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 共查询到16条相似文献,搜索用时 453 毫秒
1.
78例正常妊娠妇女和40例妊高征患者血清中铁、锌、铜、锰、硒、铬钴和的含量与健康未孕妇女比较,正常妊娠妇女和妊高征患者是铜和锰的含量升高,铁、锌、硒、铬、钴和镍降低;妊高征患者与正常妊娠妇女比较,则是铁、铜和锰的含量升高、锌、硒、铬、钴和镍的含量降降低。  相似文献   

2.
过敏性哮喘患者血清中10种必需微量元素水平的研究   总被引:1,自引:0,他引:1  
34例过敏性哮喘患者血清中铁,锌、铜,锰硒铬,钴镍,钡,钼的含量水平与对照组比较,揭示:(1)铁,铜,铬的含量升高;(2)硒,镍,钴、钒的钼的含量降低;(3)锌和锰的含量差异无显著性,P〉0.05。  相似文献   

3.
116例冠心病患者血清中10种必需微量元素水平的研究   总被引:3,自引:0,他引:3  
116例冠心病患者血清中10种必需微量元素的含量与正常值比较,具有如下特点:(1)铁,锌、铬,镍含量升高;2硒钴,钒,钼含量降低;(3)铜和锰差异无显著性。  相似文献   

4.
对临床、病理、放射线或CT检查确诊的82名癌肿患者,在放疗前后和对42名健康人进行了微量元素铁、锌、铜、锰、硒,铬、钴、镍的分析。研究结果显示:1.癌肿患者血清铜、镍、锰、铬、钴的含量比健康人高,而血清锌、铁、硒的含量却比健康人低;2.血清Cu/Zn、Cr/Zn、Co/Zn、Ni/Zn的比值癌肿患者均比健康人高,而Fe、Zn、Se/Zn的比值却相反。因此,可根据血清铜升高、血清锌降低,血清铜/锌比值升高的特点。用于癌肿的早期诊断;3.癌肿患者放疔后血清铁、锌含量进一步下降,铜、锰、铬的含量也出现降低,唯有硒的含量有所上升。因此,放疗时应注意补充铁、锌、铜元素。  相似文献   

5.
110例脑卒中患者血清中铁,锌,铜,锰,硒,铬,钴,镍的含量水平与对照组比较,结果显示:1.血清的,铜和铬的含量升高,锌,钴和镍的含量降低,两者之间的差异均有高度显著性,P〈0.01;2.血清锰和硒的含量与对照组差异无显著性,P〉0.05;3.在临床上述元素含量变化可用于脑座中的辅助诊断和治疗。  相似文献   

6.
检测了193例急性脑出血和15例老年性蛛网膜下腔出血患者头发中铬,硒,锰,镁,锌,铜,铁含量,结果表明,出血性中风患者发铬,硒,锰,镁,锌含量均降低,铜升高,铁正常。讨论了该病与微量元素的关系。  相似文献   

7.
一、肝癌:肝癌患者体内硒、锌、锰、铁较低,铜、镍、铝升高。二、胃肠癌:胃肠癌患者体内锌、钼、钴等明显降低,铜、镍明显升高。三、食管癌:食管癌患者体内硒、锌、铁、锰、钼、镁等缺乏,铜和铜/锌升高。四、肺癌:肺癌患者体内锰、硒、锌、锶等明显降低,铜、镍、砷含量升高。五  相似文献   

8.
116例冠心病患者血清中铜铬锰钴镍钒含量的探讨   总被引:1,自引:0,他引:1  
测定了116例冠心病患者血清中铜、铬、锰、钴、镍、钒的含量并与正常值比较,显示含量升高才是有铬和镍,降低者有钴和钒、无差异者有铜和锰。  相似文献   

9.
高血压患者血清中铁锌铜锰硒铬含量的研究   总被引:2,自引:1,他引:2  
165例高血压患者血清中铁,锌,铜,锰,硒,铬的含量与对照组比较,结果显示:1.微量元素铁,锌含量明显升高,而血清铜,铬含量明显降低,其差异均有高度显著性,P〈0.01;血清锰和硒的含量,两者差异无显著性,P〉0.01.2.上述元素含量的特点可用高血压病的早期预报和治疗。  相似文献   

10.
癫痫与微量元素   总被引:4,自引:1,他引:3  
评论了微量元素锌,铜,铁,锰与癫痫的关系。癫痫患者血浆中锌、铜、铁含量比正常对照组增高,锰含量降低。锌/铜比值较正常对照组明显降低。而癫痫患者发锌,铁含量比正常人对照组升高,发铜,锰含量降低。  相似文献   

