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Quantitative analysis of coated needles for ultrasound guided intervention.

机译:超声引导干预涂层针的定量分析。

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For ultrasound guided interventions, the visibility of needles is of crucial importance for accurate positioning. Standard needles are only visible when the angle between transmitted ultrasound and needle is around 90 degrees. Therefore, needles were coated with a polyethersulfone coating containing specially developed polymeric microcapsules. Three different sizes of capsules were used, 10-25 μm, 25-50 μm and 50-75 μm. Ultrasound data were acquired using a Philips iE33 echo apparatus equipped with an L11-3 linear array transducer. A fixed control setting with known flat depth-gain control and linear post-processing look-up table was used to allow transformation of the image gray levels into a dB scale of echo levels. The needles were positioned in a water tank filled with degassed water and mounted in a rotation arm. Data were acquired for angles from 90° down to 10° in steps of 10°. Data for each angle were rotated to 90° and averaged over all image lines to calculate an average reflection profile. The maximum of this profile was taken as the reflected, or backscattered echo level whereas the distance between the -6 dB fall-off points was taken as the thickness. The coated, as well as the normal needle, are clearly visible in the water tank. However, quantitative analysis demonstrates that the echogenicity of the coated needle is independent of the angle: the echo level is equal for all angles. This effect is observed for all used sizes of the microcapsules. The uncoated needle shows a decay of the echo level for angles smaller than 80° with a decrease of 8 dB for angles smaller than 60°. The thickness is overestimated at 90°, but decreases to the actual value for angles smaller than 60°. Additionally, a normal and coated needle were inserted in a chicken breast at an angle of 45° to demonstrate differences in performance under clinical circumstances. The normal needle was not visible at all, whereas the coated needle could be clearly depicted. In conclusion, coating needles with microcapsules improves the ultrasound visibility and makes the echo level angle independent.
机译:对于超声引导干预,针的可见性对于准确定位至关重要。当透射超声和针之间的角度约为90度时,标准针仅可见。因此,用含有特殊开发的聚合物微胶囊的聚醚砜涂层涂覆针。使用三种不同尺寸的胶囊,10-25μm,25-50μm和50-75μm。使用配备有L11-3线性阵列换能器的飞利浦IE33回波装置获取超声数据。使用已知的扁平深度增益控制和线性处理查找表的固定控制设置用于允许将图像灰度级的转换为回声级别的DB比例。将针定位在填充有脱气水的水箱中,并安装在旋转臂中。以10°的步长,从90°到10°的角度获得数据。每个角度的数据旋转到90°并在所有图像线上平均以计算平均反射谱。将此配置文件的最大值作为反射或反向散射的回声级别,而-6 dB掉落点之间的距离被视为厚度。涂层和正常针,在水箱中清晰可见。然而,定量分析表明涂覆针的回声独立于角度:回波水平相等,适用于所有角度。这种效应被观察到微胶囊的所有使用的尺寸。未涂层的针头显示出电弧水平的衰减,用于小于80°的角度,对于小于60°的角度,减小8 dB。厚度在90°处高估,但是减少到小于60°的角度的实际值。另外,将正常和涂覆的针头以45°的角度插入鸡胸肉中,以证明在临床环境下性能的差异。正常针根本不可见,而涂层的针可以清楚地描绘。总之,具有微胶囊的涂覆针头改善了超声能见度,并使回波水平角度无关。

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