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951.
目的探讨学龄前和学龄期儿童希氏束以上的心动过速(室上性心动过速)与心动过速性心肌病的相关性及高危因素.方法选取室上性心动过速患儿179例,根据心动过速时心功能状态分为心肌病组23例,非心肌病组156例.分析患儿性别、年龄、发作类型、发作频率、持续时间、心室率与心功能损伤的关系和相关高危因素.结果 179例患儿中心动过速性心肌病23例,其中房室折返性、房室结折返性、无明确分类的心肌病分别为7例、10例、6例.房速所致心动过速性心肌病发生率为25.00%(8/32),明显高于阵发性室上性心动过速所致的心肌病发生率10.20%(15/147),差异具有统计学意义(P0.05).心肌病组患儿中房速所占比例、发作持续时间明显高于非心肌病组患儿,发作频率明显低于非心肌病组患儿,差异均具有统计学意义(P0.05).二元Logistic回归分析显示:发作持续时间是心动过速性心肌病的独立影响因素.结论学龄前和学龄期儿童室上性心动过速所致心动过速性心肌病的发生率为12.85%,其中房速所致的心肌病发生率明显高于阵发性室上性心动过速,发作持续时间是唯一高危因素.  相似文献   
952.
黑果腺肋花楸组培繁殖培养基筛选   总被引:1,自引:0,他引:1  
以黑果腺肋花楸茎尖和嫩叶为外植体,在MS培养基中加入不同种类与用量的生长调节剂,筛选黑果腺肋花楸组织培养繁殖培养基.结果表明:黑果腺肋花楸愈伤组织诱导效果较好的培养基为MS+6-BA 3.0 mg/L+NAA 0.5 mg/L;不定芽诱导效果较好的培养基为MS+6-BA 1.0 mg/L+NAA 0.1 mg/L;不定根诱导效果较好的培养基为1/2 MS+IBA 0.05 mg/L;以泥炭土、松针、砂砾(2∶1∶1)为基质时,组培苗移栽成活率较高(成活率96%).  相似文献   
953.
从采后贮藏过程中发病的冬枣、樱桃、杏及蓝莓果实中分离到4株丝状病原真菌231#、320#、322#和333#。由形态学特征观察可确定4株病原菌均为链格孢属真菌(Alternaria Nees),rDNA ITS区序列进化树分析结果表明樱桃320#和杏322#与A. alternata (AY625056.1)处于同一分枝,置信度达100%;而蓝莓333#与A. tenuissima (KP324980.1)处于同一分枝,冬枣231#与蓝莓333#和A. tenuissima (KP324980.1)的亲缘性很近,在同一分支上的置信度达100%。对95种碳源的代谢指纹图谱分析的结果表明,4株链格孢属真菌对吐温80、N-乙酰-D-葡萄糖胺、N-乙酰-β-D-甘露糖胺等86种碳源的代谢特征相同,包括78种最适碳源和8种不可利用碳源,其中冬枣231#与A. alternata (Fr.) Keissl的代谢指纹图谱最为相近。4株链格孢属真菌的ITS区序列系统进化树分类与碳源代谢聚类分析结果存在一定差异。  相似文献   
954.
利用几种理化参数快速、准确鉴别蜂蜜与糖浆。以北方地区常见的17种蜂蜜和10种糖浆为研究对象,通过理化参数(水分、多酚、黄酮含量、pH值、蛋白质含量及分子质量范围、单糖含量比等)分析蜂蜜和糖浆的异同。为了提高果糖和葡萄糖的分辨率,采用氨基色谱柱,在流动相的选择上进行了优化。结果显示,pH值、多酚含量、黄酮含量无明显区别。水分含量、单糖含量比、蛋白质含量及其分子质量范围有区别:1)蜂蜜、糖浆的w(水)范围分别为15.13%~19.88%、 22.13%~28.50%;2)蜂蜜、糖浆的果糖与葡萄糖质量分数比分别为0.95~1.50、 0.13~2.80;3)蜂蜜中w(蛋白质)范围为1.12~5.09μg/g,分子质量范围为45.0~116.0kDa,糖浆中不含蛋白质。将蛋白质含量测定与蛋白质分子质量测定相结合,增强了通过蛋白质鉴别真假蜂蜜的说服力。水分含量、果糖与葡萄糖质量分数比、蛋白质含量及分子质量可作为掺假鉴别的指标,为蜂蜜的掺假鉴别提供理论依据。  相似文献   
955.
