适形胸降主动脉内移植物在动脉瘤、夹层和钝性创伤性主动脉损伤患者中的搏动变形。

IF 1.7 2区 医学 Q3 PERIPHERAL VASCULAR DISEASE
Journal of Endovascular Therapy Pub Date : 2025-06-01 Epub Date: 2023-07-24 DOI:10.1177/15266028231187741
Christopher P Cheng, Ga-Young Suh, Sina L Moainie, Jordan R Stern, Wilson Y Szeto
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引用次数: 0

摘要

目的:本研究采用分析技术量化胸主动脉瘤(TAA)、夹层(TAD)和钝性胸主动脉损伤(BTAI)患者在胸血管内主动脉修复(TEVAR)后心脏搏动性引起的胸主动脉植入物变形。技术:我们分析了14例接受心脏门控tevar后ct治疗的TAA、TAD和BTAI患者的19个图像数据集。建立收缩期和舒张期几何模型,量化直径、轴向和弯曲变形。对于心脏门控术前扫描的患者,计算脉动直径扩张的阻尼。TAA、TAD和BTAI组的最大局部直径膨胀分别为2.4±1.0%、4.2±1.7%和5.5±1.6%,轴向变形分别为0.0±0.1%、-0.1±0.3%和1.1±0.6%。tevar前后的直径膨胀阻尼为~50%。直径和弯曲变形局限于内植骨的某些轴向位置,并且内曲线弯曲大于中心线,特别是在重叠区域附近。结论:所提出的技术支持研究多轴内移植物变形之间的疾病原因和设备上的几何位置。为了确定设备的疲劳试验条件和预测患者的设备耐久性,需要对变形进行离散量化。临床影响本研究展示了量化胸椎内移植物离散变形的分析技术。心脏分辨率的计算机断层扫描有时用于手术计划和随访,然而,动态数据通常不用于量化搏动变形。我们的分析技术在心脏周期中提取支架胸主动脉的中心线和表面几何形状,用于量化直径、轴向和弯曲变形,以便更好地了解设备的耐用性和对原始解剖结构的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pulsatile Deformations of a Conformable Descending Thoracic Aortic Endograft in Aneurysm, Dissection, and Blunt Traumatic Aortic Injury Patients.

Purpose: This study presents analytic techniques to quantify cardiac pulsatility-induced deformations of thoracic aortic endografts in patients with thoracic aortic aneurysm (TAA), dissection (TAD), and blunt thoracic aortic injury (BTAI) after thoracic endovascular aortic repair (TEVAR).

Technique: We analyzed 19 image data sets from 14 patients treated for TAA, TAD, and BTAI with cardiac-gated post-TEVAR CTs. Systolic and diastolic geometric models were constructed and diametric, axial, and bending deformations were quantified. For patients with cardiac-gated pre-op scans, the damping of pulsatile diametric distension was computed. Maximum localized diametric distension was 2.4±1.0%, 4.2±1.7%, and 5.5±1.6%, and axial deformation was 0.0±0.1%, -0.1±0.3%, and 1.1±0.6% in the endografts of TAA, TAD, and BTAI cohorts, respectively. Diametric distension damping from pre- to post-TEVAR was ~50%. Diametric and bending deformations were localized at certain axial positions on the endograft, and the inner curve bends more than the centerline, especially adjacent to overlapping regions.

Conclusion: The presented techniques support investigation of multi-axial endograft deformations between disease causes and geometric locations on the device. Discretized quantification of deformation is needed to define device fatigue testing conditions and predict device durability in patients.Clinical ImpactThis study demonstrates analytic techniques to quantify discretized deformation of thoracic endografts. Cardiac-resolved computed tomography is sometimes acquired for surgical planning and follow-up, however, the dynamic data are not typically used to quantify pulsatile deformations. Our analytic techniques extract the centerline and surface geometry of the stented thoracic aorta during the cardiac cycle, which are used to quantify diametric, axial, and bending deformations to provide better understanding of device durability and impact on the native anatomy.

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来源期刊
CiteScore
5.30
自引率
15.40%
发文量
203
审稿时长
6-12 weeks
期刊介绍: The Journal of Endovascular Therapy (formerly the Journal of Endovascular Surgery) was established in 1994 as a forum for all physicians, scientists, and allied healthcare professionals who are engaged or interested in peripheral endovascular techniques and technology. An official publication of the International Society of Endovascular Specialists (ISEVS), the Journal of Endovascular Therapy publishes peer-reviewed articles of interest to clinicians and researchers in the field of peripheral endovascular interventions.
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