Department of Radiology, Mayo Clinic, Rochester, Minnesota, USA.
J Magn Reson Imaging. 2012 Oct;36(4):933-42. doi: 10.1002/jmri.23714. Epub 2012 Jun 4.
To assess the performance of a recently developed 3D time-resolved CE-MRA technique, Cartesian Acquisition with Projection-Reconstruction-like sampling (CAPR), for accurate characterization and treatment planning of vascular malformations of the periphery.
Twelve patient studies were performed (eight female, four male; average age, 33 years). The protocol consisted of three-dimensional (3D) time-resolved CE-MRA followed by a single late phase T1-weighted acquisition. Vascular malformations were imaged in the forearm, hand, thigh, and foot. Imaging evaluation was performed for accurate characterization of lesion type, identification of feeding and draining vessels, involvement with surrounding tissue, overall quality for diagnosis and treatment planning, and correlation with conventional angiography.
Time-resolved CE-MRA allowed for characterization of malformation flow and type. Feeding and draining vessels were identified in all cases. Overall quality for diagnosis and treatment planning was 3.58/4.0, and correlation with conventional angiography was scored as 3.89/4.0.
The CAPR time series has been shown to portray the temporal dynamics and structure of vascular malformations as well as the normal vasculature with high quality. CAPR time-resolved imaging is able to accurately characterize high and low flow lesions, allowing for pretreatment lesion assessment and treatment planning. Delayed imaging is important to capture complete filling of very slow flow vascular malformations.
评估一种新开发的 3D 时间分辨 CE-MRA 技术(笛卡尔采集与投影重建样采样,CAPR)在准确描述和治疗外周血管畸形方面的性能。
对 12 例患者进行了研究(8 例女性,4 例男性;平均年龄 33 岁)。该方案包括三维(3D)时间分辨 CE-MRA 后进行单次晚期 T1 加权采集。在手前臂、手、大腿和脚成像血管畸形。进行成像评估以准确描述病变类型、识别供血和引流血管、与周围组织的关系、诊断和治疗计划的整体质量,以及与常规血管造影的相关性。
时间分辨 CE-MRA 能够对畸形的血流和类型进行特征描述。在所有病例中均识别到供血和引流血管。诊断和治疗计划的整体质量评分为 3.58/4.0,与常规血管造影的相关性评分为 3.89/4.0。
CAPR 时间序列已被证明能够以高质量描绘血管畸形的时间动态和结构以及正常血管。CAPR 时间分辨成像能够准确描述高流量和低流量病变,有助于治疗前病变评估和治疗计划。延迟成像对于捕获非常缓慢的血流血管畸形的完全填充非常重要。