19 results on '"Wang, Guopeng"'
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2. Substrate and drug recognition mechanisms of SLC19A3
3. Physiologically-based pharmacokinetic modeling for optimal dosage prediction of olaparib when co-administered with CYP3A4 modulators and in patients with hepatic/renal impairment
4. Cryo-EM and femtosecond spectroscopic studies provide mechanistic insight into the energy transfer in CpcL-phycobilisomes
5. A Novel Smart Contract Reentrancy Vulnerability Detection Model based on BiGAS
6. CT evaluation of unilateral pulsatile tinnitus with jugular bulb wall dehiscence
7. Structural insights into the covalent regulation of PAPP-A activity by proMBP and STC2
8. Manipulating the insulator–metal transition through tip-induced hydrogenation
9. Physiologically based pharmacokinetic combined BTK occupancy modeling for optimal dosing regimen prediction of acalabrutinib in patients alone, with different CYP3A4 variants, co-administered with CYP3A4 modulators and with hepatic impairment
10. Research on Ammonia Removal from Reject Water Produced from Anaerobic Digestion of Thermally Hydrolyzed Sludge Through Partial Nitrification—Anammox
11. Structure, function and pharmacology of human itch receptor complexes
12. Structural insight into the mechanism of energy transfer in cyanobacterial phycobilisomes
13. Development of an In Vivo Predictive Dissolution Methodology of Topiroxostat Immediate-Release Tablet Using In Silico Simulation
14. CT venography correlate of transverse sinus stenosis and venous transstenotic pressure gradient in unilateral pulsatile tinnitus patients with sigmoid sinus wall anomalies
15. Structural insights into secretory immunoglobulin A and its interaction with a pneumococcal adhesin
16. Distributed finite frequency fault detection observer design for spatially interconnected time-delay systems with interconnected chains
17. Nanoscale Structural Modulation and Low-temperature Magnetic Response in Mixed-layer Aurivillius-type Oxides
18. Observation of Exchange Anisotropy in Single-Phase Layer-Structured Oxides with Long Periods
19. Ferromagnetic and ferroelectric properties of Aurivillius phase Bi9Fe4.7Me0.3Ti3O27 (Me = Fe, Co, Ni, Mn)
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