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Ex vivo assessment of the optical characteristics of human brain and tumour tissue

机译:人脑和肿瘤组织光学特性的离体评估

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Emerging optical imaging techniques such as hyperspectral imaging (HSI) provide a promising non-invasive solution forintraoperative tissue characterisation with the potential to provide rich tissue-differentiation information over the entiresurgical field. Neuro-oncology surgery would especially benefit from detailed real-time in vivo tissue characterisation,improving the accuracy with which boundaries of safe surgical resection are delineated and thereby improving patientoutcomes. Current systems are limited by challenges with processing the HSI data because of incomplete characterisationof the optical properties of tissue across the complete visible and near-infrared wavelength spectrum. In this study, wecharacterised the optical properties of various freshly-excised brain tumours and normal cadaveric human brain tissueusing a dual-beam integrating sphere spectrophotometer and the inverse adding-doubling technique. We adapted anintegrating sphere to analyse 2 mm-thick tissue samples measuring 4 – 7 mm in diameter and validated the experimentalsetup with a tissue-mimicking optical phantom. We investigated the different spectral signatures of freshly-excised tumourtissues including pituitary adenoma, meningioma and vestibular schwannoma and compared these to normal grey andwhite matter, pons, pituitary, dura and cranial nerve tissues across the wavelength range of 400 – 1800 nm. It was foundthat brain and tumour tissues could be differentiated by their optical properties but the freezing process did alter the tissues’relative absorption and reduced scattering coefficients. In this work, we have demonstrated a method to characterise theoptical properties of small human brain and tumour specimens that may be used as a reference dataset for developingoptical imaging techniques.
机译:诸如高光谱成像(HSI)之类的新兴光学成像技术为 术中组织表征,有可能在整个过程中提供丰富的组织分化信息 外科领域。神经肿瘤外科将特别受益于详细的实时体内组织表征, 提高划定安全手术切除范围的准确性,从而改善患者 结果。由于表征不完整,当前系统受到处理HSI数据的挑战的限制 整个可见光和近红外波长光谱中组织光学特性的变化。在这项研究中,我们 表征了各种新鲜切除的脑肿瘤和正常尸体人脑组织的光学特性 使用双光束积分球分光光度计和反向加倍技术。我们改编了 积分球分析2毫米厚的组织样本,直径为4 – 7毫米,并验证了实验结果 带有模仿组织的光学模型的装置。我们研究了新鲜切除肿瘤的不同光谱特征 组织,包括垂体腺瘤,脑膜瘤和前庭神经鞘瘤,并将其与正常的灰色和 在400 – 1800 nm波长范围内的白质,脑桥,垂体,硬脑膜和颅神经组织。它被找到了 脑和肿瘤组织的光学特性可以区分,但冷冻过程确实改变了组织的 相对吸收和降低的散射系数。在这项工作中,我们展示了一种表征特征的方法 小型人脑和肿瘤标本的光学特性可用作开发的参考数据集 光学成像技术。

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