All Stories

  1. Predicting biological age using an accumulated neurotoxicity biomarker for amyloid Beta oligomers
  2. How absorbing cells and viruses with a sponge helps make cancer cell therapies more efficiently
  3. Accumulated Cytotoxicity Induced by Islet Amyloid Polypeptide Oligomers in Type 2 Diabetes
  4. How Toxic Proteins, Not Just Plaques, Drive Alzheimer's Brain Damage
  5. Investigating a Relation between Amyloid Beta Plaque Burden and Accumulated Neurotoxicity Caused by Amyloid Beta Oligomers
  6. Modeling the growth of cytosolic TDP-43 inclusion bodies and accumulated neurotoxicity of misfolded oligomers in neurons
  7. Mathematical Modeling of AA Amyloidosis: Coupling SAA-HDL Binding Dynamics with Path-Dependent Renal Aging
  8. Hydrodynamic dispersion drives viral-cellular contact for gene delivery in porous media
  9. Determination of the Applied Thermal Tortuosity of Porous Media with Macroscopic Geometric Parameters Using a Neural Network Model
  10. Mathematical Modeling of Light Chain Aggregation and Cardiac Damage in AL Amyloidosis
  11. D. A. Nield (April 26, 1935–May 25, 2024): A Scientific Memoir
  12. Convolution Neural Network Model Framework to Predict Microscale Drag Force for Turbulent Flow in Porous Media
  13. Does Human Transthyretin Aggregate in Blood Plasma or in Cardiac Tissue? A Mathematical Modeling Study
  14. Instabilities and Bifurcations in Turbulent Porous Media Flow
  15. Symmetry breaking of turbulent flow due to asymmetric vortex shedding in periodic porous media
  16. Modeling of ATP transport in an axon: Effects of spontaneous neuron firing and mitochondrial transfer via tunneling nanotubes
  17. Criterion for Assessing Accumulated Neurotoxicity of Alpha‐Synuclein Oligomers in Parkinson's Disease
  18. Predicting Biological Age Using an Accumulated Neurotoxicity Biomarker for Amyloid Beta Oligomers
  19. A criterion characterizing accumulated neurotoxicity of Aβ oligomers in Alzheimer's disease
  20. Evaluating the Combined Neurotoxicity of Amyloid Beta and Tau Oligomers in Alzheimer's Disease: A Novel Cellular-Level Criterion
  21. Modeling of ATP Transport in an Axon: Effects of Spontaneous Neuron Firing and Mitochondrial Transfer via Tunneling Nanotubes
  22. Evaluating Combined Neurotoxicity of Amyloid Beta and Tau Oligomers in Alzheimer’s Disease: A New Criterion
  23. Effect of diffusivity of amyloid beta monomers on the formation of senile plaques
  24. Simulating the Growth of TATA-Box Binding Protein-Associated Factor 15 Inclusions in Neuron Soma
  25. The growth rate of senile plaques is determined by the competition between the rate of deposition of free Aβ aggregates into plaques and the autocatalytic production of free Aβ aggregates
  26. Criterion for assessing accumulated neurotoxicity of alpha-synuclein oligomers in Parkinson’s disease
  27. A criterion characterizing accumulated neurotoxicity of Aβ oligomers in Alzheimer’s disease
  28. Simulating the growth of TAF15 inclusions in neuron soma
  29. Effects of Time-Dependent Adenosine Triphosphate Consumption Caused by Neuron Firing on Adenosine Triphosphate Concentrations in Synaptic Boutons Containing and Lacking a Stationary Mitochondrion
  30. Numerical modeling of senile plaque development under conditions of limited diffusivity of amyloid-β monomers
  31. The growth rate of senile plaques is determined by the competition between the rate of deposition of free Aβ aggregates into plaques and the autocatalytic production of free Aβ aggregates
  32. Numerical and Analytical Simulation of the Growth of Amyloid-β Plaques
  33. Multiscale modeling and simulation of turbulent flows in porous media
  34. Lewy body radius growth: The hypothesis of the cube root of time dependency
  35. Effects of time-dependent ATP consumption caused by neuron firing on ATP concentrations in synaptic boutons containing and lacking a stationary mitochondrion
  36. Numerical modeling of senile plaque development under conditions of limited diffusivity of amyloid-β monomers
  37. TURBULENT FLOW SYMMETRY-BREAKING IN PERIODIC POROUS MEDIA IN THE INTERMEDIATE-POROSITY REGIME
  38. Modeling the growth of cytosolic TDP-43 inclusion bodies and accumulated neurotoxicity of misfolded oligomers in neurons
  39. Lewy Body Radius Growth: The Hypothesis of the Cube Root of Time Dependency
  40. Numerical and analytical simulation of the growth of amyloid-β plaques
  41. Effect of mitochondrial circulation on mitochondrial age density distribution
  42. Effect of diffusivity of amyloid beta monomers on the formation of senile plaques
  43. Mitochondrial transport in symmetric and asymmetric axons with multiple branching junctions: a computational study
  44. Flow Regimes and Types of Solid Obstacle Surface Roughness in Turbulent Heat Transfer Inside Periodic Porous Media
  45. Why slow axonal transport is bidirectional – can axonal transport of tau protein rely only on motor-driven anterograde transport?
