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1.
Breast elastography has been available for more than 15 years but is not widely incorporated into clinical practice. Many publications report extremely high accuracy for various breast elastographic techniques. However, results in the literature are extremely variable. This variability is most likely due to variations in technique, a relatively steep learning curve, and variability in methods between vendors. This article describes our protocol for performing breast elastography using both strain elastography and shear wave elastography, which produces high sensitivity and specificity. Additionally, we will describe the most commonly known false-positive and false-negative lesions as well as how to detect them.  相似文献   
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《中国现代医生》2020,58(2):135-138+封三
目的探讨实时剪切波弹性成像在评估拉米夫定治疗乙肝纤维化临床疗效中的作用。方法选取2017年1月~2018年1月我院收治的80例乙肝纤维化患者,根据随机数字法分为对照组和观察组,每组40例。对照组采用常规治疗,观察组在对照组的基础上给予拉米夫定进行治疗,治疗6个月。比较两组治疗前后肝功能、肝纤维化指标,利用实时剪切波弹性成像评估两组治疗前后肝脏弹性模量值及肝穿刺活检情况,并进行比较。结果两组治疗后AST、ALT、TBIL水平均明显低于治疗前,差异有统计学意义(P0.05);观察组治疗后AST、ALT、TBIL水平均明显低于对照组,差异有统计学意义(P0.05);两组治疗后HA、LN、PⅢPN-P、CL-Ⅳ水平及杨氏弹性模量值均显著低于治疗前,差异有统计学意义(P0.05);观察组治疗后HA、LN、PⅢPN-P、CL-Ⅳ水平及杨氏弹性模量值均显著低于对照组,差异有统计学意义(P0.05);与治疗前相比,两组治疗后肝穿刺活检结果均有好转,尤其是汇管区、肝小叶内炎症及肝纤维化改善明显。结论实时剪切波弹性成像作为肝脏硬度定量检测的无创性技术,可用于拉米夫定治疗乙肝纤维化临床疗效评估的重要方法。  相似文献   
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目的通过探讨前循环缺血性卒中老年患者颈总动脉分叉处血流壁切应力的水平分析其在颈动脉斑块形成过程中的影响。方法本研究选择前循环缺血性卒中老年患者,应用经皮血管彩超测量颈动脉斑块及其稳定性以及对研究对象测量患侧颈动脉血流速度、血管内径和血液粘滞度,通过公式计算血流壁切应力。结果无斑块组和有斑块组之间、高回声和低回声斑块组之间血流壁切应力均有显著性差异(P<0.01)。结论血流壁低切应力促进颈动脉斑块、尤其是不稳定斑块的形成。  相似文献   
5.
目的为抑制脑血栓形成,合成与TF基因启动子区切应力反应元件(SSRE)形成三链DNA的硫代磷酸酯寡核苷酸(TFO)。方法设计TFO序列14条,采用固相亚磷酰胺三酯固相法合成TFO。硫代磷酸酯修饰在TFO的3'末端进行。应用电泳迁移分析(EMSA)观察寡核苷酸和硫代脱氧寡核苷酸的亲和性。结果在设计合成的14条寡核苷酸中,与靶序列能形成三链DNA的TFO只有T21GTa、T14GTa和T15GTa,其Kd值分别为3.6×10-10、1.0×10-9和1.0×10-8(M),经硫代磷酸酯修饰后分别为:2.3×10-9、3.8×10-9和1.5×10-8。结论硫代磷酸酯修饰的T21GTa-ps、T14GTa-ps和T15GTa-ps能够与TF基因启动子SSRE的3个位点形成三链DNA。  相似文献   
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In this study, human umbilical vein and human saphenous vein endothelial cells were seeded on glass and exposed to fluid shear in a parallel-plate flow chamber. Cell retention, morphology and migration were studied as a function of shear stress and of adhesion time prior to exposure to shear. Three-hour and 24-h adhesion times gave rise to comparable cell retention values after 2 h of flow for both cell types. Cell retention decreased from 85 to 20% as shear stress increased from 88 to 264 dynes cm−2 (8.8 to 26 Pa). Mean spreading areas decreased after the onset of flow, but subsequently stabilized to plateau values, which were smaller at higher shear stresses. Shape factors increased faster to higher values as cells were exposed to higher shear stresses, without any obvious preference in orientation of the cells with respect to the direction of flow. Migration was unidirectional with flow and linear with time. Migration was faster for cells which had adhered for 24 h than for cells which had adhered for 3 h and was accompanied by the presence of fibrillar structures left behind on the surface upstream of migrating cells. It is concluded that after 3 h adhesion to glass, cells have adhered with an adhesion strength that does not substantially increase during the next 21 h. However, during this time changes in cell-substratum interactions seem to occur judging by the differences in, e.g., migration rates.  相似文献   
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采用流室定量研究阶跃切应力对内皮细胞释放前列环素(pGI_2)的影响。对流室中的内皮细胞连续100分钟施加1、10、20dyne/cm ̄2的阶跃剪切应力,用放免法测流室的8个时间段流出液的6-keto-PGFi_(1a)。绘出切应力刺激内皮细胞释放PGI_2的曲线。结果表明:未施加切应力时,内皮细胞释放PGI_2的量在检测限以下,施加切应力后,PGI_2释放速率很快达极大值,且又在数分钟内减小.施加阶跃切应力越大,PGI_2释放速率曲线峰值越高,但衰减也越快,在80~100分钟时间内的前列环素释放速率平均值也越大。由此提示,在活体中血液流变学因素一血流切应力对血管内皮细胞释放前列环素有促进作用。  相似文献   
8.
