,M / S中,23-34岁,23-34岁,23-34岁,23-34岁,两名女性和八个男性)和衡量SOS的原型系统(在m / s中。反射器定位在美国探针对面,作为SOS的定时参考,肌肉之间的肌肉。通过在5mm步骤中还原探针反射器距离来施加可重复的组织压缩。 ogden超弹性模型和声学理论用于表征SOS和SWS变异,与组织压缩和提取与组织非线性相关的新尺度。使用生物电阻抗分析估计受试者的体脂百分比(BF%)。结果:SWS和SOS(R = 0.28,P = 0.002)之间观察到弱负相关。 SWS显示出增加趋势,随着组织压缩(P = 0.10),而SOS值衰减非线性(P <0.001)。声弹性建模显示SWS的弱相关性(R = 0.36,P <0.001),但SOS(r = 0.86,p <0.001)的非常强的相关性,用于提取SOS偏振键参数。 SWS在两只犊牛(ICC = 0.91,P <0.001)之间的犊牛(脑相关系数(ICC)= 0.62,P = 0.08)之间的变化较高。与BF%的相关性强烈且阳性SO(r = 0.60,p <0.001),SOS(r = 0.43,p = 0.05),中等阳性的SOS偏光参数(r = 0.48,p = 0.03)。结论:SWS和SOS提供有关组织弹性性质的独立信息。 SWS与BF%比SO更强,但测量不太可靠。 SOS使与潜在的互补信息提取与组织非线性相关的新型度量。

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