1.
Effects of cyclic-tension force on the expression of MMP-1 mRNA in HPDLF
周期性牵张力对人牙周膜细胞MMP-1 mRNA表达的影响
2.
Effects of Cyclic-tension Force on the Biological Change and the Expression of RANKL and M-CSF by Mouse Bone Marrow Stromal Cells;
周期性牵张力对鼠骨髓基质细胞生物学特性及RANKL、M-CSF蛋白表达的影响
3.
Study of Mechanics-mechanism on Morphocytological Changes of Myoblast Induced by Cyclic Strain;
周期性牵张应力作用下大鼠成肌细胞形态改变力学响应机制的研究
4.
Experimental Study on the Overexpression of Detrusor Smooth Muscle Cell Connexin43 by Cyclic Stretch in Vitro;
周期性牵张诱导膀胱逼尿肌细胞高表达Cx43的实验研究
5.
Role of p38 MAPK in cyclic mechanical stretch induced HMGB1 expression in alveolar macrophages
p38 MAPK在周期性机械牵张诱导肺泡巨噬细胞表达HMGB1中的作用
6.
Effects of Cyclic Mechanical Stretch on the Activity of STAT3 in Human Bronchial Epithelial Cell(16HBEC)
周期性机械牵张对人支气管上皮细胞(16HBE)STAT3的影响
7.
Effect of elastic stress on expression of core-binding factorα1 in human periodontal ligament cells in vitro;
人牙周膜细胞在弹性牵张力作用下核心结合因子的表达
8.
The circumferential normal stress is tensile.
周向正应力是张性的。
9.
Biological Responses of Osteoblast-like Cells in Three Dimensional Culture under Cyclic Mechanical Stretch and Its Mechanism;
周期性牵拉应力下三维培养的成骨样细胞的生物力学效应及其机制的研究
10.
The Research of the Effect of Tensile Force on Periodontal Ligament Fibroblast and Metabolism of Extracellular Matrix;
牵张应力对牙周膜成纤维细胞及细胞外基质代谢影响的研究
11.
Identification of Osteogenesis Genes Responsible for Mechanical Stretch-induced Differentiation of Human Periodontal Ligament Cells;
机械牵张力诱导牙周膜细胞成骨分化的基因调控机制的研究
12.
Psoas stretch is negative.
腰大肌牵张试验显阴性。
13.
The Biomechanics Characteristic of "Stretch-Shorting Circle" in Lower Limbs of Human Body in Different Loads;
不同负荷“牵拉-缩短周期”活动中下肢肌肉的力学特征研究
14.
Application Research on Improving Sanda Players Muscle Force and Technique Quality by Adopting Persistence Static Draught and Stretching;
持续性静力牵张法改善运动员肌肉力量和技术质量的研究
15.
periodic rating
周期性负载工作能力
16.
Resaerch on Muscle s Flexibility Characteristics in "Stretch-Shorting Circle" and the Training Method;
“牵拉-缩短周期”活动中肌肉的弹性特征及训练方法研究
17.
Effects of Mechanical Stress on Osteoclast Protein Expression-a Proteomic Study;
机械性牵张力在破骨细胞形成过程中作用的差异蛋白质组学研究
18.
Effects of Different Magnitudes of Mechanical Strain on Biological Characteristics of Osteoblasts in Vitro;
不同大小机械牵张力对成骨细胞生物学特性的影响