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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >MeV-SIMS TOF Imaging of Organic Tissue with Continuous Primary Beam
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MeV-SIMS TOF Imaging of Organic Tissue with Continuous Primary Beam

机译:用连续主梁的有机组织的MEV-SIMS TOF成像

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MeV-SIMS is an emerging mass spectrometry imaging method, which utilizes fast, heavy ions to desorb secondary molecules. High yields and low fragmentation rates of large molecules, associated with the electronic sputtering process, make it particularly useful in biomedical research, where insight into distribution of organic molecules is needed. Since the implementation of MeV-SIMS in to the micro-beam line at the tandem accelerator of Jozef Stefan Institute, MeV-SIMS provided some valuable observations on the distribution of biomolecules in plant tissue, as discussed by Jencic et al. (Nucl. Inst. Methods Phys. Res. B. 371, 205-210, 2016; Nucl. Inst. Methods Phys. Res. B. 404, 140-145, 2017). However, limited focusing ability of the chlorine ion beam only allowed imaging at the tissue level. In order to surpass shortcomings of the existing method, we introduced a new approach, where we employ a continuous, low-current primary beam. In this mode, we bombard thin samples with a steady chlorine ion flux of approx. 5000 ions/s. After desorbing molecules, chlorine ions penetrate through the thinly cut sample and trigger the time-of-flight "start" signal on a continuous electron multiplier detector, positioned behind the sample. Such bombardment is more effective than previously used pulsing-beam mode, which demanded several orders of magnitude higher primary ion beam currents. Sub-micrometer focusing of low-current primary ion beam allows imaging of biological tissue on a subcellular scale. Simultaneously, new time-of-flight acquisition approach also improves mass resolution by a factor of 5. Within the article, we compare the performance of both methods and demonstrate the application of continuous mode on biological tissue. We also describe the thin sample preparation protocol, necessary for measurements with low primary ion currents.
机译:MEV-SIMS是一种新兴质谱成像方法,其利用快速的重离子来解吸二次分子。与电子溅射工艺相关的大产率和低碎片率,使其在生物医学研究中特别有用,其中需要洞察有机分子的分布。由于Jozef Stefan Institute的串联加速器的MEV-SIMS实施了MEV-SIMS,因此MEV-SIMS为植物组织中的生物分子分布提供了一些有价值的观察,如Jencic等人所讨论的。 (NUCL。方法。方法。res。B. 371,205-210,2016; Nucl。Inst。方法phys。res。res。B. 404,140-145,2017)。然而,仅氯离子束的有限聚焦能力仅允许在组织水平处成像。为了超越现有方法的缺点,我们介绍了一种新的方法,我们采用了连续的低电流主光束。在这种模式下,我们轰击薄样品,均为稳定的氯离子通量约为。 5000离子/ s。解吸分子后,氯离子穿过薄切割的样品并触发在连续电子乘法器检测器上的飞行时间“开始”信号,位于样品后面。这种轰击比以前使用的脉冲光束模式更有效,这需要几个额度较高的主离子束电流。低电流初级离子束的亚微米聚焦允许在亚细胞规模上成像生物组织。同时,新的飞行时间采集方法还通过5.在本文中提高了质量分辨率,我们可以比较两种方法的性能,并证明在生物组织上的连续模式应用。我们还描述了薄的样品制备方案,用于测量低初级离子电流。

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