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通过模拟和磁共振成像实验分析,化学交换对代表水果组织的糖溶液在低场和中场磁场强度下横向弛豫的影响。

Impact of chemical exchange on transverse relaxation at low and moderate magnetic field strengths for sugar solutions representative of fruit tissues analyzed by simulation and MRI experiments.

作者信息

Leforestier Rodolphe, Mariette François, Musse Maja

机构信息

INRAE UR OPAALE, 17, avenue de Cucillé, 35044 Rennes, France.

INRAE UR OPAALE, 17, avenue de Cucillé, 35044 Rennes, France.

出版信息

J Magn Reson. 2021 Jan;322:106872. doi: 10.1016/j.jmr.2020.106872. Epub 2020 Nov 9.

DOI:10.1016/j.jmr.2020.106872
PMID:33232906
Abstract

Proton exchange effects on transverse relaxation rate were studied at low and moderate magnetic fields. Analysis was conducted on low-concentrate simple sugar (fructose and glucose) solutions modeling the vacuolar liquid in fruits. Simulated data obtained from Carver and Richards equations were used to analyze the effects of temperature and pH on parameters involved in the chemical exchange mechanisms. The results have highlighted that measurement conditions and tissue characteristics (echo time, magnetic field strength, temperature, pH, etc.) significantly impact the transverse relaxation rate via chemical exchange, even for low and mid magnetic fields and the narrow echo time ranges of TD-NMR and MRI measurements. This explains some of the divergent relaxation data from plant tissue NMR measurements reported in the literature and emphasizes the importance of taking experimental conditions and tissue characteristics into account when interpreting results. It also clearly demonstrates that the appropriate choice of experimental conditions can emphasize the effects of sugar concentration or pH variations on transverse relaxation in vacuolar liquids, making it possible to monitor these parameters accurately via transverse relaxation measurements. The impact of concentration, solute type, pH and temperature on transverse relaxation of sugar solutions were demonstrated experimentally at 1.5 T with an MRI scanner. These data were interpreted using the Carver-Richards model which was effective in estimating parameters involved in chemical exchange mechanism in the imaging experiment.

摘要

在低磁场和中等磁场下研究了质子交换对横向弛豫率的影响。对模拟水果液泡液的低浓度单糖(果糖和葡萄糖)溶液进行了分析。利用从卡弗和理查兹方程获得的模拟数据,分析了温度和pH对化学交换机制中涉及的参数的影响。结果表明,测量条件和组织特性(回波时间、磁场强度、温度、pH等)即使在低磁场和中等磁场以及时域核磁共振(TD-NMR)和磁共振成像(MRI)测量的窄回波时间范围内,也会通过化学交换显著影响横向弛豫率。这解释了文献中报道的植物组织核磁共振测量中一些不一致的弛豫数据,并强调了在解释结果时考虑实验条件和组织特性的重要性。它还清楚地表明,适当选择实验条件可以突出糖浓度或pH变化对液泡液中横向弛豫的影响,从而有可能通过横向弛豫测量准确监测这些参数。在1.5 T磁场下,使用MRI扫描仪通过实验证明了浓度、溶质类型、pH和温度对糖溶液横向弛豫的影响。这些数据使用卡弗-理查兹模型进行了解释,该模型在估计成像实验中化学交换机制涉及的参数方面是有效的。

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Impact of chemical exchange on transverse relaxation at low and moderate magnetic field strengths for sugar solutions representative of fruit tissues analyzed by simulation and MRI experiments.通过模拟和磁共振成像实验分析,化学交换对代表水果组织的糖溶液在低场和中场磁场强度下横向弛豫的影响。
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