Correlation-Peak Imaging

A. Ziegler , A. Metzler , W. Köckenberger , M. Izquierdo , E. Komor , A. Haase , M. Décorps , M. von Kienlin
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引用次数: 33

Abstract

Identification and quantitation in conventional1H spectroscopic imagingin vivois often hampered by the small chemical-shift range. To improve the spectral resolution of spectroscopic imaging, homonuclear two-dimensional correlation spectroscopy has been combined with phase encoding of the spatial dimensions. From the theoretical description of the coherence-transfer signal in the Fourier-transform domain, a comprehensive acquisition and processing strategy is presented that includes optimization of the width and the position of the acquisition windows, matched filtering of the signal envelope, and graphical presentation of the cross peak of interest. The procedure has been applied to image the spatial distribution of the correlation peaks from specific spin systems in the hypocotyl of castor bean (Ricinus communis) seedlings. Despite the overlap of many resonances, correlation-peak imaging made it possible to observe a number of proton resonances, such as those of sucrose, β-glucose, glutamine/glutamate, lysine, and arginine.

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相关峰成像
常规1h光谱成像在体内的鉴定和定量常常受到化学位移范围小的阻碍。为了提高光谱成像的光谱分辨率,将同核二维相关光谱与空间维度的相位编码相结合。从傅里叶变换域中相干转移信号的理论描述出发,提出了一种综合的采集和处理策略,包括采集窗口宽度和位置的优化、信号包络的匹配滤波以及感兴趣的交叉峰的图形表示。该方法已应用于蓖麻(Ricinus communis)幼苗下胚轴中特定自旋系统相关峰的空间分布成像。尽管有许多共振重叠,相关峰成像使得观察到一些质子共振成为可能,例如蔗糖、β-葡萄糖、谷氨酰胺/谷氨酸、赖氨酸和精氨酸。
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