Evaluation of the Efficacy and Accuracy of Super-Flexible Three-Dimensional Heart Models of Congenital Heart Disease Made via Stereolithography Printing and Vacuum Casting: A Multicenter Clinical Trial.

IF 2.4 4区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS Journal of Cardiovascular Development and Disease Pub Date : 2024-12-03 DOI:10.3390/jcdd11120387
Isao Shiraishi, Masaaki Yamagishi, Takaya Hoashi, Yoshiaki Kato, Shigemitsu Iwai, Hajime Ichikawa, Tatsuya Nishii, Hiroyuki Yamagishi, Satoshi Yasukochi, Masaaki Kawada, Takaaki Suzuki, Takeshi Shinkawa, Naoki Yoshimura, Ryo Inuzuka, Yasutaka Hirata, Keiichi Hirose, Akio Ikai, Kisaburo Sakamoto, Yasuhiro Kotani, Shingo Kasahara, Toshiaki Hisada, Kenichi Kurosaki
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Abstract

Three-dimensional (3D) printing is an advanced technology for accurately understanding anatomy and supporting the successful surgical management of complex congenital heart disease (CHD). We aimed to evaluate whether our super-flexible 3D heart models could facilitate preoperative decision-making and surgical simulation for complex CHD. The super-flexible heart models were fabricated by stereolithography 3D printing of the internal and external contours of the heart from cardiac computed tomography (CT) data, followed by vacuum casting with a polyurethane material similar in elasticity to a child's heart. Nineteen pediatric patients with complex CHD were enrolled (median age, 10 months). The primary endpoint was defined as the percentage of patients rated as "essential" on the surgeons' postoperative 5-point Likert scale. The accuracy of the models was validated by a non-destructive method using industrial CT. The super-flexible heart models allowed detailed anatomical diagnosis and simulated surgery with incisions and sutures. Thirteen patients (68.4%) were classified as "essential" by the primary surgeons after surgery, with a 95% confidence interval of 43.4-87.4%, meeting the primary endpoint. The product error within 90% of the total external and internal surfaces was 0.54 ± 0.21 mm. The super-flexible 3D heart models are accurate, reliable, and useful tools to assist surgeons in decision-making and allow for preoperative simulation in CHD.

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用立体光刻印刷和真空铸造制作先天性心脏病超柔性三维心脏模型的疗效和准确性评价:一项多中心临床试验。
三维(3D)打印是一项先进的技术,可以准确地理解解剖结构,并支持复杂先天性心脏病(CHD)的成功手术治疗。我们的目的是评估我们的超柔性3D心脏模型是否有助于复杂冠心病的术前决策和手术模拟。超柔性心脏模型是通过立体光刻3D打印心脏的内部和外部轮廓,然后用类似于儿童心脏弹性的聚氨酯材料真空铸造而成的。19例合并复杂冠心病的儿童患者入组(中位年龄为10个月)。主要终点定义为外科医生术后5点李克特量表中被评为“必要”的患者的百分比。通过工业CT的非破坏性方法验证了模型的准确性。超灵活的心脏模型允许详细的解剖诊断和模拟手术切口和缝合线。13例(68.4%)患者术后被主要外科医生分类为“必要”,95%可信区间为43.4-87.4%,满足主要终点。产品内外表面总误差在90%以内为0.54±0.21 mm。超灵活的3D心脏模型是准确、可靠和有用的工具,可以帮助外科医生做出决策,并允许对冠心病进行术前模拟。
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来源期刊
Journal of Cardiovascular Development and Disease
Journal of Cardiovascular Development and Disease CARDIAC & CARDIOVASCULAR SYSTEMS-
CiteScore
2.60
自引率
12.50%
发文量
381
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