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Effect of scanning direction on the statistical parameters of ultrasonic signals backscattered from the annular pulley and tendon

机译:扫描方向对环形皮带轮和腱反向散射超声信号统计参数的影响

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Previous studies have demonstrated that quantitative parameters estimated from backscattering signals are capable of characterizing pulley and tendon tissues for being applied to diagnose the trigger finger syndrome. Yet, the probability density functions (PDFs) of the envelope signals were found to vary significantly between those acquired from the transverse and sagittal views of samples. To extensively explore these effects, this study used a 30 MHz high-frequency ultrasound and theoretical considerations, to further comprehend the effect of the ultrasonic scanning direction on the estimated statistical parameters from the annular pulley and tendon. The ex vivo experiments began with the preparations of pulley and superficial digital flexor tendon (SDFT) excised from the first annular (A1) pulley region of cadavers. The tissue samples were then immersed in a saline solution tank. The ultrasound system was arranged to allow the scanning of tissues from the direction parallel to the fiber axis, at 0°, to that of perpendicular direction, at 90°, in which the increment of scanning angle is 5°. Statistical parameters, including Nakagami parameter (m) and scaling parameter, were estimated from regions of the acquired backscattering signals. Histological slices were also made for results verification. The scaling parameters associated with A1 pulley and SDFT of different scanning angles did not vary significantly; while those of the corresponding m was decreased significantly, as the scanning angle increased. The m of SDFT tended to decline with the increase of scanning angle faster than that of A1 pulley. Specifically, the m parameters of A1 pulley and SDFT decreased respectively from 1.06 ± 0.10 to 0.88 ± 0.07 and from 1.03 ± 0.06 to 0.78 ± 0.03. The empirical results are consistent with Nakagami statistical distribution, and which demonstrate that m could be applied to quantitatively assess to characterize the - DF of high-frequency ultrasonic envelopes from the A1 pulley and SDFT at various scanning angles.
机译:先前的研究表明,从反向散射信号估计的定量参数能够表征滑轮和腱组织,以用于诊断触发手指综合症。但是,发现包络信号的概率密度函数(PDFs)在从样本的横向和矢状视图获取的包络信号之间存在显着差异。为了广泛地探讨这些影响,本研究使用30 MHz高频超声和理论上的考虑,以进一步理解超声扫描方向对环形皮带轮和腱估计统计参数的影响。体外实验从准备尸体的第一个环形(A1)滑轮区域切除的滑轮和浅指屈肌腱(SDFT)的制备开始。然后将组织样品浸入盐溶液罐中。布置超声系统以允许从平行于纤维轴的方向(0°)到垂直方向(90°)扫描组织,其中扫描角的增量为5°。统计参数,包括中上参数(m)和缩放参数,是从获取的反向散射信号区域估计的。还进行了组织学切片以用于结果验证。与A1滑轮和不同扫描角度的SDFT相关的缩放参数没有显着变化。随着扫描角的增加,相应的m值显着下降。 SDFT的m随着扫描角度的增加而趋于下降,其下降速度比A1滑轮更快。具体而言,A1滑轮和SDFT的m参数分别从1.06±0.10降低到0.88±0.07和从1.03±0.06降低到0.78±0.03。实验结果与Nakagami统计分布一致,表明m可用于定量评估以表征A1滑轮和SDFT在各种扫描角度下高频超声包络的-DF。

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