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1. Clinical applications of fibroblast activation protein inhibitor positron emission tomography (FAPI-PET)

2. The predictive power of baseline metabolic and volumetric [18F]FDG PET parameters with different thresholds for early therapy failure and mortality risk in DLBCL patients undergoing CAR-T-cell therapy

3. ON THE PROPAGATION OF EQUATORIAL WAVES INTERACTING WITH A NON-UNIFORM CURRENT

6. A Role of Non-FDG Tracers in Lung Cancer?

7. On equatorial wave–current interactions

8. On propagation of linear waves for model of equatorial wave–current interactions

9. Blow-up criteria for modified two-component generalization of hyper-elastic rod equation

10. Construction of peakon-antipeakon solutions and ill-posedness for the b-family of equations

11. Intra-Individual Comparison of Physiologic [68Ga]Ga-PSMA-11 and [18F]PSMA-1007 Uptake in Ganglia in Patients with Prostate Cancer: A Retrospective, Monocentric Analysis

12. Head-to-Head Intra-Individual Comparison of Biodistribution and Tumor Uptake of [18F]FAPI-74 with [18F]FDG in Patients with PDAC: A Prospective Exploratory Study

13. ON THE PROPAGATION OF EQUATORIAL WAVES INTERACTING WITH A NON-UNIFORM CURRENT

15. Local-in-space blow-up criteria for two-component nonlinear dispersive wave system

16. FAP and FAPI-PET/CT in Malignant and Non-Malignant Diseases: A Perfect Symbiosis?

17. Local-in-space blow-up criteria for a class of nonlinear dispersive wave equations

18. On blow-up criteria for a class of nonlinear dispersive wave equations with dissipation

19. Blow-up of solutions for the dissipative Dullin–Gottwald–Holm equation with arbitrary coefficients

20. On Long-Time Dynamics of the Solution of Doubly Nonlinear Equation

21. On blow-up phenomena for the weakly dissipative Camassa–Holm equation

22. On long-time behaviour of the positive solutions of nonhomogeneous non-Newtonian equation

23. On existence and nonexistence of the positive solutions of non-newtonian filtration equation

24. On blow-up of solution of nonhomogeneous polytropic equation with source

25. Long-time behavior of solutions of some doubly nonlinear equation

26. Blow-Up Phenomena For Polytropic Equation With Inhomogeneous Density And Source

27. On The Behavior Of The Solution Of The Dissipative Camassa-Holm Equation With The Arbitrary Dispersion Coefficient

28. Quantitative Homogenization of Attractors of Non-Newtonian Filtration Equations

29. [68 Ga]Ga-FAPI versus [18F]F-FDG in malignant melanoma: complementary or counterpoint?

30. Blow-up phenomena for the weakly dissipative Dullin–Gottwald–Holm equation

35. Initial results with [18F]FAPI-74 PET/CT in idiopathic pulmonary fibrosis.

36. Intra-Individual Comparison of Physiologic [ 68 Ga]Ga-PSMA-11 and [ 18 F]PSMA-1007 Uptake in Ganglia in Patients with Prostate Cancer: A Retrospective, Monocentric Analysis.

37. Head-to-Head Intra-Individual Comparison of Biodistribution and Tumor Uptake of [ 18 F]FAPI-74 with [ 18 F]FDG in Patients with PDAC: A Prospective Exploratory Study.

38. On Long-Time Dynamics of the Solution of Doubly Nonlinear Equation.

39. Blow-up phenomena for polytropic equation with inhomogeneous density and source.

40. Blow-up criteria for modified two-component generalization of hyper-elastic rod equation.

41. Researchers at Medical Faculty and University Hospital Duesseldorf Release New Data on Theranostics [Clinical applications of fibroblast activation protein inhibitor positron emission tomography (FAPI-PET)].

42. Local null controllability of a class of non-Newtonian incompressible viscous fluids.

43. Global regularity for the 3D compressible magnetohydrodynamics with general pressure.

44. Optimal spiral-like solutions near a singular extremal in a two-input control problem.

45. On long-time behaviour of the positive solutions of nonhomogeneous non-Newtonian equation.

47. Long-time behavior of solutions of some doubly nonlinear equation.

48. Blow up of negative initial-energy solutions of a system of nonlinear wave equations with variable-exponent nonlinearities.

49. The impact of FAP imaging in lung cancer and beyond: a new chapter.

50. On equatorial wave–current interactions.

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