首页> 外文会议>Physiology, Function, and Structure from Medical Images pt.1; Progress in Biomedical Optics and Imaging; vol.7,no.29 >MR Elastographic Methods for the Evaluation of Plantar Fat Pads: Preliminary Comparison of the Shear Modulus for Shearing Deformation and Compressive Deformation in Normal Subjects
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MR Elastographic Methods for the Evaluation of Plantar Fat Pads: Preliminary Comparison of the Shear Modulus for Shearing Deformation and Compressive Deformation in Normal Subjects

机译:评估足底脂肪垫的MR弹性成像方法:正常受试者剪切变形和压缩变形的剪切模量的初步比较

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MR elastography (MRE) images the intrinsic mechanical properties of soft tissues; e.g., the shear modulus, μ. The μ of the plantar soft tissues is important in understanding the mechanisms whereby the forces induced during normal motion produce ulcers that lead to amputation in diabetic feet. We compared the compliance of the heel fat pad to compressive forces and to shearing forces. The design of prosthetics to protect the foot depends on the proper understanding of the mechanisms inducing damage. In the heel fat pads of six normal subjects, between 25 and 65 years of age, the μ for deformation perpendicular to the direction of weight bearing is similar but not identical to that determined for deformation along the weight bearing axis. The average difference between μ along the weight bearing axis and μ perpendicular to the weight bearing axis, is well correlated with age (Correlation Coefficient = 0.789). The p-value for the data being random was 0.0347 indicating that the observed difference is not likely to be random. The p-value for control points is 0.8989, indicating a random process. The results are suggestive that the high compressive forces imposed during walking damage the heel fat pads over time resulting in softening to compression preferentially over shearing. It is important to validate the observed effect with larger numbers of subjects, and better controls including measures of activity, and to understand if diseases like diabetes increase the observed damage.
机译:MR弹性成像(MRE)对软组织的固有机械性能进行成像。例如,剪切模量μ。足底软组织的μ对理解正常运动过程中产生的力产生溃疡并导致糖尿病足截肢的机理很重要。我们将脚后跟脂肪垫的顺应性与压缩力和剪切力进行了比较。保护脚部假肢的设计取决于对引起损伤的机制的正确理解。在25岁至65岁之间的六个正常受试者的脚后跟脂肪垫中,垂直于负重方向变形的μ与相似,但与沿负重轴变形确定的μ不相同。沿承重轴的μ和垂直于承重轴的μ之间的平均差与年龄密切相关(相关系数= 0.789)。随机数据的p值为0.0347,表明观察到的差异不太可能是随机的。控制点的p值为0.8989,表示随机过程。结果表明,步行过程中施加的高压缩力会随着时间的流逝而损坏脚后跟脂肪垫,导致软化至压缩优先于剪切。重要的是要用大量受试者和更好的控制措施(包括活动指标)来验证观察到的效果,并了解糖尿病等疾病是否会增加观察到的损害。

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