Jomoto Wataru, Tanooka Masao, Doi Hiroshi, Kikuchi Keisuke, Mitsuie Chiemi, Yamada Yusuke, Suzuki Toru, Yamano Toshiko, Ishikura Reiichi, Kotoura Noriko, Yamamoto Shingo
Department of Radiological Technology, Hyogo College of Medicine College Hospital.
Department of Radiology, Hyogo College of Medicine.
Cureus. 2018 Jan 2;10(1):e2018. doi: 10.7759/cureus.2018.
We sought to develop a surgical navigation system using magnetic resonance angiography (MRA) and a three-dimensional (3D) printer for robot-assisted radical prostatectomy (RARP). Six patients with pathologically proven localized prostate cancer were prospectively enrolled in this study. Prostate magnetic resonance imaging (MRI), consisting of T2-weighted sampling perfection with application-optimized contrasts using different flip-angle evolutions (SPACE) and true fast imaging with steady-state precession (true FISP), reconstructed by volume rendering, was followed by dynamic contrast-enhanced MRA performed with a volumetric interpolated breath-hold examination (VIBE) during intravenous bolus injection of gadobutrol. Images of arterial and venous phases were acquired over approximately 210 seconds. Selected images were sent to a workstation for generation of 3D volume-rendered images and standard triangulated language (STL) files for 3D print construction. The neurovascular bundles (NVBs) were found in sequence on non-contrast images. Accessory pudendal arteries (APAs) were found in all cases in the arterial phase of contrast enhancement but were ill-defined on non-contrast enhanced MRA. Dynamic contrast-enhanced MRA helped to detect APAs, suggesting that this 3D system using MRI will be useful in RARP.
我们试图开发一种使用磁共振血管造影(MRA)和三维(3D)打印机的手术导航系统,用于机器人辅助根治性前列腺切除术(RARP)。本研究前瞻性纳入了6例经病理证实为局限性前列腺癌的患者。前列腺磁共振成像(MRI)包括采用不同翻转角演变的应用优化对比的T2加权采样完美成像(SPACE)和稳态进动快速成像(true FISP),经容积再现重建,随后在静脉推注钆布醇期间采用容积内插屏气检查(VIBE)进行动态对比增强MRA。在大约210秒内采集动脉期和静脉期图像。将选定的图像发送到工作站,以生成3D容积再现图像和用于3D打印构建的标准三角化语言(STL)文件。在非增强图像上依次发现神经血管束(NVBs)。在所有病例的对比增强动脉期均发现了阴部副动脉(APA),但在非增强MRA上显示不清。动态对比增强MRA有助于检测APA,提示这种使用MRI的3D系统在RARP中将会有用。