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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Excitation System for Magnetic Resonance Elastography Using Micro MRI
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Excitation System for Magnetic Resonance Elastography Using Micro MRI

机译:磁共振成像的微MRI励磁系统

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References(17) Cited-By(2) Magnetic resonance elastography (MRE) is a nondestructive method for measuring the hardness and softness of living tissue by means of magnetic resonance imaging (MRI) coupled with mechanical excitation of the subject. The shear modulus of a tissue is related to the velocity of transverse waves propagating through it, and local movements are obtained from MRI phase images. Micro MRI systems are available for high-resolution MRE measurements of soft materials. Longitudinal waves are effective for long-distance wave propagation from small excitation areas in micro MRI systems, and the transverse waves produced by the longitudinal waves can be used for elastography. This study proposes an excitation system comprising a high-power vibration generator and bar-shaped vibration transmitter made from an elastic material. The transmission characteristics of the glass-fiber-reinforced plastic bar-shaped transducer were evaluated by measuring the accelerations at its base and tip. The performance of the excitation system, which focused on the effects of frequency and amplitude, was investigated for measuring storage and loss modulus distributions in agarose gel. This system could transfer longitudinal waves with an amplitude of 0.5 mm and frequency between 50 and 250 Hz, without significant damping. Moreover, the excitation capabilities for gel phantoms were evaluated by MRE using 0.3T micro MRI equipment. A large amplitude of 0.5 mm and high frequency of 250 Hz produced less data scatter than smaller amplitudes and lower frequencies. MRE performance improved upon using strong excitations.
机译:参考文献(17)引用了(2)磁共振弹性成像(MRE)是一种无损检测方法,用于通过磁共振成像(MRI)结合对象的机械激发来测量活体组织的硬度和柔软度。组织的剪切模量与横向波在组织中传播的速度有关,局部运动可从MRI相位图像获得。 Micro MRI系统可用于高分辨率的软材料MRE测量。纵向波对于从微型MRI系统中的小激发区域进行长距离波传播很有效,并且由纵向波产生的横向波可用于弹性成像。这项研究提出了一种激励系统,该激励系统包括大功率振动发生器和由弹性材料制成的棒状振动变送器。通过测量玻璃纤维增​​强塑料棒形传感器在其底部和尖端的加速度来评估其传输特性。研究了激发系统的性能,该系统着重于频率和幅度的影响,用于测量琼脂糖凝胶中的储能和损耗模量分布。该系统可以传输幅度为0.5 mm且频率在50到250 Hz之间的纵波,而不会产生明显的阻尼。此外,使用0.3T微型MRI设备通过MRE评估了凝胶体模的激发能力。与较小的振幅和较低的频率相比,0.5 mm的较大振幅和250 Hz的高频产生的数据散射较小。使用强激励后,MRE性能得到改善。

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