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首页> 外文期刊>Academic radiology >Improved hardware for higher spatial resolution strain-encoded (SENC) breast MRI for strain measurements.
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Improved hardware for higher spatial resolution strain-encoded (SENC) breast MRI for strain measurements.

机译:用于更高空间分辨率应变编码(SENC)乳房MRI的改进硬件,用于应变测量。

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RATIONALE AND OBJECTIVES: Early detection of breast lesions using mammography has resulted in lower mortality rates. However, some breast lesions are mammography occult, and magnetic resonance imaging (MRI) is recommended, but it has lower specificity. It is possible to achieve higher specificity by using strain-encoded (SENC) MRI and/or magnetic resonance elastography. SENC breast MRI can measure the strain properties of breast tissue. Similarly, magnetic resonance elastography is used to measure the elasticity (ie, shear stiffness) of different tissue compositions interrogating the tissue mechanical properties. Reports have shown that malignant tumors are three to 13 times stiffer than normal tissue and benign tumors. MATERIALS AND METHODS: The investigators have developed a SENC breast hardware device capable of periodically compressing the breast, thus allowing for longer scanning time and measuring the strain characteristics of breast tissue. This hardware enables the use of SENC MRI with high spatial resolution (1 x 1 x 5 mm(3)) instead of fast SENC imaging. Simple controls and multiple safety measures were added to ensure accurate, repeatable, and safe in vivo experiments. RESULTS: Phantom experiments showed that SENC breast MRI has higher signal-to-noise ratio and contrast-to-noise ratio than fast SENC imaging under different scanning resolutions. Finally, the SENC breast device reproducibility measurements resulted in a difference of <1 mm with a 1% strain difference. CONCLUSIONS: SENC breast magnetic resonance images have higher signal-to-noise ratio and contrast-to-noise ratios than fast SENC images. Thus, combining SENC breast strain measurements with diagnostic breast MRI to differentiate benign from malignant lesions could potentially increase the specificity of diagnosis in the clinical setting.
机译:理由和目的:使用乳腺X射线摄影术早期发现乳腺病变可降低死亡率。但是,有些乳腺病变是乳腺X线摄影的隐匿性,建议使用磁共振成像(MRI),但特异性较低。通过使用应变编码(SENC)MRI和/或磁共振弹性成像,可以实现更高的特异性。 SENC乳房MRI可以测量乳房组织的应变特性。类似地,磁共振弹性成像用于测量询问组织机械性能的不同组织组成的弹性(即,剪切刚度)。报告表明,恶性肿瘤的硬度是正常组织和良性肿瘤的三到十三倍。材料与方法:研究人员已经开发出一种SENC乳房硬件设备,该设备能够定期压迫乳房,从而允许更长的扫描时间并测量乳房组织的应变特性。该硬件支持使用具有高空间分辨率(1 x 1 x 5 mm(3))的SENC MRI,而不是快速进行SENC成像。添加了简单的控件和多种安全措施,以确保准确,可重复和安全的体内实验。结果:幻像实验表明,在不同扫描分辨率下,SENC乳腺MRI比快速SENC成像具有更高的信噪比和对比噪声比。最终,SENC乳房设备的再现性测量结果导致差异小于1 mm,应变差异为1%。结论:SENC乳房磁共振图像比快速SENC图像具有更高的信噪比和对比度噪声比。因此,将SENC乳腺应变测量值与诊断性乳腺MRI结合以区分良性和恶性病变可能会增加临床诊断的特异性。

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