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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Evaluation of the unscanned soft-tissue thermal index
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Evaluation of the unscanned soft-tissue thermal index

机译:未扫描软组织热指数的评估

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The monopole-source solution was used to calculate the three-dimensional complex acoustic pressure field for focused circular apertures in a medium having homogeneous acoustic and thermal properties. The three source diameters were 1, 2, and 4 cm and the eight transmit f-numbers (ratio of the radius of curvature/source diameter) were 0.7, 1.0, 1.3, 1.6, 2.0, 3.0, 4.0, and 5.0. For these focused field geometries, eight ultrasonic frequencies were evaluated (1, 2, 3, 4, 5, 7, 9, and 12 MHz) from which the three-dimensional temperature distribution was calculated using the bio-heat transfer equation in homogeneous, perfused media (attenuation=absorption=0.3 dB/cm-MHz; perfusion length: 1.0 cm). For each of the 192 cases, the acoustic field was normalized to the derated spatial peak, temporal average intensity (I/sub SPTA.3/) of 720 mW/cm/sup 2/, the maximum value allowed by the FDA 510(k) diagnostic ultrasound equipment approval process. Using the normalized acoustic field, the axial temperature increase profiles and the maximum temperature increases (/spl Delta/T/sub max/) were determined for each case. Also, from the normalized acoustic field, the unscanned soft-tissue thermal index (TIS) was determined. In general, /spl Delta/T/sub max/, TIS, and source power increase with increasing transmit f-number, source diameter, or frequency. The TIS generally underestimates (is less than) /spl Delta/T/sub max/ for f-numbers /spl les/2, conditions for which /spl Delta/T/sub max//spl les/0.30/spl deg/C and TIS/spl les/0.40. This suggests that, for transmit f-numbers /spl les/2, TIS would not need to be displayed according to the ODS display requirements. With the exception of the longer-focus, larger-diameter, higher-frequency sources, TIS generally tracks /spl Delta/T/sub max/ for f-numbers /spl ges/3. These exceptions suggest a breakdown of the ODS procedures far calculating TIS.
机译:单极源解决方案用于计算具有均匀声和热特性的介质中聚焦圆孔的三维复声压场。三个源直径分别为1、2和4 cm,八个透射f值(曲率半径/源直径的比)为0.7、1.0、1.3、1.6、2.0、3.0、4.0和5.0。对于这些聚焦场几何形状,评估了八个超声频率(1、2、3、4、5、7、9和12 MHz),利用生物传热方程均等地从中计算了三维温度分布,灌注介质(衰减=吸收= 0.3 dB / cm-MHz;灌注长度:1.0 cm)。对于这192例病例中的每一种,均将声场标准化为降级的空间峰值,时间平均强度(I / sub SPTA.3 /)为720 mW / cm / sup 2 /,这是FDA 510(k)允许的最大值)诊断超声设备的批准程序。使用归一化的声场,确定每种情况下的轴向温度升高曲线和最大温度升高(/ spl Delta / T / sub max /)。而且,从归一化的声场中,确定了未扫描的软组织热指数(TIS)。通常,/ spl Delta / T / sub max /,TIS和源功率随发射f值,源直径或频率的增加而增加。对于f数/ spl les / 2,对于/ spl Delta / T / sub max // spl les / 0.30 / spl deg / C,TIS通常低估(小于)/ spl Delta / T / sub max /和TIS / spl les / 0.40。这表明,对于发送f数/ spl les / 2,不需要根据ODS显示要求显示TIS。除了焦点较长,直径较大,频率较高的信号源外,TIS通常跟踪f值/ spl ges / 3的/ spl Delta / T / sub max /。这些例外表明,消耗臭氧层物质的程序在计算TIS时就已经分解。

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