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首页> 外文期刊>Medical Imaging, IEEE Transactions on >Volumetric Intraoperative Brain Deformation Compensation: Model Development and Phantom Validation
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Volumetric Intraoperative Brain Deformation Compensation: Model Development and Phantom Validation

机译:术中容积性脑变形补偿:模型开发和幻影验证

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摘要

During neurosurgery, nonrigid brain deformation may affect the reliability of tissue localization based on preoperative images. To provide accurate surgical guidance in these cases, preoperative images must be updated to reflect the intraoperative brain. This can be accomplished by warping these preoperative images using a biomechanical model. Due to the possible complexity of this deformation, intraoperative information is often required to guide the model solution. In this paper, a linear elastic model of the brain is developed to infer volumetric brain deformation associated with measured intraoperative cortical surface displacement. The developed model relies on known material properties of brain tissue, and does not require further knowledge about intraoperative conditions. To provide an initial estimation of volumetric model accuracy, as well as determine the model's sensitivity to the specified material parameters and surface displacements, a realistic brain phantom was developed. Phantom results indicate that the linear elastic model significantly reduced localization error due to brain shift, from > 16 mm to under 5 mm, on average. In addition, though in vivo quantitative validation is necessary, preliminary application of this approach to images acquired during neocortical epilepsy cases confirms the feasibility of applying the developed model to in vivo data.
机译:在神经外科手术期间,基于术前图像,非刚性脑变形可能会影响组织定位的可靠性。为了在这些情况下提供准确的手术指导,必须更新术前图像以反映术中大脑。这可以通过使用生物力学模型使这些术前图像变形来实现。由于这种变形的可能复杂性,通常需要术中信息来指导模型求解。在本文中,开发了大脑的线性弹性模型,以推断与测量的术中皮质表面移位相关的体积性大脑变形。所开发的模型依赖于脑组织的已知物质特性,不需要进一步了解术中状况。为了提供对体积模型准确性的初步估计,并确定模型对指定材料参数和表面位移的敏感性,开发了一种逼真的脑模型。幻影结果表明,线性弹性模型可显着降低因脑部移动而导致的定位误差,平均从16毫米以下到5毫米以下。此外,尽管必须进行体内定量验证,但这种方法在新皮质癫痫病例中获得的图像的初步应用证实了将开发的模型应用于体内数据的可行性。

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