236 results on '"Kelley, Douglas H."'
Search Results
2. Potentiating glymphatic drainage minimizes post-traumatic cerebral oedema
3. Laboratory model of electrovortex flow with thermal gradients, for liquid metal batteries
4. Sizes and shapes of perivascular spaces surrounding murine pial arteries
5. Image analysis techniques for in vivo quantification of cerebrospinal fluid flow
6. Oscillating currents stabilize aluminium cells for efficient, low carbon production
7. Glymphatic influx and clearance are accelerated by neurovascular coupling
8. Publisher Correction: Glymphatic influx and clearance are accelerated by neurovascular coupling
9. Investigation of Echo Source and Signal Deterioration in Ultrasound Measurement of Metal Melt
10. Stabilizing a Low-Dimensional Model of Magnetohydrodynamic Instabilities in Aluminum Electrolysis Cells
11. Stabilizing Electrolysis Cells with Oscillating Currents: Amplitude, Frequency, and Current Efficiency
12. Gaps in the wall of a perivascular space act as valves to produce a directed flow of cerebrospinal fluid: a hoop-stress model
13. Oscillating Currents Stabilize Aluminum Cells for Efficient, Low Carbon Production
14. Competing forces in liquid metal electrodes and batteries
15. Fluid Mechanics of Liquid Metal Batteries
16. The glymphatic system: Current understanding and modeling
17. A network model of glymphatic flow under different experimentally-motivated parametric scenarios
18. Stabilizing a Low-Dimensional Model of Magnetohydrodynamic Instabilities in Aluminum Electrolysis Cells
19. Stabilizing Electrolysis Cells with Oscillating Currents: Amplitude, Frequency, and Current Efficiency
20. Investigation of Echo Source and Signal Deterioration in Ultrasound Measurement of Metal Melt
21. A coin vibrational motor swimming at low Reynolds number
22. Vector cylindrical harmonics for low-dimensional convection models
23. Geometry-induced rectification of looped oscillatory flows
24. Hydraulic resistance of three-dimensional pial perivascular spaces in the brain
25. Dispersion as a waste-clearance mechanism in flow through penetrating perivascular spaces in the brain
26. Author Correction: Dispersion as a waste-clearance mechanism in flow through penetrating perivascular spaces in the brain
27. Quantifying stretching and rearrangement in epithelial sheet migration
28. Convection-Diffusion Model of Lithium-Bismuth Liquid Metal Batteries
29. Direct multi-scale reconstruction of velocity fields from measurements of particle tracks
30. Perivascular pumping of cerebrospinal fluid in the brain with a valve mechanism
31. Competing forces in liquid metal electrodes and batteries
32. Mechanically facilitated micro-fluid mixing in the organ of Corti
33. Sizes and Shapes of Perivascular Spaces Surrounding Murine Pial Arteries
34. Cerebrospinal Fluid Flow
35. Hydraulic resistance of periarterial spaces in the brain
36. Flow of cerebrospinal fluid is driven by arterial pulsations and is reduced in hypertension
37. Oscillations of the large-scale circulation in experimental liquid metal convection at aspect ratios 1.4–3
38. A real-time in vivo clearance assay for quantification of glymphatic efflux
39. Apparatus for modeling peristaltic pumping in biophysical flows
40. Sensitivity analysis on a network model of glymphatic flow
41. Perivascular pumping in the mouse brain: Improved boundary conditions reconcile theory, simulation, and experiment
42. Perivascular Cerebrospinal Fluid Flow is the Primary Source of Interstitial Fluid in the Anesthetized Rat Brain
43. A hydraulic resistance model for interstitial fluid flow in the brain
44. Simple analytic model for peristaltic flow and mixing
45. Microscale mechanisms of ultrasound velocity measurement in metal melts
46. Cerebrospinal fluid is a significant fluid source for anoxic cerebral oedema
47. A network model of glymphatic flow under different experimentally-motivated parametric scenarios
48. Brain cerebrospinal fluid flow
49. Bulk flow of cerebrospinal fluid observed in periarterial spaces is not an artifact of injection
50. Author response: Bulk flow of cerebrospinal fluid observed in periarterial spaces is not an artifact of injection
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