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1.
Regulation of P2 Receptors on Motility of Gastrointestinal Smooth Muscle in the Rat;
P2受体对大鼠胃肠道平滑肌运动的调节作用
2.
P2 receptors in blood vessel and its relationship with some vascular diseases
血管P2受体的功能及其与某些血管疾病的关系
3.
Function of P2 receptors in skeletal system and inflammatory disease of bone
骨骼系统P2受体的功能与炎症性骨疾病
4.
Therapeutic potential of extracellular ATP and P2 receptors in nervous system diseases
细胞外ATP及其P2受体在神经系统疾病中的治疗潜能(英文)
5.
Study of Purinergic P2 Receptors on Spontaneous Contraction and Its Mechanism in Gastric Antrial Smooth Muscle of Guinea-pig;
嘌呤能P2受体对豚鼠胃窦环行肌自发性收缩的作用及其机制的研究
6.
Extracellular Purines Via the Activation of P2 Purinergic Receptors Induce Cell Cycle Progression and Proliferation Ofhepatocytes;
细胞外ATP经P2嘌呤受体诱导细胞周期进展与肝脏增殖的研究
7.
Detection of Binding of Antibodies with Recombinant House Dust Mite Allergen (rDer p2) by Surface Plasmon Resonance Technique
表面等离子体共振技术检测重组户尘螨变应原rDer p2与抗体的结合
8.
Antibody to Sulfatide and P2 Myelin Protein and Ganglioside GM1 in Guillain-Barré Syndrome and Chronic Inflammatory Demyelinating Polyradiculoneuropathy;
抗硫脂抗体、P2抗体、抗神经节苷脂GM1抗体在炎性周围神经病患者中的检测意义
9.
P1: Female bisexual; P2: Rare male; H1, H2 and H3: groups of hybird progeny. Dotted lines delimit none interpreted activity zones.
两性卤虫;P2:罕见雄体;H1、2和H3:为杂交后代类型。虚线区表示未做分析的活性区域。
10.
In general terms, N equals PI plus P2.
用普通的说法,n=P1+P2。
11.
A Method for Designing and Optimizing DVS Based on AVS-P2
基于AVS-P2的视频服务器设计优化方法
12.
Development and Optimization of AVS-P2 Software Encoder based on TMS320DM6446 Platform
基于TMS320DM6446的AVS-P2编码器的开发及优化
13.
Study on Cancer Stem Cell Property of the Human Hepatocellular Carcinoma Cell Line P2-HCC;
人肝癌细胞系P2-HCC的癌干细胞特性研究
14.
The Application of Nitrogen Foam Acid Stimulation Technology in Well Huagang 104-P2.
氮气泡沫酸化技术在华港104-P2井的应用
15.
The application of foamed acid in the blocking removal of Huagang 104-P2 Well
泡沫酸解堵技术在华港104-P2井中的应用
16.
Suppression of airway inflammation in a mouse model of asthma by Der p2 recombined BCG
Der p2重组BCG对哮喘小鼠气道炎症的抑制作用
17.
orphan receptor
孤独受体,孤儿受体[目前尚未找到配体的受体]
18.
multichain receptor mode
多链受体模型[由受体及受体相关分子共同组成高亲和力受体]