如何为科学研究对猪进行 TEVAR:将人类 TEVAR 技术转化到大型动物实验室的技术、解剖和设备考虑因素。

IF 1 4区 医学 Q4 PERIPHERAL VASCULAR DISEASE
Vascular Pub Date : 2024-08-01 Epub Date: 2023-03-07 DOI:10.1177/17085381231162121
David P Stonko, Rebecca N Treffalls, Joseph Edwards, Hossam Abdou, Eric Lang, Daniel C Stonko, Pierce Cullen, Caitlin W Hicks, Jonathan J Morrison
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引用次数: 0

摘要

目的:胸腔内血管主动脉修复术(TEVAR)已在人类中得到广泛应用。尽管应用广泛,但有关胸主动脉支架植入和血管内创新的其他研究问题仍需要大型动物模型。然而,将人类 TEVAR 设备和技术转化为动物模型是一项挑战,即使是对于希望开发大型动物 TEVAR 模型的经验丰富的血管内外科医生来说也是如此。本文介绍了部署人类 TEVAR 支架移植物的猪专用策略,阐述了如何在猪体内选择、确定尺寸、准备和重复使用人类支架和部署系统,以及如何将人类成像模式转化为大型动物 TEVAR:方法:我们介绍了在约克郡猪身上选择的相关 TEVAR 模型和技术,以支持科学研究。其中包括动物饲养、术前准备和计划方案。本文中所有成像标本均为体重在 60-80 公斤范围内的阉割雄性约克夏猪,并使用美敦力 Navion 支架和部署系统进行了 TEVAR:要在猪身上研究人类的主动脉支架移植物,动物体重一般必须至少达到 50 千克,以保证左锁骨下主动脉内径达到 2 厘米,髂动脉也能适应人类的部署系统。与相同体重的人类相比,猪的躯干较长,髂股骨段较短,这可能导致人类的展开系统太短,无法从较大动物的股动脉到达左锁骨下。我们提供了克服这一问题的技术,包括开放式髂动脉入路或倒置颈动脉 TEVAR,如果髂股动脉入路会混淆科学数据,这些技术可能会特别有用。与临床上有轴向成像的人类不同,猪一般不会有术前成像,许多转化研究实验室无法获得廉价的术前 CT 或任何术中 CT 扫描,而我们有幸拥有这些技术。因此,我们介绍了在这种情况下进行成像的几种策略,包括通过 C 臂透视进行 TEVAR,以及进行或不进行实验室 CT 扫描。与人类杂交室相比,大多数大型动物实验室的资源较少,因此我们还介绍了几种降低成本和重复使用材料(包括支架移植物)的技术,在非存活实验结束时,可在尸体解剖时回收支架移植物,清洗后重新插入部署装置,并在其他动物身上重复使用:本文介绍了一系列将人类 TEVAR 成像、大小/选择、部署和解剖转化为猪研究的相关技术和技巧。仅使用此框架,经验丰富的人类血管或血管内外科医生就能开发出完整的主动脉支架植入动物模型,并制定科学数据采集策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How to TEVAR swine for scientific research: Technical, anatomic, and device considerations to translate human TEVAR techniques into the large animal laboratory.

Objective: Thoracic Endovascular Aortic Repair (TEVAR) is well established in humans. Despite widespread use, additional research questions related to thoracic aortic stenting and endovascular innovation require large animal models. Translating human TEVAR devices and techniques into animal models, however, is a challenge even for experienced endovascular surgeons looking to develop a large animal TEVAR model.This article describes swine-specific strategies to deploy human TEVAR stent grafts, delineate how to select, size, prepare, and re-use human stents and deployment systems in swine, and how to translate human imaging modalities to large animal TEVAR.

Methods: We describe a selection of related TEVAR models and techniques in Yorkshire swine to support scientific inquiry. This includes an animal husbandry and pre-operative preparation and planning program. All imaged specimens in this paper are castrated male Yorkshire swine in the 60-80 kg range and underwent TEVAR with the Medtronic Navion stent and deployment system.

Results: To study human aortic stent grafts in swine, the animals generally must be at least 50 kgs to guarantee a 2 cm internal aortic diameter at the left subclavian, and for the iliac arteries to accommodate the human deployment system. Swine will have longer torsos and shorter iliofemoral segments than a human of the same weight which can make human deployment systems too short to reach the left subclavian from the femoral arteries in larger animals. We provide techniques to overcome this, including open iliac access or upside-down carotid TEVAR, which may be particularly useful if the scientific data would be confounded by iliofemoral access.Unlike humans that present clinically with axial imaging, swine will generally not have preoperative imaging, and many translational research laboratories do not have access to inexpensive preoperative CT, or any intraoperative CT scanning, which we are fortunate to have. We describe, therefore, several strategies for imaging in this setting including TEVAR via C-arm fluoroscopy and with or without in-laboratory CT scanning. Due to the low-resource setting of most large animal laboratories, as compared to a human hybrid room, we also describe several techniques to reduce cost and reuse materials, including the stent grafts, which at the end of non-survival experiments can be recovered during necropsy, cleaned, reinserted into the deployment device and reused on additional animals.

Conclusions: This article describes a collection of related techniques and tips to translate human TEVAR imaging, sizing/selection, deployment, and anatomy to swine research. Using this framework alone, an experienced human vascular or endovascular surgeon may develop a complete aortic stenting animal model with strategies for scientific data acquisition.

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来源期刊
Vascular
Vascular 医学-外周血管病
CiteScore
2.30
自引率
9.10%
发文量
196
审稿时长
6-12 weeks
期刊介绍: Vascular provides readers with new and unusual up-to-date articles and case reports focusing on vascular and endovascular topics. It is a highly international forum for the discussion and debate of all aspects of this distinct surgical specialty. It also features opinion pieces, literature reviews and controversial issues presented from various points of view.
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