11.
建立了ICP-AES法测定红土镍矿中Ni;Ca;Ti;Mn;Cu;Co;Cr;Zn和P含量的方法。样品用HCl、HNO3溶解,加入HF和HClO4,加热至HClO4烟冒尽,用HCl溶解盐类,过滤,采用ICP-AES法同时测定滤液中Ni、Ca、Mn、Cu、Co、Zn、P;残渣经灼烧、挥硅、K2S2O7熔融、HCl浸取,所得溶液与滤液合并,测定溶液中Cr和Ti含量。方法检出限:P为0.022μg/mL,其它元素在0.0032~0.0085μg/mL之间,方法的精密度(n=7)在1.4%~2.9%之间。分析结果与分光光度法、XRF法和AAS法分析结果的相对误差:Ni、Cu、Co、Cr小于5%,Ti和Mn小于10%,Zn小于15%,Ca和P小于19%。  相似文献   

12.
This paper reports the utilization of solid-phase extraction and the reversed-phase high-performance liquid chromatography for the determination of six important transition metal ions: iron, cobalt, nickel, copper, zinc and manganese in tobacco with 2-(2-quinolinylazo)-5-dimethylaminophenol (QADMAP) as chelating reagent. Iron, cobalt, nickel, copper, zinc and manganese ions react with QADMAP to form colored chelates in the medium of acetic acid-sodium acetate buffer solution (pH 4.0). These chelates can be enriched by solid-phase extraction with Waters Sep-Pak-C18 cartridge, and eluted the retained chelates from cartridge with tetrahydrofuran. The chelates were separated on a Waters Nova-Pak-C18 column (150x3.9 mm, 5 microm) by gradient elution with methanol (containing 0.5% of acetic acid) and 0.05 mol/l pH 4.0 acetic acid-sodium acetate buffer solution as mobile phase at a flow-rate of 0.5 ml/min. The detection limits of iron, cobalt, nickel, copper, zinc and manganese are 10, 12, 8, 13, 17 and 22 ng/l, respectively. This method had been applied to the determination of iron, cobalt, nickel, copper, zinc and manganese in tobacco with good results.  相似文献   

13.
Young RS 《Talanta》1976,23(2):125-130
Methods are reviewed for the determination of the following constituents of copper refinery slimes: aluminium, antimony, arsenic, barium, bismuth, calcium, cobalt, copper, gold, iron, lead, magnesium, manganese, molybdenum, nickel, platinum metals, selenium, silicon, silver, sulphur, tellurium, tin and zinc.  相似文献   

14.
Mendez R  Pillai VN 《Talanta》1990,37(6):591-594
A chelating ion-exchange resin with hydroxamic acid functional groups was synthesized from styrene-maleic acid co-polymer cross-linked with divinylbenzene. A resin prepared from equimolar amounts of styrene and maleic anhydride with 0.75 mole% divinylbenzene gives the best sorption characteristics. The selectivity of the resin for metal ions is copper(II) > cobalt(II) > zinc(II) > nickel(II) > manganese(II) > chromium(III) > iron(III) > vanadium(V). Copper(II), chromium(III) and iron(III) in chromium plating baths can be separated by use of the resin and determined spectrophotometrically.  相似文献   

15.
This paper reports the utilization of solid phase extraction and the reversed‐phase high‐performance liquid chromatography (RP‐HPLC) for the determination of six transition metal ions (iron, cobalt, nickel, copper, zinc and manganese) in biological samples. The samples were digested by microwave digestion. The iron, cobalt, nickel, copper, zinc and manganese ions in the digested samples can react with 2‐(2‐quinolinylazo)‐5‐diethylaminophenol (QADEAP) to form colored chelates in pH 4.0 acetic acid‐sodium acetic buffer solutions and cetyl trimethylammonium bromide (CTMAB) medium. These chelates were enriched by solid phase extraction with C18 cartridge. Then the chelates were separated on a Waters Nova‐Pak‐C18 column (3.9 × 150 mm, 5 μm) by gradient elution with methanol (containing 0.5% of acetic acid and 0.1% of CTMAB) and 0.05 mol/L pH 4.0 acetic acid‐sodium acetic buffer solution (containing 0.1% of CTMAB) as mobile phase at a flow rate of 0.5 mL/min. The detection limits of iron, cobalt, nickel, copper, zinc and manganese are 3 ng/L, 4 ng/L, 2 ng/L, 4 ng/L, 8 ng/L, 10 ng/L, respectively. This method was applied to the determination of iron, cobalt, nickel, copper, zinc and manganese in biological samples with good results.  相似文献   

16.
Twenty five trace and minor elements (aluminium, arsenic, barium, bromine, cerium, chlorine, cobalt, chromium, cesium, europium, iron, hafnium, potassium, magnesium, manganese, sodium, rubidium, antimony, scandium, selenium, strontium, thorium, titanium, vanadium and zinc) in five different Egyptian aspirin brands (Aspo, Askin, Aspocid, Aspeol and Rivo) have been determined by instrumental neutron activation analysis. It has been concluded that the concentration of arsenic, barium, bromine, cobalt, chromium, iron (except in Aspocid), magnesium, manganese, rubidium, selenium, strontium and zinc in the Egyptian brands is below or within the concentration range reported for these elements in 16 American aspirin and aspirin-like brands.  相似文献   

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