Song Hongning, Zhou Qing, Zhang Lan, Deng Qing, Wang Yijia, Hu Bo, Tan Tuantuan, Chen Jinling, Pan Yiteng, He Fazhi
Department of Ultrasound Imaging, Renmin Hospital of Wuhan University Computer Science and Technology School, Wuhan University, Wuhan, China.
Medicine (Baltimore). 2017 Sep;96(38):e7865. doi: 10.1097/MD.0000000000007865.
The novel 3-dimensional printing (3DP) technique has shown its ability to assist personalized cardiac intervention therapy. This study aimed to determine the feasibility of 3D-printed left atrial appendage (LAA) models based on 3D transesophageal echocardiography (3D TEE) data and their application value in treating LAA occlusions.Eighteen patients with transcatheter LAA occlusion, and preprocedure 3D TEE and cardiac computed tomography were enrolled. 3D TEE volumetric data of the LAA were acquired and postprocessed for 3DP. Two types of 3D models of the LAA (ie, hard chamber model and flexible wall model) were printed by a 3D printer. The morphological classification and lobe identification of the LAA were assessed by the 3D chamber model, and LAA dimensions were measured via the 3D wall model. Additionally, a simulation operative rehearsal was performed on the 3D models in cases of challenging LAA morphology for the purpose of understanding the interactions between the device and the model.Three-dimensional TEE volumetric data of the LAA were successfully reprocessed and printed as 3D LAA chamber models and 3D LAA wall models in all patients. The consistency of the morphological classifications of the LAA based on 3D models and cardiac computed tomography was 0.92 (P < .01). The differences between the LAA ostium dimensions and depth measured using the 3D models were not significant from those measured on 3D TEE (P > .05). A simulation occlusion was successfully performed on the 3D model of the 2 challenging cases and compared with the real procedure.The echocardiographic 3DP technique is feasible and accurate in reflecting the spatial morphology of the LAA, which may be promising for the personalized planning of transcatheter LAA occlusion.
新型三维打印(3DP)技术已显示出其辅助个性化心脏介入治疗的能力。本研究旨在确定基于三维经食管超声心动图(3D TEE)数据的三维打印左心耳(LAA)模型的可行性及其在治疗LAA闭塞中的应用价值。纳入18例接受经导管LAA闭塞治疗的患者,术前进行3D TEE和心脏计算机断层扫描。采集LAA的3D TEE容积数据并进行后处理以用于3DP。通过3D打印机打印两种类型的LAA三维模型(即硬腔模型和柔性壁模型)。通过三维腔模型评估LAA的形态分类和叶识别,并通过三维壁模型测量LAA尺寸。此外,对于LAA形态具有挑战性的病例,在三维模型上进行模拟手术预演,以了解器械与模型之间的相互作用。所有患者的LAA三维TEE容积数据均成功重新处理并打印为三维LAA腔模型和三维LAA壁模型。基于三维模型的LAA形态分类与心脏计算机断层扫描的一致性为0.92(P <0.01)。使用三维模型测量的LAA口尺寸和深度与在3D TEE上测量的结果之间的差异不显著(P> 0.05)。对2例具有挑战性的病例的三维模型成功进行了模拟闭塞,并与实际手术进行了比较。超声心动图3DP技术在反映LAA的空间形态方面是可行且准确的,这对于经导管LAA闭塞的个性化规划可能具有前景。