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31.
模拟人体体温下对超高分子量聚乙烯(UHMWPE)人工髋臼材料进行了压缩力学性能的试验研究,并与室温下的试验结果进行了对比.当由室温22℃升高到体温37℃和40℃时,其屈服应力呈明显的下降趋势,分别下降了23.1%和31.9%,由体温37℃升高到40℃时,二者仅差3℃,其屈服应力亦下降了11.5%.同时还对不同加载速度下UHMWPE试件压缩变形过程进行了红外辐射温度的监测与分析.不同加载速度下试件压缩变形过程中的红外辐射温度均有明显升高,加载时间越长,试件平均红外辐射温度越高.试验结果分析表明,不能忽视植入人体后UHMWPE人工髋臼局部受压时温度的升高,特别不能忽视植入人体后在人体体温作用下其力学性能的改变和下降,人体体温的作用是UHMWPE人工髋臼出现过早失效的原因之一.本试验研究为UHMWPE材料在人体环境中的应用研究提供了参考. 相似文献
32.
Guodong Chen Shuxue Zhou Guangxin Gu Limin Wu 《Macromolecular chemistry and physics.》2005,206(8):885-892
Summary: Silica sols were first prepared based on different ratios of tetraethoxysilane (TEOS) and methyltriethoxysilane (MTES) by an acid‐catalyzed sol–gel process, and then incorporated into acrylic‐based polyurethanes. The structures and morphologies of silicone‐oxo clusters were studied by 29Si NMR, SAXS, and scanning electron microscopy (SEM), whereas the mechanical properties of polyurethane/silica hybrids were characterized by DMA and tensile tests. The silicone‐oxo clusters in both silica sol and polyurethane hybrids became denser and larger at a higher molar ratio of TEOS/MTES and higher silica content, and the silica‐oxo clusters of polyurethane/silica hybrids even became more compact and larger than those of silica sols, increasing the elastic modulus and tensile strength of polyurethane/silica hybrids.
33.
不同转移特性瘤细胞系的筛选及其生物学特性 总被引:1,自引:0,他引:1
目的:探讨与肿瘤转移相关的某些生物学特性。方法:将小鼠乳腺癌Ca761-FP8/L和Ca761-FL10/L经体内筛选得到细胞系Ca761-P5B和Ca761=L6B,并观察其瘤细胞与凝集反应、靶器官组织条件培养基对瘤细胞真挚化作用等,结果:Ca761-P5B具有高肺转移、低淋巴结转移特性,Ca761-L5B具有低肺、低淋巴结转移特性。两个瘤细胞系的细胞表面的糖基表达,对条件培养的趋化反应不同。结 相似文献
34.
Cross education of muscular strength during unilateral resistance training and detraining 总被引:2,自引:0,他引:2
Shima N Ishida K Katayama K Morotome Y Sato Y Miyamura M 《European journal of applied physiology》2002,86(4):287-294
Abstract. The purpose of the present study was to examine the changes in maximum voluntary isometric contraction (MVC) in the contralateral
untrained limb during unilateral resistance training and detraining, and to examine the factors inducing these changes by
means of electrophysiological techniques. Nine healthy males trained their plantar flexor muscles unilaterally 4 days·week–1 for 6 weeks using 3 sets of 10–12 repetitions at 70–75% of one-repetition maximum a day, and detrained for 6 weeks. Progressive
unilateral resistance training significantly (P<0.05) increased MVC, integrated electromyogram (iEMG), and voluntary activation in the trained and contralateral untrained
limbs. The changes in MVC after training were significantly correlated with the changes in iEMG in both limbs. No significant
changes occurred in MVC, voluntary activation, and iEMG in the contralateral limb after detraining. The changes in MVC after
detraining did not correlate with the changes in voluntary activation or iEMG in either limb. Training and detraining did
not alter twitch and tetanic peak torques in either limb. These results suggest that the mechanisms underlying cross education
of muscular strength may be explained by central neural factors during training, but not solely so during detraining.
Electronic Publication 相似文献
35.
工程化肌腱修复肌腱缺损后力学特性的组织学基础 总被引:5,自引:0,他引:5
探讨组织工程化肌腱修复肌腱缺损后体内愈合过程中力学特性的组织学基础。取罗曼鸡肌腱细胞 ,经体外培养、扩增 ,与可降解生物材料聚羟基乙酸筛网构建工程化肌腱 ;将其植入修复 2 0只罗曼鸡第二趾深屈肌腱0 .5~ 0 .8cm缺损。术后第 2、4、6、8周取材 ,对标本进行大体、组织学及生物力学测定。植入 2、4、6、8周 ,新生肌腱在大体形态、细胞及胶原纤维排列方式上与正常肌腱相似 ,但新生肌腱的胶原纤维束并未形成较多的沿肌腱长度方向的致密结构 (“塑形”) ,导致其最大张力增加缓慢 ,到 8周时为 15 .4 0± 10 .6 3N,仅达正常肌腱的 2 3 ;8周时最大张应变为 2 2 .4 9± 10 .2 1 ,比正常肌腱大 10。结果表明 ,单纯聚羟基乙酸作支架 ,材料降解过快 ,新生肌腱失去了正常的力学刺激 ,“塑形”能力差 ,其生物力学强度低。提示 ,保持新生肌腱形成过程中正常的力学刺激对新生肌腱的“塑形”可能是至关重要的。 相似文献
36.