Magnetic resonance elastography (MRE) is a phase-contrast technique that can spatially map shear stiffness within tissue-like materials. To date, however, MRE of the lung has been too technically challenging-primarily because of signal-to-noise ratio (SNR) limitations and phase instability. We describe an approach in which shear wave propagation is not encoded into the phase of the MR signal of a material, but rather from the signal arising from a polarized noble gas encapsulated within. To determine the feasibility of the approach, three experiments were performed. First, to establish whether shear wave propagation within lung parenchyma can be visualized with phase-contrast MR techniques, MRE was performed on excised porcine lungs inflated with room air. Second, a phantom consisting of open-cell foam filled with thermally polarized (3)He gas was imaged with MRE to determine whether shear wave propagation can be encoded by the gas. Third, preliminary evidence of the feasibility of MRE in vivo was obtained by using a longitudinal driver on the chest of a normal volunteer to generate shear waves in the lung. The results suggest that MRE in combination with hyperpolarized noble gases is potentially useful for noninvasively assessing the regional elastic properties of lung parenchyma, and merits further investigation.  相似文献   
9.
Summary. Background: Pathological shear stress induces platelet aggregation that is dependent on von Willebrand factor (VWF) binding to glycoprotein (Gp)Ib‐IX‐V and phosphatidylinositol 3‐kinase activation. We tested the hypothesis that pathological shear stress stimulates phosphatidylinositol 3,4,5‐trisphosphate (PIP3) synthesis by directing the assembly of a molecular signaling complex that includes class IA phosphatidylinositol 3‐kinase (PI 3‐KIA). Methods: Platelets were subjected to 120 dynes cm?2 shear stress in a cone‐plate viscometer. Resting and sheared platelets were lyzed, immunoprecipitations of PI 3‐KIA performed, or lipids extracted for PIP3 measurements. α‐Actinin was incubated with phosphatidylinositol 4,5‐bisphosphate (PIP2), immunoprecipitated, and used as a substrate for in vitro PI 3‐KIA activity. Results: Pathological shear stress induces biphasic PIP3 production. In resting platelets, PI 3‐KIA associates with α‐actinin and PIP2. After exposure to shear stress, α‐actinin and PIP2 rapidly disassociate from PI 3‐KIA. PI 3‐KIA then gradually re‐associates with PIP2 and α‐actinin, and this complex becomes linked to GpIbα through the cytoskeleton. PIP3 production and the observed changes in the association between α‐actinin, PIP2, and PI 3‐KIA are inhibited when VWF binding to GpIbα is blocked. In a cell‐free system, α‐actinin binds PIP2 and when the α‐actinin–PIP2 complex is added to platelet PI 3‐KIA, PIP3 production is stimulated. Conclusions: These results suggest that pathological shear‐induced VWF binding to GpIb‐IX‐V stimulates PIP3 production through the assembly of an α‐actinin‐based complex that colocalizes PI 3‐KIA with substrate PIP2.  相似文献   
10.
采用等离子技术对碳纤维(CF)进行接枝芳基乙炔(PAA)处理,研究了影响CF/PAA复合材料层间剪切强度(ILSS)的因素。结果表明,经等离子接枝PAA处理后,复合材料的ILSS有了很大提高。SEM显示经接枝处理后CF和PAA树脂之间的界面结合紧密,改善了复合材料的界面结合性能。  相似文献   
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