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非侵入性测量短期肝脏代谢:餐后及运动后¹H和³¹P磁共振波谱分析

Measuring short-term liver metabolism non-invasively: postprandial and post-exercise ¹H and ³¹P MR spectroscopy.

作者信息

Hakkarainen Antti, Lundbom Jesper, Tuominen Esa K, Taskinen Marja-Riitta, Pietiläinen Kirsi H, Lundbom Nina

机构信息

Department of Radiology, HUS Medical Imaging Center, Helsinki University Central Hospital, University of Helsinki, Helsinki, Finland,

出版信息

MAGMA. 2015 Feb;28(1):57-66. doi: 10.1007/s10334-014-0450-7. Epub 2014 Jun 4.

Abstract

OBJECT

The objective of this study was to determine the effects of a standardized fat rich meal and subsequent exercise on liver fat content by ¹H MRS and on liver adenosine triphosphate (ATP) content by ³¹P MRS in healthy subjects.

MATERIALS AND METHODS

Hepatic ¹H and proton decoupled ³¹P MRS were performed on nine healthy subjects on a clinical 3.0 T MR imager three times during a day: after (1) an overnight fast, (2) a following standardized fat rich meal and (3) a subsequent exercise session. Blood parameters were followed during the day to serve as a reference to MRS.

RESULTS

Liver fat content increased gradually over the day (p = 0.0001) with an overall increase of 30 %. Also γ-NTP changed significantly over the day (p = 0.005). γ-NTP/tP decreased by 9 % (p = 0.019, post hoc) from the postprandial to the post-exercise state.

CONCLUSION

Our study shows that in vivo MRS can depict short lived physiological changes; entering of fat into liver cells and consumption of ATP during exercise can be measured non-invasively in healthy subjects. The physiological state may have an impact on fat and energy metabolite levels. Hepatic ¹H and ³¹P MRS studies should be performed under standardized conditions.

摘要

目的

本研究的目的是通过¹H磁共振波谱法(MRS)测定标准化高脂餐及随后的运动对健康受试者肝脏脂肪含量的影响,并通过³¹P MRS测定对肝脏三磷酸腺苷(ATP)含量的影响。

材料与方法

在临床3.0T磁共振成像仪上,对9名健康受试者在一天内进行3次肝脏¹H和质子去耦³¹P MRS检查:(1)空腹过夜后,(2)随后进食标准化高脂餐,(3)随后进行运动。在一天中监测血液参数,作为MRS的参考。

结果

肝脏脂肪含量在一天中逐渐增加(p = 0.0001),总体增加30%。γ-核苷酸焦磷酸酶(γ-NTP)在一天中也有显著变化(p = 0.005)。从餐后状态到运动后状态,γ-NTP/总磷(tP)下降了9%(p = 0.019,事后检验)。

结论

我们的研究表明,体内MRS可以描绘短暂的生理变化;脂肪进入肝细胞以及运动期间ATP的消耗可以在健康受试者中进行无创测量。生理状态可能会对脂肪和能量代谢物水平产生影响。肝脏¹H和³¹P MRS研究应在标准化条件下进行。

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