首页> 外文会议>Image Processing pt.2; Progress in Biomedical Optics and Imaging; vol.6 no.24 >Deformable registration for integration of MRI/MRSI information in TRUS-guided prostate biopsy
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Deformable registration for integration of MRI/MRSI information in TRUS-guided prostate biopsy

机译:在TRUS引导的前列腺活检中整合MRI / MRSI信息的可变形配准

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Prostate cancer has been ranked as the second leading cause of cancer death in men. The existence of cancer in prostate is usually examined by a biopsy procedure under the transrectal ultrasound (TRUS) guidance. Development of a prostate biopsy robotics can alleviate urologists' labor and guarantee accuracy. However, it is usually impossible to identify cancer region in the noisy ultrasound images, thus leading to a random biopsy protocol for prostate. It is being recognized that Magnetic Resonance Imaging (MRI) and Magnetic Resonance Spectroscopy Imaging (MRSI) techniques are potential to diagnose cancer distribution in prostate. So navigating the biopsy needle towards those cancer-suspected sites could improve the cancer detection rate and reduce the possibility of false negative diagnosis results. As the prostate usually deforms under the different rectal filling of probes and change of patient postures, a deformable registration scheme is implemented for the integration of the pre-operative MRI/MRSI information with the intra-operative TRUS images. A framework including a global rigid alignment and a sequent non-rigid transformation was described in this paper to match the cross-modal prostate surfaces and thereafter their volumes. For validation, an elastic prostate phantom that simulated the human condition was built up, with fiducial markers implanted inside the phantom prostate as the "ground truth". It shows that our method can achieve at least 30% improvement in accuracy compared with an affme transformation. Preliminary study was also conducted on patient data but with visual assessments presented only due to the current lack of "ground truth".
机译:前列腺癌已被列为男性癌症死亡的第二大主要原因。前列腺癌的存在通常通过在直肠超声(TRUS)指导下进行活检来检查。前列腺活检机器人技术的发展可以减轻泌尿科医师的劳动并保证准确性。但是,通常不可能在嘈杂的超声图像中识别出癌区域,从而导致对前列腺进行随机活检。公认的是,磁共振成像(MRI)和磁共振波谱成像(MRSI)技术具有诊断前列腺癌的潜力。因此,将活检针导引至那些可疑癌症的位置可以提高癌症检出率,并减少假阴性诊断结果的可能性。由于前列腺通常在不同的直肠探针填充下变形并改变患者的姿势,因此实施了可变形的配准方案,以将术前MRI / MRSI信息与术中TRUS图像整合在一起。本文描述了一个框架,该框架包括整体刚性对齐和随后的非刚性转换,以匹配交叉模式前列腺表面及其体积。为了进行验证,建立了模拟人体状况的弹性前列腺体模,并将基准标记植入体模前列腺内作为“地面真相”。结果表明,与亲和变换相比,我们的方法可以将精度提高至少30%。还对患者数据进行了初步研究,但仅由于当前缺乏“基本事实”而进行了视觉评估。

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