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Absorption Mode FTICR Mass Spectrometry Imaging

机译:吸收模式FTICR质谱成像

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Fourier transform ion cyclotron resonance mass spectrometry offers the highest mass resolving power for molecular imaging experiments. This high mass resolving power ensures that closely spaced peaks at the same nominal mass are resolved for proper image generation. Typically higher magnetic fields are used to increase mass resolving power. However, a gain in mass resolving power can also be realized by phase correction of the data for absorption mode display. In addition to mass resolving power, absorption mode offers higher mass accuracy and signal-to-noise ratio over the conventional magnitude mode. Here, we present the first use of absorption mode for Fourier transform ion cyclotron resonance mass spectrometry imaging. The Autophaser algorithm is used to phase correct each spectrum (pixel) in the image, and then, these parameters are used by the Chameleon work-flow based data processing software to generate absorption mode "Datacubes" for image and spectral viewing. Absorption mode reveals new mass and spatial features that are not resolved in magnitude mode and results in improved selected ion image contrast.
机译:傅里叶变换离子回旋共振质谱为分子成像实验提供了最高的质量分辨能力。如此高的质量分辨能力可确保在相同的标称质量下分离出紧密排列的峰,以产生正确的图像。通常,使用更高的磁场来增加质量分辨能力。然而,通过用于吸收模式显示的数据的相位校正也可以实现质量分辨能力的增加。除了质量分辨能力外,吸收模式还提供了比常规幅度模式更高的质量精度和信噪比。在这里,我们介绍了吸收模式在傅立叶变换离子回旋共振质谱成像中的首次使用。自动相位器算法用于对图像中的每个光谱(像素)进行相位校正,然后,这些参数由基于Chameleon工作流的数据处理软件使用,以生成吸收模式“ Datacubes”以用于图像和光谱查看。吸收模式揭示了在量级模式下无法解析的新质量和空间特征,并改善了所选离子图像的对比度。

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