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首页> 外文期刊>Medical Physics >T 1-weighted MR image contrast around a cryoablation iceball: A phantom study and initial comparison with in vivo findings
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T 1-weighted MR image contrast around a cryoablation iceball: A phantom study and initial comparison with in vivo findings

机译:冷冻消融冰球周围的T 1加权MR图像对比:幻像研究和体内发现的初步比较

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Purpose: To correlate T1-weighted (T1w) magnetic resonance (MR) image contrast around a cryoablation iceball with temperature in a phantom study and to compare this to its in vivo appearance during MR-guided focal cryoablation of prostate cancer.Methods: A MR-compatible cryoneedle was inserted into identical gel phantoms (n = 3) on a 1.5 T MR system. Two fiber-optic temperature sensors were placed parallel to the needle. A fast 3D T1w gradient echo (GRE) sequence (TR/TE/FA= 4.81/1.98/6±) was used to monitor iceball progression. Normalized signal intensity (SI) was correlated with temperature. The same T1w sequence was used during MR-guided prostate cryoablation in ten consecutive patients at the authors institution. In vivo findings were quantitatively compared to the phantom data.Results: In the phantom study, the cryoablation iceball appeared in the T1w MR images as a sharply delineated signal void. A 2.2±0.2mmwide hyperintense rim directly surrounded the iceball at cooled but nonfreezing temperatures (<20 ±C) in the gel. Normalized SI was maximum at 8.4±2.4 ±C, showing a 35.6%-43.0% (mean 40.5%) increase with respect to baseline before cooling. In the clinical procedures, the same image contrast was observed in vivo in all patients. In vivo, width of the hyperintense rim was 1.6±0.6 mm. Normalized SI increases with respect to nontreated prostate ranged 28.4%-55.6% (mean 36.8%). On quantitative analysis, normalized SI changes along a linear region of interest from surrounding tissue onto the iceball center were similar between the patients and phantom setting (root mean square difference 0.06).Conclusions: The hyperintense rim around the iceball in fast T1w GRE images corresponded to cooled but nonfreezing temperatures (<20 ±C) proximal to the frozen zone. The same image contrast was observed both in a phantom study as well as in vivo in the human prostate during cryotherapy. Potentially, monitoring of this rim could be useful in order to maintain a safe margin from at-risk tissues during MR-guided prostate cryoablation procedures.
机译:目的:在幻影研究中将冷冻消融冰球周围的T1加权(T1w)磁共振(MR)图像对比度与温度相关联,并将其与MR引导的前列腺癌局灶性冷冻消融期间的体内外观进行比较。兼容的cryoneedle插入1.5 T MR系统上相同的凝胶体模中(n = 3)。将两个光纤温度传感器平行于针头放置。快速3D T1w梯度回波(GRE)序列(TR / TE / FA = 4.81 / 1.98 / 6±)用于监测冰球进展。归一化信号强度(SI)与温度相关。作者所在机构的十名连续患者在MR引导的前列腺冷冻消融期间使用了相同的T1w序列。结果:在体模研究中,冷冻消融冰球在T1w MR图像中以清晰描绘的信号空洞出现。一个2.2±0.2mm宽的高强度边缘在凝胶中处于冷却但非冻结温度(<20±C)时直接包围着冰球。归一化的SI在8.4±2.4±C时最大,显示相对于冷却前的基线增加了35.6%-43.0%(平均40.5%)。在临床程序中,在所有患者体内观察到相同的图像对比度。在体内,高强度边缘的宽度为1.6±0.6mm。相对于未治疗的前列腺,标准化的SI增加为28.4%-55.6%(平均36.8%)。在定量分析中,患者和幻影设置之间从周围组织到冰球中心的线性感兴趣区域的标准化SI变化相似(均方根差0.06)。结论:快速T1w GRE图像中冰球周围的超强边缘对应到接近冻结区域的已冷却但非冻结温度(<20±C)。在幻像研究中以及在冷冻疗法中在人前列腺中体内观察到相同的图像对比度。潜在地,在MR引导的前列腺冷冻消融手术期间,监视此边缘可能会有用,以保持高风险组织的安全余量。

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