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首页> 外文期刊>Journal of Thermal Biology >Finite element modeling of haptic thermography: A novel approach for brain tumor detection during minimally invasive neurosurgery
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Finite element modeling of haptic thermography: A novel approach for brain tumor detection during minimally invasive neurosurgery

机译:触觉热成像的有限元建模:微创神经外科手术中脑肿瘤检测的新方法

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Intraoperative Thermal Imaging (ITI) is a novel neuroimaging method that can potentially locate tissue abnormalities and hence improves surgeon's diagnostic ability. In the present study, thermography technique coupled with artificial tactile sensing method called "haptic thermography" is utilized to investigate the presence of an abnormal object as a tumor with an elevated temperature relative to the normal tissue in the brain. The brain tissue is characterized as a hyper-viscoelastic material to be descriptive of mechanical behavior of the brain tissue during tactile palpation. Based on a finite element approach, Magnetic Resonance Imaging (MRI) data of a patient diagnosed to have a brain tumor is utilized to simulate and analyze the capability of haptic thermography in detection and localization of brain tumor. Steady-state thermal results prove that temperature distribution is an appropriate outcome of haptic thermography for the superficial tumors while heat flux distribution can be used as an extra thermal result for deeply located tumors. (C) 2015 Elsevier Ltd. All rights reserved.
机译:术中热成像(ITI)是一种新型的神经成像方法,可以潜在地定位组织异常,从而提高外科医生的诊断能力。在本研究中,热成像技术与称为“触觉热成像”的人工触觉传感方法相结合,用于研究相对于大脑正常组织而言温度升高的肿瘤异常对象的存在。脑组织的特征是一种高粘弹性材料,可描述触觉时脑组织的机械行为。基于有限元方法,利用被诊断患有脑肿瘤的患者的磁共振成像(MRI)数据来模拟和分析触觉热成像在脑肿瘤检测和定位中的能力。稳态热结果证明温度分布是表面肿瘤触觉热成像的合适结果,而热通量分布可以用作深部肿瘤的额外热结果。 (C)2015 Elsevier Ltd.保留所有权利。

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