  46. Dynein Dysfunction Prevents Maintenance of High Concentrations of Slow Axonal Transport Cargos at the Axon Terminal: A Computational Study
  47. ATP diffusional gradients are sufficient to maintain bioenergetic homeostasis in synaptic boutons lacking mitochondria
  48. Computational investigation of the effect of reduced dynein velocity and reduced cargo diffusivity on slow axonal transport
  49. Mitochondrial Transport in Symmetric and Asymmetric Axons with Multiple Branching Junctions: A Computational Study
  50. Absorption rate governs cell transduction in dry macroporous scaffolds
  51. NUMERICAL INVESTIGATION OF TURBULENT CONVECTION HEAT TRANSFER IN POROUS MEDIA COMPOSED OF ROUGH SOLID OBSTACLES
  52. ATP diffusional gradients are sufficient to maintain bioenergetic homeostasis in synaptic boutons lacking mitochondria
  53. Effect of mitochondrial circulation on mitochondrial age density distribution
  54. Computational investigation of the effect of reduced dynein velocity and reduced cargo diffusivity on slow axonal transport
  55. Computation of the mitochondrial age distribution along the axon length
  56. Effects of axon branching and asymmetry between the branches on transport, mean age, and age density distributions of mitochondria in neurons: A computational study
  57. Prediction of pore-scale-property dependent natural convection in porous media at high Rayleigh numbers
  58. Why slow axonal transport is bidirectional – can axonal transport of tau protein rely only on motor-driven anterograde transport?
  59. Bidirectional, unlike unidirectional transport, allows transporting axonal cargos against their concentration gradient
  60. Dynein dysfunction prevents maintenance of high concentrations of slow axonal transport cargos at the axon terminal: a computational study
  61. An analytical solution simulating growth of Lewy bodies
  62. The evolution of turbulent micro-vortices and their effect on convection heat transfer in porous media
  63. Effects of axon branching and asymmetry between the branches on transport, mean age, and age density distributions of mitochondria in neurons: a computational study
  64. Can the lack of fibrillar form of alpha-synuclein in Lewy bodies be explained by its catalytic activity?
  65. Model of drug delivery to populations composed of two cell types
  66. Computation of organelle age during axonal transport
  67. An analytical solution simulating growth of Lewy bodies
  68. Symmetry breaking of turbulent flow in porous media composed of periodically arranged solid obstacles
  69. Computation of the mitochondrial age distribution along the axon length
  70. Simulation of a sudden drop‐off in distal dense core vesicle concentration in Drosophila type II motoneuron terminals
  71. A macroscopic two-length-scale model for natural convection in porous media driven by a species-concentration gradient
