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基于分形学的脑动静脉畸形血管构筑的计算分析

Computational fractal-based analysis of brain arteriovenous malformation angioarchitecture.

作者信息

Di Ieva Antonio, Niamah Marzia, Menezes Ravi J, Tsao May, Krings Timo, Cho Young-Bin, Schwartz Michael L, Cusimano Michael D

机构信息

*Division of Neurosurgery, St. Michael's Hospital, University of Toronto, Toronto, Ontario, Canada; ‡University of Toronto, Toronto, Ontario, Canada; §Division of Neuroradiology, Toronto Western Hospital, Toronto, Ontario, Canada; ‖Department of Radiation Oncology, Odette Cancer Centre, Toronto, Ontario, Canada; ¶Department of Radiation Oncology, Princess Margaret Cancer Centre, Toronto, Ontario, Canada; #Division of Neurosurgery, Sunnybrook Health Sciences Centre, Toronto, Ontario, Canada.

出版信息

Neurosurgery. 2014 Jul;75(1):72-9. doi: 10.1227/NEU.0000000000000353.

Abstract

BACKGROUND

Neuroimaging is the gold standard for diagnosis and follow-up of brain arteriovenous malformations (bAVMs), but no objective parameter has been validated for the assessment of the nidus angioarchitecture and for prognostication following treatment. The fractal dimension (FD), which is a mathematical parameter able to quantify the space-filling properties and roughness of natural objects, may be useful in quantifying the geometrical complexity of bAVMs nidus.

OBJECTIVE

To propose FD as a neuroimaging biomarker of the nidus angioarchitecture, which might be related to radiosurgical outcome.

METHODS

We retrospectively analyzed 54 patients who had undergone stereotactic radiosurgery for the treatment of bAVMs. The quantification of the geometric complexity of the vessels forming the nidus, imaged in magnetic resonance imaging, was assessed by means of the box-counting method to obtain the fractal dimension.

RESULTS

FD was found to be significantly associated with the size (P = .03) and volume (P < .001) of the nidus, in addition to several angioarchitectural parameters. A nonsignificant association between clinical outcome and FD was observed (area under the curve, 0.637 [95% confidence interval, 0.49-0.79]), indicative of a potential inverse relationship between FD and bAVM obliteration.

CONCLUSION

In our exploratory methodological research, we showed that the FD is an objective computer-aided parameter for quantifying the geometrical complexity and roughness of the bAVM nidus. The results suggest that more complex bAVM angioarchitecture, having higher FD values, might be related to decreased response to radiosurgery and that the FD of the bAVM nidus could be used as a morphometric neuroimaging biomarker.

摘要

背景

神经影像学是诊断和随访脑动静脉畸形(bAVM)的金标准,但尚未有客观参数被证实可用于评估病灶血管构筑及治疗后的预后。分形维数(FD)是一种能够量化自然物体空间填充特性和粗糙度的数学参数,可能有助于量化bAVM病灶的几何复杂性。

目的

提出将FD作为病灶血管构筑的神经影像学生物标志物,其可能与放射外科治疗结果相关。

方法

我们回顾性分析了54例接受立体定向放射外科治疗bAVM的患者。通过盒计数法评估磁共振成像中构成病灶的血管几何复杂性,以获得分形维数。

结果

除了几个血管构筑参数外,发现FD与病灶大小(P = 0.03)和体积(P < 0.001)显著相关。观察到临床结果与FD之间存在不显著的关联(曲线下面积,0.637 [95%置信区间,0.49 - 0.79]),表明FD与bAVM闭塞之间可能存在负相关关系。

结论

在我们的探索性方法学研究中,我们表明FD是用于量化bAVM病灶几何复杂性和粗糙度的客观计算机辅助参数。结果表明,具有较高FD值的更复杂的bAVM血管构筑可能与放射外科治疗反应降低有关,并且bAVM病灶的FD可作为形态学神经影像学生物标志物。

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