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在体外血管模型中评估血管内支架对搏动性血流的影响:对神经血管压迫综合征未来治疗的潜在意义。

Evaluating Changes in Pulsatile Flow With Endovascular Stents in an In Vitro Blood Vessel Model: Potential Implications for the Future Management of Neurovascular Compression Syndromes.

作者信息

Siddiqi Imran, Brazdzionis James, Hough Jordan M, Reier Louis, Marino Maxwell, Ko Katherine, Schiraldi Michael, Cortez Vladimir, Miulli Dan E

机构信息

Neurosurgery, Riverside University Health System Medical Center, Moreno Valley, USA.

Neurosurgery, Arrowhead Regional Medical Center, Colton, USA.

出版信息

Cureus. 2024 May 7;16(5):e59811. doi: 10.7759/cureus.59811. eCollection 2024 May.

Abstract

BACKGROUND

Neurovascular compression syndromes (NVCS), encompassing conditions such as trigeminal neuralgia, hemifacial spasm, and glossopharyngeal neuralgia, significantly impair patient quality of life through abnormal vascular compression and micro-pulsation of vasculature on cranial nerves at the Obersteiner-Redlich zone. The modulation of pulsatile flow dynamics via endovascular stents presents a novel research frontier for alleviating these syndromes.

AIM

The primary aim of this investigation was to delineate the impact of various endovascular stents on pulsatile flow within an in vitro model of a blood vessel, thereby elucidating their potential applicability in the therapeutic management of NVCS.

MATERIALS AND METHODS

A simple in vitro analog of a posterior circulation artery was developed, employing an intravenous pump to replicate cardiac-induced blood flow. Within this model, alterations in pulsatile flow were quantitatively assessed following the introduction of three categorically distinct endovascular stents, varying in size. This assessment was facilitated through the employment of both micro-Doppler and Doppler ultrasound methodologies.

RESULTS

The Pipeline 5x35 mm stent (Medtronic, Minneapolis, MN) demonstrated the most significant reductions in peak systolic velocity (Vmax) and pulsatility index (PI), PI especially over the stent, suggesting its potential for drastically altering blood flow dynamics. Similarly, Neuroform Atlas 4.5x30 mm and Neuroform Atlas 4x24 mm stents (Stryker, Kalamazoo, MI) also showed notable decreases in hemodynamic parameters, albeit to different extents. Statistical analysis confirmed that these changes were significantly different from the control (P < 0.0001 for PI and Vmax; P < 0.05 for inter-stent comparisons), except for proximal PI means, which did not significantly differ from the control (P = 0.2777).

CONCLUSION

These findings affirm the potential of endovascular stents to substantially modulate arterial pulsatility. The observed decrease in pulsatile flow resultant from endovascular stent application has the potential to attenuate ectopic nerve excitation, a hallmark of NVCS. Consequently, this research highlights the prospective utility of endovascular stents in developing minimally invasive therapeutic approaches for NVCS.

摘要

背景

神经血管压迫综合征(NVCS),包括三叉神经痛、面肌痉挛和舌咽神经痛等病症,通过血管在奥伯施泰纳 - 雷德利希区对颅神经的异常压迫和微脉动,严重损害患者生活质量。通过血管内支架调节脉动血流动力学为缓解这些综合征提供了一个新的研究前沿。

目的

本研究的主要目的是描述各种血管内支架对血管体外模型中脉动血流的影响,从而阐明它们在NVCS治疗管理中的潜在适用性。

材料和方法

开发了一种简单的后循环动脉体外模拟模型,使用静脉泵来复制心脏诱导的血流。在该模型中,引入三种尺寸不同的类别分明的血管内支架后,通过微多普勒和多普勒超声方法定量评估脉动血流的变化。

结果

Pipeline 5x35 mm支架(美敦力公司,明尼阿波利斯,明尼苏达州)在收缩期峰值速度(Vmax)和搏动指数(PI)方面表现出最显著的降低,尤其是在支架上方的PI,表明其具有大幅改变血流动力学的潜力。同样,Neuroform Atlas 4.5x30 mm和Neuroform Atlas 4x24 mm支架(史赛克公司,卡拉马祖,密歇根州)也显示出血流动力学参数有显著下降,尽管程度不同。统计分析证实这些变化与对照组有显著差异(PI和Vmax的P < 0.0001;支架间比较的P < 0.05),除了近端PI平均值与对照组无显著差异(P = 0.2777)。

结论

这些发现证实了血管内支架显著调节动脉搏动性的潜力。血管内支架应用导致的脉动血流减少有可能减弱异位神经兴奋,这是NVCS的一个标志。因此,本研究突出了血管内支架在开发NVCS微创治疗方法方面的潜在效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8703/11155711/f8108ab5f64d/cureus-0016-00000059811-i01.jpg

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