首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Efficient 31 31 P band inversion transfer approach for measuring creatine kinase activity, ATP synthesis, and molecular dynamics in the human brain at 7 T
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Efficient 31 31 P band inversion transfer approach for measuring creatine kinase activity, ATP synthesis, and molecular dynamics in the human brain at 7 T

机译:高效31 311 31 3 31波段反转转移方法,用于测量肌酸激酶活性,ATP合成和人脑中的分子动力学在7℃

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Purpose To develop an efficient 31 P magnetic resonance spectroscopy (MRS) method for measuring creatine kinase (CK) activity, adenosine triphosphate (ATP) synthesis, and motion dynamics in the human brain at 7 Tesla (T). Methods Three band inversion modules differing in center frequency were used to induce magnetization transfer (MT) effect in three exchange pathways: (i) CK‐mediated reaction PCr → γ‐ATP; (ii) de novo ATP synthesis Pi → γ‐ATP; and (iii) ATP intramolecular 31 P– 31 P cross‐relaxation γ‐(α‐) ? β‐ATP. The resultant MT data were analyzed using a 5‐pool model in the format of magnetization matrix according to Bloch‐McConnell‐Solomon formalism. Results With a repetition time (TR) of 4 s, the scan time for each module was approximately 8?min. The rate constants were k PCr → γATP 0.38?±?0.02 s ?1 , k Pi → γATP 0.19?±?0.02 s ?1 , and σ γ(α) ? βATP 0.19?±?0.04 s ?1 , corresponding to ATP rotation correlation time τ c (0.8?±?0.2) ·10 ?7 s. The T 1 relaxation times were Pi 7.26?±?1.76 s, PCr 5.99?±?0.58 s, γ‐ATP 0.98?±?0.07 s, α‐ATP 0.95?±?0.04 s, and β‐ATP 0.68?±?0.03 s. Conclusion Short‐TR band inversion modules provide a time‐efficient way of measuring brain ATP metabolism and could be useful in studying metabolic disorders in brain diseases. Magn Reson Med 78:1657–1666, 2017. ? 2016 International Society for Magnetic Resonance in Medicine.
机译:目的,要开发一种有效的31p磁共振光谱(MRS)方法,用于测量肌酸激酶(CK)活性,腺苷三磷酸(ATP)合成,7特斯拉(T)的人脑中的运动动力学。方法使用中心频率不同的三个带反转模块用于在三个交换途径中诱导磁化转移(MT)效应:(i)CK介导的反应PCR→γ-ATP; (ii)de Novo ATP合成PI→γ-ATP; (III)ATP分子内31 P-31 P次弛豫γ-(α-)? β-ATP。根据Bloch-McConnell-Solomon形式主义,使用以磁化矩阵格式的5池模型分析所得MT数据。重复时间(TR)为4 S,每个模块的扫描时间约为8?分钟。速率常数为K PCR→γATP0.38≤0.02s≤1,k pi→γatp0.19≤y≤0.10μl和σγ(α)? βATP0.19?±0.04秒?1,对应于ATP旋转相关时间τc(0.8≤≤0.2)·10?7 s。 T 1弛豫时间为pi 7.26?±1.76 s,pcr 5.99?±0.58 s,γ-atp 0.98?±0.07 s,α-ATP 0.95?±0.04 s,β-ATP 0.68? 0.03秒。结论短TR带反转模块提供了测量脑ATP新陈代谢的时间有效的方法,可用于研究脑病中的代谢障碍。 MANG REAN MED 78:1657-1666,2017: 2016年医学中的磁共振学会。

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