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A compact mechatronic system for 3D ultrasound guided prostate interventions.

机译:一种用于3D超声引导的前列腺干预的紧凑型机电一体化系统。

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PURPOSE: Ultrasound imaging has improved the treatment of prostate cancer by producing increasingly higher quality images and influencing sophisticated targeting procedures for the insertion of radioactive seeds during brachytherapy. However, it is critical that the needles be placed accurately within the prostate to deliver the therapy to the planned location and avoid complications of damaging surrounding tissues. METHODS: The authors have developed a compact mechatronic system, as well as an effective method for guiding and controlling the insertion of transperineal needles into the prostate. This system has been designed to allow guidance of a needle obliquely in 3D space into the prostate, thereby reducing pubic arch interference. The choice of needle trajectory and location in the prostate can be adjusted manually or with computer control. RESULTS: To validate the system, a series of experiments were performed on phantoms. The 3D scan of the string phantom produced minimal geometric error, which was less than 0.4 mm. Needle guidance accuracy tests in agar prostate phantoms showed that the mean error of bead placement was less then 1.6 mm along parallel needle paths that were within 1.2 mm of the intended target and 1 degree from the preplanned trajectory. At oblique angles of up to 15 degrees relative to the probe axis, beads were placed to within 3.0 mm along a trajectory that were within 2.0 mm of the target with an angular error less than 2 degrees. CONCLUSIONS: By combining 3D TRUS imaging system to a needle tracking linkage, this system should improve the physician's ability to target and accurately guide a needle to selected targets without the need for the computer to directly manipulate and insert the needle. This would be beneficial as the physician has complete control of the system and can safely maneuver the needle guide around obstacles such as previously placed needles.
机译:目的:超声成像通过产生质量越来越高的图像并影响近距离放射疗法中插入放射性种子的复杂靶向程序,从而改善了前列腺癌的治疗。但是,至关重要的是,必须将针头准确地放置在前列腺内,以将治疗剂传递到计划的位置,并避免破坏周围组织的并发症。方法:作者开发了紧凑的机电一体化系统,以及一种有效的方法来指导和控制经会阴针插入前列腺。该系统的设计允许在3D空间中将针倾斜地引导到前列腺中,从而减少耻骨弓干扰。可以手动或使用计算机控制来调整针的轨迹和在前列腺中的位置。结果:为了验证系统,对幻像进行了一系列实验。字符串体模的3D扫描产生的几何误差最小,小于0.4 mm。在琼脂前列腺体模上进行的针引导精度测试表明,沿着平行针路径的珠子放置的平均误差小于1.6毫米,平行针路径位于预期目标的1.2毫米之内,与预定轨迹的夹角为1度。相对于探针轴的倾斜角度最大为15度,将磁珠沿着轨迹放置在距目标2.0 mm以内的3.0 mm以内,角度误差小于2度。结论:通过将3D TRUS成像系统与针头跟踪联动装置相结合,该系统应能够提高医师将针头瞄准并准确地将针头引导至选定目标的能力,而无需计算机直接操纵和插入针头。这将是有益的,因为医师可以完全控制系统,并且可以安全地在诸如先前放置的针头的障碍物周围操纵针头导向器。

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