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首页> 外文期刊>Medical Physics >An MRI-compatible system for focused ultrasound experiments in small animal models.
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An MRI-compatible system for focused ultrasound experiments in small animal models.

机译:MRI兼容系统,用于在小动物模型中进行聚焦超声实验。

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摘要

The development of novel MRI-guided therapeutic ultrasound methods including potentiated drug delivery and targeted thermal ablation requires extensive testing in small animals such as rats and mice due to the widespread use of these species as models of disease. An MRI-compatible, computer-controlled three-axis positioning system was constructed to deliver focused ultrasound exposures precisely to a target anatomy in small animals for high-throughput preclinical drug delivery studies. Each axis was constructed from custom-made nonmagnetic linear ball stages driven by piezoelectric actuators and optical encoders. A range of motion of 5 x 5 x 2.5 cm3 was achieved, and initial bench top characterization demonstrated the ability to deliver ultrasound to the brain with a spatial accuracy of 0.3 mm. Operation of the positioning system within the bore of a clinical 3 T MR imager was feasible, and simultaneous motion and MR imaging did not result in any mutual interference. The system was evaluated in its ability to deliver precise sonications within the mouse brain, linear scanned exposures in a rat brain for blood barrier disruption, and circular scans for controlled heating under MR temperature feedback. Initial results suggest that this is a robust and precise apparatus for use in the investigation of novel ultrasound-based therapeutic strategies in small animal preclinical models.
机译:新型的MRI指导的治疗性超声方法的开发,包括增强的药物输送和靶向的热消融,需要在诸如大鼠和小鼠的小型动物中进行广泛的测试,因为这些物种被广泛用作疾病模型。构建了MRI兼容的计算机控制的三轴定位系统,以将聚焦的超声精确地传递到小动物的目标解剖结构中,以进行高通量临床前药物传递研究。每个轴都是由压电执行器和光学编码器驱动的定制非磁性线性球镜台构成的。达到了5 x 5 x 2.5 cm3的运动范围,并且最初的台式表征证明了能够以0.3 mm的空间精度将超声波传递到大脑。在临床3 T MR成像器孔内定位系统的操作是可行的,并且同时运动和MR成像不会导致任何相互干扰。评估了该系统在小鼠脑内进行精确超声处理的能力,在大鼠脑中进行线性扫描的暴露以破坏血屏障的能力以及在MR温度反馈下圆形扫描以控制加热的能力。初步结果表明,这是一种用于在小动物临床前模型中研究新型基于超声的治疗策略的强大而精确的仪器。

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