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开源 Horos 软件在浅表性脑动静脉畸形中的术前规划应用。

Presurgical Planning with Open-Source Horos Software for Superficial Brain Arteriovenous Malformations.

机构信息

Department of Neurosurgery and Stanford Stroke Center, Stanford University School of Medicine and Stanford Health Care, Stanford, California, USA; Department of Neurosurgery, Hospital das Clinicas of University of São Paulo Medical School, São Paulo, Brazil.

Department of Neurosurgery and Stanford Stroke Center, Stanford University School of Medicine and Stanford Health Care, Stanford, California, USA.

出版信息

World Neurosurg. 2022 Jan;157:3-12. doi: 10.1016/j.wneu.2021.09.081. Epub 2021 Sep 25.

Abstract

BACKGROUND

Surgical planning for treating brain arteriovenous malformations (bAVMs) is challenging because it entails visualizing 3-dimensional (3D) relationships between the nidus, its feeding and en passage arteries, and draining veins. Surgical experience in developing the capacity to mentally visualize pathological bAVM angioarchitecture could be complemented by this software, and thus potentially lower the steep learning curve for understanding complex bAVM angioarchitecture. We evaluated the clinical application of freely available online 3D reconstruction software in facilitating visualization of AVM angioarchitecture for presurgical planning.

METHODS

Preoperative Digital Imaging and Communications in Medicine magnetic resonance imaging/magnetic resonance angiography images of 56 superficial bAVMs from 2013 to 2018 were processed using open-source software Horos. 3D rendered images were compared with the surgical view to evaluate software accuracy and determine its value as a preoperative tool. 3D reconstructed images were compared with intraoperative recordings.

RESULTS

A useful image identifying both the main feeding artery and draining vein was achieved in 35 of 56 cases (62.5%). Reconstructions of small AVMs (nidus ≤2 cm) and those located within the temporal or cerebellar cortex were less useful due to soft tissue artifacts. Frontal and parietal lobe lesions had significantly higher rates of identifying feeding arteries and draining veins (P < 0.05).

CONCLUSION

Presurgical planning for resection of superficial bAVMs using Horos software allows for a comprehensive 3D analysis of the bAVM angioarchitecture. This technique is most useful for frontal and parietal lobe lesions, and aids the surgeon in formulating an optimal surgical strategy. The 3D reconstruction of the brain surface offers a surgical map not influenced by brain shift.

摘要

背景

治疗脑动静脉畸形(bAVM)的手术规划具有挑战性,因为它需要可视化病灶、供血动脉和过路动脉以及引流静脉之间的三维(3D)关系。开发通过软件来想象病理性 bAVM 血管构筑的能力的手术经验可能会得到这种软件的补充,从而可能降低理解复杂 bAVM 血管构筑的陡峭学习曲线。我们评估了免费在线 3D 重建软件在促进术前规划中 AVM 血管构筑可视化方面的临床应用。

方法

使用开源软件 Horos 处理 2013 年至 2018 年间的 56 例浅层 bAVM 的术前数字成像和通信医学磁共振成像/磁共振血管造影图像。将 3D 渲染图像与手术视图进行比较,以评估软件的准确性,并确定其作为术前工具的价值。将 3D 重建图像与术中记录进行比较。

结果

在 56 例病例中有 35 例(62.5%)可以获得有用的图像,可识别主要供血动脉和引流静脉。由于软组织伪影,小 AVM(病灶≤2cm)和位于颞叶或小脑皮质内的 AVM 重建效果较差。额叶和顶叶病变识别供血动脉和引流静脉的比例明显较高(P<0.05)。

结论

使用 Horos 软件对浅层 bAVM 进行切除的术前规划允许对 bAVM 血管构筑进行全面的 3D 分析。该技术对额叶和顶叶病变最有用,并有助于外科医生制定最佳手术策略。脑表面的 3D 重建提供了不受脑移位影响的手术图谱。

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