57 results on '"Xu, Hao-Liang"'
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2. Figure S8 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
3. Figure S8 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
4. Supplementary Video 2 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
5. Supplementary Figure legends and Methods from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
6. Figure S6 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
7. Figure S1, S2, S3, and S4 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
8. Supplementary Video 1 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
9. Figure S5 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
10. Figure S10 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
11. Supplementary Figure legends and Methods from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
12. Figure S7 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
13. Figure S1, S2, S3, and S4 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
14. Figure S9 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
15. Data from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
16. Figure S7 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
17. Figure S5 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
18. Figure S6 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
19. Supplementary Video 1 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
20. Supplementary Video 2 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
21. Figure S9 from CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
22. Astragalus polysaccharide mitigates transport stress-induced hepatic metabolic stress via improving hepatic glucolipid metabolism in chicks
23. Transport Stress Induced Cardiac NO-NOS Disorder Is Mitigated by Activating Nrf2/HO-1/NQO1 Antioxidant Defense Response in Newly Hatched Chicks
24. Subarachnoid hemorrhage in C57BL/6J mice increases motor stereotypies and compulsive-like behaviors
25. CD44 Regulates Formation of Spheroids and Controls Organ-Specific Metastatic Colonization in Epithelial Ovarian Carcinoma
26. Abstract B57: Adhesion and beyond: CD44 in ovarian cancer spheroids
27. Abstract WP263: Early Brain Injury After Subarachnoid Hemorrhage and It’s Potential Role in Epileptogenesis
28. Self-loosening Analysis of Bolted Joints
29. FTY720 Preserves Blood-Brain Barrier Integrity Following Subarachnoid Hemorrhage in Rats (I11.012)
30. FTY720 Preserves Blood-Brain Barrier Integrity Following Subarachnoid Hemorrhage in Rats (P5.230)
31. Abstract W P233: FTY720 Preserves Arteriolar Vasodilating Function after Subarachnoid Hemorrhage
32. Protective role of fingolimod (FTY720) in rats subjected to subarachnoid hemorrhage
33. Changes in the metabolism of sphingolipids after subarachnoid hemorrhage
34. Pharmacologic blockade of vascular adhesion protein-1 lessens neurologic dysfunction in rats subjected to subarachnoid hemorrhage
35. Study on Technological Evaluation Modeling of Smart Grid
36. Complex modulation of the expression of PKC isoforms in the rat brain during chronic type 1 diabetes mellitus
37. Subarachnoid hemorrhage (SAH)‐linked brain inflammation contributes to arteriolar dilating dysfunction and neuropathology in rats
38. Purinergic mechanisms in gliovascular coupling
39. Aldose reductase inhibition ameliorates the detrimental effect of estrogen replacement therapy on neuropathology in diabetic rats subjected to transient forebrain ischemia
40. Caffeine and the Control of Cerebral Hemodynamics
41. Estrogen replacement therapy in diabetic ovariectomized female rats potentiates postischemic leukocyte adhesion in cerebral venules via a RAGE-related process
42. PKC modulation of neurovascular coupling
43. Astrocytes are a key conduit for upstream signaling of vasodilation during cerebral cortical neuronal activation in vivo
44. ATP release and hydrolysis contribute to rat pial arteriolar dilatation elicited by neuronal activation
45. ATP release and hydrolysis contributes to pial arteriolar dilations elicited by neuronal activation
46. Degeneration of noradrenergic fibres from the locus coeruleus causes tight-junction disorganisation in the rat brain
47. Vascular Adhesion Protein-1 Plays an Important Role in Postischemic Inflammation and Neuropathology in Diabetic, Estrogen-Treated Ovariectomized Female Rats Subjected to Transient Forebrain Ischemia
48. Contribution of vascular adhesion protein-1 (VAP-1) to post-ischemic cerebral venular leukocyte adhesion and infiltration in diabetic, ovariectomized (OVX) and estrogen-treated female rats
49. Prolonged therapeutic window associated with pharmacologic blockade of vascular adhesion protein-1 (VAP-1)-related post-ischemic leukocyte adhesion in diabetic, ovariectomized (OVX) female rats given chronic estrogen replacement
50. Role of astrocytes and gap junctions in seizure-induced pial arteriolar dilations in rats
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