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首页> 外文期刊>Analytical chemistry >Real Time Analysis of Brain Tissue by Direct Combination of Ultrasonic Surgical Aspiration and Sonic Spray Mass Spectrometry
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Real Time Analysis of Brain Tissue by Direct Combination of Ultrasonic Surgical Aspiration and Sonic Spray Mass Spectrometry

机译:超声手术抽吸与超声喷雾质谱直接结合​​对大脑组织的实时分析

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摘要

Direct combination of cavitron ultrasonic surgical aspirator (CUSA) and sonic spray ionization mass spectrometry is presented. A commercially available ultrasonic surgical device was coupled to a Venturi easy ambient sonic-spray ionization (V-EASI) source by directly introducing liquified tissue debris into the Venturi air jet pump. The Venturi air jet pump was found to efficiently nebulize the suspended tissue material for gas phase ion production. The ionization mechanism involving solely pneumatic spraying was associated with that of sonic spray ionization. Positive and negative ionization spectra were obtained from brain and liver samples reflecting the primary application areas of the surgical device. Mass spectra were found to feature predominantly complex lipid-type constituents of tissues in both ion polarity modes. Multiply charged peptide anions were also detected. The influence of instrumental settings was characterized in detail. Venturi pump geometry and flow parameters were found to be critically important in ionization efficiency. Standard solutions of phospholipids and peptides were analyzed in order to test the dynamic range, sensitivity, and suppression effects. The spectra of the intact tissue specimens were found to be highly specific to the histological tissue type. The principal component analysis (PCA) and linear discriminant analysis (LDA) based data analysis method was developed for real-time tissue identification in a surgical environment. The method has been successfully tested on post-mortem and ex vivo human samples including astrocytomas, meningeomas, metastatic brain tumors, and healthy brain tissue.
机译:介绍了航空电子超声外科手术吸气器(CUSA)与声波喷雾电离质谱仪的直接结合。通过将液化的组织碎片直接引入文丘里空气喷射泵中,将可商购的超声外科手术设备连接到文丘里简易环境声波喷雾电离(V-EASI)源。发现文丘里空气喷射泵可有效雾化悬浮的组织材料以产生气相离子。仅涉及气动喷涂的电离机理与声音喷涂电离的机理有关。从脑和肝样品中获得正离子和负离子光谱,反映了该手术设备的主要应用领域。发现质谱在两种离子极性模式下均以组织中主要为复杂的脂质型成分为特征。还检测到带电荷的肽阴离子。详细描述了乐器设置的影响。文丘里泵的几何形状和流量参数对电离效率至关重要。分析了磷脂和肽的标准溶液,以测试动态范围,灵敏度和抑制效果。发现完整组织标本的光谱对组织学组织类型具有高度特异性。开发了基于主成分分析(PCA)和线性判别分析(LDA)的数据分析方法,用于手术环境中的实时组织识别。该方法已在包括星状细胞瘤,脑膜瘤,转移性脑瘤和健康脑组织在内的尸体样本和离体人类样本中成功测试。

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