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计算机模拟去充血试验对患有严重短头阻塞性气道综合征的斗牛犬呼吸功能受损的影响。

In-silico decongested trial effects on the impaired breathing function of a bulldog suffering from severe brachycephalic obstructive airway syndrome.

作者信息

Khoa Nguyen Dang, Phuong Nguyen Lu, Tani Kenji, Inthavong Kiao, Ito Kazuhide

机构信息

Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, 6-1, Kasuga-koen, Kasuga, Fukuoka 816-8580, Japan.

Faculty of Environment, University of Natural Resources and Environment, Ho Chi Minh, Viet Nam.

出版信息

Comput Methods Programs Biomed. 2023 Jan;228:107243. doi: 10.1016/j.cmpb.2022.107243. Epub 2022 Nov 13.

Abstract

BACKGROUND AND OBJECTIVE

Brachycephalic obstructive airway syndrome (BOAS) susceptible dogs (e.g., French bulldog), suffer health complications related to deficient breathing primarily due to anatomical airway geometry. Surgical interventions are known to provide acceptable functional and cosmetic results; however, the long-term post-surgery outcome is not well known. In silico analysis provides an objective measure to quantify the respiratory function in postoperative dogs which is critical for successful long-term outcomes. A virtual surgery to open the airway can explore the ability for improved breathing in an obstructed airway of a patient dog, thus supporting surgeons in pre-surgery planning using computational fluid dynamics.

METHODS

In this study five surgical interventions were generated with a gradual increment of decongested levels in a bulldog based on computed tomography images. The effects of the decongested airways on the breathing function of a patient bulldog, i.e., airflow characteristics, pressure drop, wall shear stress, and air-conditioning capacity, were quantified by benchmarking against a clinically healthy bulldog using computational fluid dynamics (CFD) method.

RESULTS

Our findings demonstrated a promising decrease in excessive airstream velocity, pressure drop, and wall shear stress in virtual surgical scenarios, while constantly preserving adequate air-conditioning efficiency. A linear fit curve was proposed to correlate the reduction in the pressure drop and decongested level.

CONCLUSIONS

The in silico analysis is a viable tool providing visual and quantitative insight into new unexplored surgical techniques.

摘要

背景与目的

短头阻塞性气道综合征(BOAS)易感犬(如法国斗牛犬),主要由于气道解剖结构导致呼吸功能不足而出现健康并发症。已知手术干预可提供可接受的功能和美容效果;然而,术后长期结果尚不清楚。计算机模拟分析提供了一种客观方法来量化术后犬的呼吸功能,这对长期成功结果至关重要。虚拟气道开放手术可以探究改善患病犬阻塞气道呼吸的能力,从而在术前规划中通过计算流体动力学为外科医生提供支持。

方法

在本研究中,基于计算机断层扫描图像,对一只斗牛犬进行了五种手术干预,逐步增加气道疏通程度。通过使用计算流体动力学(CFD)方法与临床健康的斗牛犬进行对比,量化了气道疏通对患病斗牛犬呼吸功能的影响,即气流特性、压降、壁面剪应力和空气调节能力。

结果

我们的研究结果表明,在虚拟手术场景中,气流速度、压降和壁面剪应力显著降低,同时始终保持足够的空气调节效率。提出了一条线性拟合曲线来关联压降降低与气道疏通程度。

结论

计算机模拟分析是一种可行的工具,能为新的未探索手术技术提供直观和定量的见解。

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