食品中常见甜味剂使用方面存在的主要问题及危害   总被引:2,自引:0,他引:2  
甜味剂是现代食品生产加工业不可缺少的一类重要的食品添加剂,可应用于多种食品中。尽管我国食品添加剂的安全标准和监管体系不断发展,但由于甜味剂产业发展较快,一些企业生产者盲目逐利,在生产加工过程仍然存在着不同程度违规使用甜味剂的问题,主要包括超范围和超限量使用甜味剂、滥用复合甜味剂、重复使用甜味剂、标识不符合规定、甜味剂质量不合格和用甜味剂掩盖食品的质量缺陷或以掺杂、掺假、伪造而使用等。食品生产者应合理规范生产和使用甜味剂,以免对消费者身体健康造成危害。消费者也应理性认识甜味剂,从正规渠道购买食品,合理膳食,均衡营养。  相似文献   
956.
A cryogenic scanning electron microscopy (cryo-SEM) technique was used to explore the shear-thickening behavior of Fe-ZSM5 zeolite pastes and to discover its underlying mechanism. Bare Fe-ZSM5 zeolite samples were found to contain agglomerations, which may break the flow of the pastes and cause shear-thickening behaviors. However, the shear-thickening behaviors can be eliminated by the addition of halloysite and various boehmites because of improved particle packing. Furthermore, compared with pure Fe-ZSM5 zeolite samples and its composite samples with halloysite, the samples with boehmite (Pural SB or Disperal) additions exhibited network structures in their cryo-SEM images; these structures could facilitate the storage and release of flow water, smooth paste flow, and avoid shear-thickening. By contrast, another boehmite (Versal 250) formed agglomerations rather than network structures after being added to the Fe-ZSM5 zeolite paste and resulted in shear-thickening behavior. Consequently, the results suggest that these network structures play key roles in eliminating the shear-thickening behavior.  相似文献   
957.
Graphene-reinforced aluminum (Al) matrix composites were successfully prepared via solution mixing and powder metallurgy in this study. The mechanical properties of the composites were studied using microhardness and tensile tests. Compared to the pure Al alloy, the graphene/Al composites showed increased strength and hardness. A tensile strength of 255 MPa was achieved for the graphene/Al composite with only 0.3wt% graphene, which has a 25% increase over the tensile strength of the pure Al matrix. Raman spectroscopy, Fourier transform infrared spectroscopy, scanning electron microscopy, and transmission electron microscopy were used to investigate the morphologies, chemical compositions, and microstructures of the graphene and the graphene/Al composites. On the basis of fractographic evidence, a relevant fracture mechanism is proposed.  相似文献   
958.
In this study, a multilayer Al/Ni/Cu composite reinforced with SiC particles was produced using an accumulative roll bonding (ARB) process with different cycles. The microstructure and mechanical properties of this composite were investigated using optical and scanning microscopy and hardness and tensile testing. The results show that by increasing the applied strain, the Al/Ni/Cu multilayer composite converted from layer features to near a particle-strengthening characteristic. After the fifth ARB cycle, a composite with a uniform distribution of reinforcements (Cu, Ni, and SiC) was fabricated. The tensile strength of the composite increased from the initial sandwich structure to the first ARB cycle and then decreased from the first to the third ARB cycle. Upon reaching five ARB cycles, the tensile strength of the composite increased again. The variation in the elongation of the composite exhibited a tendency similar to that of its tensile strength. It is observed that with increasing strain, the microhardness values of the Al, Cu, and Ni layers increased, and that the dominant fracture mechanisms of Al and Cu were dimple formation and ductile fracture. In contrast, brittle fracture in specific plains was the main characteristic of Ni fractures.  相似文献   
959.
Since the production of tinplate with non-earing properties is difficult, especially when it is produced via the double-reduction process, the optimal degree of second cold reduction is particularly important for achieving desirable drawing properties. The evolution of texture and the earing propensity of double-reduction tinplate with different extents of second reduction were investigated in this study. Optical microscopy and scanning electron microscopy were used to observe the changes in the microstructure at various extents of reduction. Two common testing methods, X-ray diffraction (XRD) and electron backscatter diffraction, were used to investigate the texture of the specimens, which revealed the effects of deformation percentage on the final texture development and the change in the grain boundary. The earing rate was determined via earing tests involving measurement of the height of any ear. The results obtained from both XRD analyses and earing tests revealed the same ideal value for the second cold reduction on the basis of the relationship between crystallographic texture and the degree of earing.  相似文献   
960.
The Cu2MoS4 nanoparticles were prepared using a relatively simple and convenient solid-phase process, which was applied for the first time. The crystalline structure, morphology, and optical properties of Cu2MoS4 nanoparticles were characterized using X-ray diffraction, X-ray photoelectron spectroscopy, field emission scanning electron microscopy, and UV-vis spectrophotometry. Cu2MoS4 nanoparticles having a band gap of 1.66 eV exhibits good photocatalytic activity in the degradation of methylene blue, which indicates that this simple process may be critical to facilitate the cheap production of photocatalysts.  相似文献   
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