  72. Can the lack of fibrillar form of alpha-synuclein in Lewy bodies be explained by its catalytic activity?
  73. Simulation of a sudden drop-off in distal dense core vesicle concentration in Drosophila type II motoneuron terminals
  74. Bidirectional, unlike unidirectional transport, allows transporting axonal cargos against their concentration gradient
  75. EFFECT OF MICROSCALE TURBULENT STRUCTURES DYNAMICS ON FORCED CONVECTION IN TURBULENT POROUS MEDIA FLOW
  76. TURBULENT MICROSCALE FLOW FIELD PREDICTION IN POROUS MEDIA USING CONVOLUTIONAL NEURAL NETWORKS
  77. Modeling tau transport in the axon initial segment
  78. How old are dense-core vesicles residing in en passant boutons: simulation of the mean age of dense-core vesicles in axonal arbours accounting for resident and transiting vesicle populations
  79. Numerical Modeling of Momentum Dispersion in Porous Media Based on the Pore Scale Prevalence Hypothesis
  80. Effects of pore scale on the macroscopic properties of natural convection in porous media
  81. A Novel Porcine Model for the Study of Cerebrospinal Fluid Dynamics: Development and Preliminary Results
  82. Modelling transport and mean age of dense core vesicles in large axonal arbours
  83. Identifying the Critical Factors Governing Translaminar Pressure Differential Through a Compartmental Model
  84. Marangoni convection of a viscous fluid over a vibrating plate
  85. A Numerical Study of Sensitivity Coefficients for a Model of Amyloid Precursor Protein and Tubulin-Associated Unit Protein Transport and Agglomeration in Neurons at the Onset of Alzheimer's Disease
  86. Investigating sensitivity coefficients characterizing the response of a model of tau protein transport in an axon to model parameters
  87. The Onset of Convection in an Anisotropic Heterogeneous Porous Medium: A New Hydrodynamic Boundary Condition
  88. Simulating the effect of formation of amyloid plaques on aggregation of tau protein
  89. A new mechanism for buoyancy driven convection in pulsating viscous flows: A theoretical study
  90. Simulating Reversibility of Dense Core Vesicles Capture in En Passant Boutons: Using Mathematical Modeling to Understand the Fate of Dense Core Vesicles in En Passant Boutons
  91. How the formation of amyloid plaques and neurofibrillary tangles may be related: a mathematical modelling study
  92. A new hydrodynamic boundary condition simulating the effect of rough boundaries on the onset of Rayleigh-Bénard convection
  93. Using Resampling Residuals for Estimating Confidence Intervals of the Effective Viscosity and Forchheimer Coefficient
  94. Simulating tubulin-associated unit transport in an axon: using bootstrapping for estimating confidence intervals of best-fit parameter values obtained from indirect experimental data
  95. Turbulence modeling for flows in wall bounded porous media: An analysis based on direct numerical simulations
  96. Free Convection: Cavities and Layers
  97. Modeling of submicron particle filtration in an electret monolith filter with rectangular cross-section microchannels
  98. What can trigger the onset of Parkinson's disease – A modeling study based on a compartmental model of α-synuclein transport and aggregation in neurons
  99. The Onset of Convection in a Sloping Layered Porous Medium: Effects of Local Thermal Non-equilibrium and Heterogeneity
  100. A direct numerical simulation study on the possibility of macroscopic turbulence in porous media: Effects of different solid matrix geometries, solid boundaries, and two porosity scales
  101. The Effect of Spatially Nonuniform Internal Heating on the Onset of Convection in a Horizontal Fluid Layer
  102. Do Isoflux Boundary Conditions Inhibit Oscillatory Double-Diffusive Convection?
  103. The Effect of Pulsating Throughflow on the Onset of Convection in a Horizontal Porous Layer
  104. The Onset of Convection in a Horizontal Porous Layer with Spatially Non-Uniform Internal Heating
  105. A Model of Neuropeptide Transport in Various Types of Nerve Terminals Containing En Passant Boutons: The Effect of the Rate of Neuropeptide Production in the Neuron Soma
  106. Can an increase in neuropeptide production in the soma lead to DCV circulation in axon terminals with type III en passant boutons?
  107. Mathematical models of α-synuclein transport in axons
  108. Local Thermal Non-equilibrium and Heterogeneity Effects on the Onset of Double-Diffusive Convection in an Internally Heated and Soluted Porous Medium
  109. Local thermal non-equilibrium effects on the onset of convection in an internally heated layered porous medium with vertical throughflow
  110. The Effect of Vertical Throughflow on Thermal Instability in a Porous Medium Layer Saturated by a Nanofluid: A Revised Model
  111. Modeling neuropeptide transport in various types of nerve terminals containing en passant boutons
  112. Numerical investigation of the possibility of macroscopic turbulence in porous media: a direct numerical simulation study
  113. LOCAL THERMAL NON-EQUILIBRIUM AND HETEROGENEITY EFFECTS ON THE ONSET OF CONVECTION IN A LAYERED POROUS MEDIUM WITH VERTICAL THROUGHFLOW
  114. The Effects of Double Diffusion and Local Thermal Non-equilibrium on the Onset of Convection in a Layered Porous Medium: Non-oscillatory Instability
  115. Can a death signal half-life be used to sense the distance to a lesion site in axons?
  116. The onset of convection in a horizontal nanofluid layer of finite depth: A revised model
  117. Consideration of Cyclic Degradation of the Material and Abnormality of the Surface Layer Mechanical Properties in Calculating the Life of a Plate with an Opening*
  118. Corrigendum to ‘Forced convection in a parallel-plate channel occupied by a nanofluid or a porous medium saturated by a nanofluid’ [International Journal of Heat and Mass Transfer 70 (2014) 430–433]
