Mehmet Nafi Sakar, Utku Nezih Yilmaz, Mehmet Zafer Köylü
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引用次数: 0
摘要
在最近的文献中,对高场核磁共振峰的谱线宽度的研究更为频繁。本研究的目的是比较健康血液和患病血液以及颌骨密集血性囊肿的HOD峰的NMR线宽。比较了健康和患病尿液的HOD峰线宽。为此,收集了29名癌症患者、17名糖尿病患者、28名健康志愿者的血液、血清和尿液,以及20名来自颌骨囊肿的强烈血液样本。将0.02 mL样品加入0.98 mL D2O中制备混合物。在400 MHz下进行单脉冲质子核磁共振测量,从血HOD峰的半高获得线宽。统计分析表明,癌血的线宽与正常血有差异(P = 0.032),糖尿病血的线宽无差异(P = 0.072),而其他组与血性颌囊肿的线宽则完全不同(P <;0.05)。尿液组也有类似的结果。线宽显示与每个白蛋白和总蛋白组有适度的相关性(R约为0,56)。目前的数据表明,可以通过在高核磁共振场中测量HOD峰的线宽来进行健康和患病体液的比较。数据还表明,白蛋白(Ser-Alb)和总蛋白(Ser-TP)的松弛度是癌症血液的潜在诊断指标。
Separation of Line Widths of HOD Peaks of Healthy and Diseased Blood and Urine Groups Using 400 MHz NMR
Line width studies of high field nuclear magnetic resonance (NMR) peaks have been seen more frequently in the recent literature. This study aims to compare the NMR line widths of HOD peaks of healthy and diseased blood, and densely bloody cysts taken from the jaw. Comparisons of HOD peak line widths in healthy and diseased urine were also made. For this purpose, the blood, serum, and urine of 29 cancer patients, 17 diabetic patients, 28 healthy volunteers, and 20 intensely bloody samples from jaw cysts were collected. Mixtures were prepared by adding the 0.02-mL sample to 0.98 mL D2O. Single-pulse proton NMR measurements were performed at 400 MHz, and line widths were obtained from the half-height of the blood HOD peak. Statistical evaluations show that the line width of cancerous blood is different from normal blood (P = 0.032), while the line width of diabetic blood is not different (p = 0.072), whereas other groups and bloody jaw cysts are completely different (p < 0.05). Similar results were found for urine groups. Line widths show a moderate correlation with each of the albumin and total protein groups (R around 0,56). Present data suggest that a comparison of healthy and diseased body fluids can be made by line width measurements of the HOD peak in the high NMR field. Data also suggest that the relaxivities of albumin (Ser-Alb), total protein (Ser-TP) are potential diagnostic indicators for cancerous blood.
期刊介绍:
Journal of Applied Spectroscopy reports on many key applications of spectroscopy in chemistry, physics, metallurgy, and biology. An increasing number of papers focus on the theory of lasers, as well as the tremendous potential for the practical applications of lasers in numerous fields and industries.