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通过在室温下运行的磁强计检测大鼠体内的铁过载。

Iron overload detection in rats by means of a susceptometer operating at room temperature.

作者信息

Marinelli M, Gianesin B, Avignolo C, Minganti V, Parodi S

机构信息

Department of Physics, University of Genoa, Via Dodecaneso 33, 16146 Genoa, Italy.

出版信息

Phys Med Biol. 2008 Dec 7;53(23):6849-60. doi: 10.1088/0031-9155/53/23/013. Epub 2008 Nov 12.

Abstract

Biosusceptometry is a non-invasive procedure for determination of iron overload in a human body; it is essentially an assessment of the diamagnetic (water) and paramagnetic (iron) properties of tissues. We measured in vivo iron overload in the liver region of 12 rats by a room temperature susceptometer. The rats had been injected with sub-toxic doses of iron dextran. A quantitative relationship has been observed between the measurements and the number of treatments. The assessment of iron overload requires evaluating the magnetic signal corresponding to the same rat ideally without the overload. This background value was extrapolated on the basis of the signal measured in control rats versus body weight (R(2) = 0.73). The mean iron overload values for the treated rats, obtained after each iron injection, were significantly different from the means of the corresponding control rats (p < 0.01). The in vivo measurements have been complemented by chemical analysis on excised livers and other organs (R(2) = 0.89). The magnetic moment of iron atoms in liver tissues was measured to be 3.6 Bohr magneton. Evaluation of the background signal is the limit to the measure; the error corresponds to about 30 mg (1 SD) of iron while the instrument sensitivity is more than a factor of 10 better.

摘要

生物磁测量法是一种用于测定人体铁过载的非侵入性程序;它本质上是对组织的抗磁性(水)和顺磁性(铁)特性的评估。我们使用室温磁强计测量了12只大鼠肝脏区域的体内铁过载情况。这些大鼠已被注射了亚毒性剂量的右旋糖酐铁。在测量值与治疗次数之间观察到了定量关系。评估铁过载需要评估理想情况下同一未发生过载的大鼠对应的磁信号。该背景值是根据在对照大鼠中测量的信号相对于体重外推得出的(R² = 0.73)。每次注射铁后获得的受试大鼠的平均铁过载值与相应对照大鼠的平均值有显著差异(p < 0.01)。体内测量通过对切除的肝脏和其他器官进行化学分析得到了补充(R² = 0.89)。测量得出肝脏组织中铁原子的磁矩为3.6玻尔磁子。背景信号的评估是测量的限制因素;误差对应约30毫克(1个标准差)的铁,而仪器灵敏度则高出10倍以上。

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