Synthesis and Optical Properties of a New Series of Side‐Chain Poly(amic acid)s With p‐π Conjugation
Summary: After the condensation polymerization of benzoguanamine (BGA) and pyromellitic dianhydride (PMDA) under microwave irradiation, the resulting p‐π conjugate poly(amic acid) was grafted via the azo coupling reaction. The obtained side‐chain polymers were further grafted with TDI‐aliphatic alcohol derivatives and TDI‐aniline derivatives. The third‐order NLO coefficient and response time of PAA and graft polymers were measured by degenerated four wave mixing (DFWM) technique and their fluorescent properties were also investigated. All of the graft polymers have larger NLO coefficients and film‐formability than PAA. Their fluorescent properties were also changed by the different electronic effect of the side‐chains. The influences of the introduction of side‐chains, the side‐chain length and the electronic effect of the substituting groups on the azobenzol side‐chain to both optical properties of the polymers by varying the conjugation degree were investigated.
37.
H. Degens J. M. Sanchez Horneros Y. F. Heijdra P. N. R. Dekhuijzen M. T. E. Hopman 《Acta physiologica (Oxford, England)》2005,184(3):235-242
Aim: Peripheral muscle dysfunction often occurs in patients with chronic obstructive pulmonary disease (COPD). The muscle dysfunction may be caused by a loss of force‐generating capacity, resulting from a loss of muscle mass, as well as by other alterations in contractile properties of skeletal muscle. Methods: The maximal isometric voluntary strength and fatigability were determined in hand‐grip and quadriceps muscles from nine male COPD patients (FEV1 30–50% predicted) and control subjects matched for fat‐free mass (FFM), physical activity level and age. Contractile properties and fatigability of the quadriceps muscle were also studied with electrically evoked isometric contractions. Results: The maximal voluntary force (MVC) and fatigability of the handgrip muscle did not differ between the COPD patients and control subjects. Also the MVC of the quadriceps muscle and the rate of force rise, contraction time, force–frequency relationship and fatigability, as determined with electrically evoked contractions, were similar in patients with COPD and control subjects. Conclusion: Skeletal muscle strength, contractile properties and fatigability are preserved in patients with moderate COPD and a normal FFM and activity level. This suggests that skeletal muscle dysfunction does not take place during moderate COPD until cachexia and/or a decline in physical activity occur. 相似文献
38.
Semenov SY Svenson RH Bulyshev AE Souvorov AE Nazarov AG Sizov YE Posukh VG Pavlovsky A Tatsis GP 《Annals of biomedical engineering》2000,28(1):55-60
The proposed dielectrical relaxation model of the myocardium in the microwave spectrum has been verified both on test solutions and on normal canine myocardium. Furthermore, the model was utilized to reconstruct the changes in tissue properties (including myocardial bulk resistance and water content) following myocardial acute ischemia and chronic infarction. It was shown that the reconstructed myocardial resistance and water content correlate dynamically with the process of the development of acute myocardial ischemic injury. In chronic cases the reconstructed resistance and water content of infarcted myocardium are significantly different from that of normal myocardium: the resistance is lower and water content is higher than in normal myocardium. © 2000 Biomedical Engineering Society.
PAC00: 8764-t, 8719Xx 相似文献
39.
冠状动脉支架抗压缩性能的有限元分析 总被引:5,自引:0,他引:5
冠状动脉支架作为经皮穿刺冠状动脉成形术中保持病变血管畅通的核心器件。其对病变动脉壁的支撑作用如何是支架植入术成功的先决条件之一。依据冠脉支架抗压缩性能的实际测试原型,建立起对应的有限元模型,并利用此方法系统地研究了专利支架设计,其扩张尺度的不同和筋的尺寸变化对支架抵抗两平面压缩性能的影响。结果显示,随支架扩张直径的增大,其抵抗两平面压缩的作用减小,增加支架筋的宽度或厚度能够提高支架的抗压缩性能,且这两个方向尺寸的增加对提高抗压缩性能的作用相当。模拟与实验结果一致,表明有限元模拟可以在一定程度上替代支架原型测试工作。 相似文献
40.
具有三层管壁结构组织工程血管支架的生物力学性能 总被引:2,自引:0,他引:2
目的针对组织工程血管的体内培养技术路线,对所制备的具有三层管壁结构的组织工程血管支架的生物力学性能进行测试,并研究了壁厚对支架力学性能的影响,以保证后续的动物体内移植实验能顺利进行。方法采用涂敷,喷涂.滤沥的方法制备了具有三层管壁结构(多孔PLGA层.致密PU层.多孔PLGA层)的可降解组织工程血管支架,用自制的设备测试了其爆破强度和径向顺应性,并对血管支架进行了缝合强度的测试。结果所制备的厚度为0.295mm-0.432mm的三层结构血管支架的径向顺应性为3.80%/100mmHg-0.57%/100mmHg,爆破强度为160kPa~183kPa,缝合强度为0.63N/针~1.52N/针。结论支架的管壁厚度,尤其是中间层厚度,对支架的力学性能有重要影响。增大壁厚可导致径向顺应性急剧下降,爆破强度和缝合强度线性提高。在所制备的样品中,管壁厚度为0.295mm的支架其综合力学性能最优,可满足血管组织工程体内植入的力学性能要求。 相似文献