  119. What tau distribution maximizes fast axonal transport toward the axonal synapse?
  120. A coupled model of fast axonal transport of organelles and slow axonal transport of tau protein
  121. Natural convective boundary-layer flow of a nanofluid past a vertical plate: A revised model
  122. A comparison between the diffusion–reaction and slow axonal transport models for predicting tau distribution along an axon
  123. Local Thermal Non-Equilibrium and Heterogeneity Effects on the Onset of Convection in a Layered Porous Medium
  124. Thermal instability in a porous medium layer saturated by a nanofluid: A revised model
  125. Local Thermal Non-equilibrium and Heterogeneity Effects on the Onset of Convection in an Internally Heated Porous Medium
  126. Approximate modelling of the leftward flow and morphogen transport in the embryonic node by specifying vorticity at the ciliated surface
  127. Submicrometre particle filtration with a dc activated plasma textile
  128. Modeling anterograde and retrograde transport of short mobile microtubules from the site of axonal branch formation
  129. An exact solution of transient equations describing slow axonal transport
  130. Convective Instability of the Darcy Flow in a Horizontal Layer With Symmetric Wall Heat Fluxes and Local Thermal Nonequilibrium
  131. Analytical comparison between Nixon–Logvinenko’s and Jung–Brown’s theories of slow neurofilament transport in axons
  132. The Cheng–Minkowycz problem for natural convective boundary layer flow in a porous medium saturated by a nanofluid: A revised model
  133. Forced Convection Past a Rotating Sphere: Modeling Oxygen Transport to a Pond Snail Embryo
  134. Modelling organelle transport after traumatic axonal injury
  135. The onset of bio‐thermal convection induced by a combined effect of gyrotactic and oxytactic microorganisms
  136. The Effect of Heterogeneity on the Onset of Double-Diffusive Convection Induced by Internal Heating in a Porous Medium: A Layered Model
  137. The Effect of Vertical Throughflow on the Onset of Convection Induced by Internal Heating in a Layered Porous Medium
  138. An analytical solution describing the propagation of positive injury signals in an axon: effect of dynein velocity distribution
  139. Protein transport in the connecting cilium of a photoreceptor cell: Modeling the effects of bidirectional protein transitions between the diffusion-driven and motor-driven kinetic states
  140. Onset of Convection with Internal Heating in a Porous Medium Saturated by a Nanofluid
  141. Optimization of Forced Convection Heat Transfer in a Composite Porous Medium Channel
  142. Deep Saline Fluids in Geologic Basins: The Possible Role of the Soret Effect
  143. The Effect of Strong Heterogeneity on the Onset of Convection Induced by Internal Heating in a Porous Medium: A Layered Model
  144. An Historical and Topical Note on Convection in Porous Media
  145. The Effect of Pulsating Deformation on the Onset of Convection in a Porous Medium
  146. Modeling of Flow Through a Sandwiched Monolith Filter
  147. Onset of Convection with Internal Heating in a Weakly Heterogeneous Porous Medium
  148. A two population model of prion transport through a tunnelling nanotube
  149. The Onset of Convection in a Layered Porous Medium with Vertical Throughflow
  150. Submicron particle filtration in monolith filters – A modeling and experimental study
  151. A compartmental model of neuropeptide circulation and capture between the axon soma and nerve terminals
  152. A note on the variation of nanofluid viscosity with temperature
  153. Analytical modelling of retrograde transport of nerve growth factors in an axon: a transient problem
  154. Modeling Intracellular Transport in Neurons
  155. Modelling transport of layered double hydroxide nanoparticles in axons and dendrites of cortical neurons
  156. Error correction in intracellular transport: Numerical investigation of rerouting of a pulse of misdirected axonal cargos in a dendrite
  157. MODELING OF ORGANELLE ENTRY IN AN AXON AND DENDRITE
  158. Modeling transport of a pulse of radiolabeled organelles in a Drosophila unipolar motor neuron
  159. Numerical investigation of axonal cargo rerouting in a dendrite: A three kinetic state model
  160. Symmetry analysis and self-similar forms of fluid flow and heat-mass transfer in turbulent boundary layer flow of a nanofluid
  161. Modeling of Cross-Flow Across an Electrostatically Charged Monolith Filter
  162. Sorting of cargos between axons and dendrites: modelling of differences in cargo transport in these two types of neurites
  163. The Onset of Double-Diffusive Convection in a Vertical Cylinder Occupied by a Heterogeneous Porous Medium with Vertical Throughflow
  164. Effect of kinesin velocity distribution on slow axonal transport
  165. Modeling Mass Transport in Axonal Transport Drug Delivery
  166. Modelling of axonal cargo rerouting in a dendrite
  167. A THREE-KINETIC-STATE MODEL OF AXONAL TRANSPORT DRUG DELIVERY
  168. An exact solution describing slow axonal transport of cytoskeletal elements: the effect of a finite half-life
  169. A model of axonal transport drug delivery
  170. A model of axonal transport drug delivery: effects of diffusivity
  171. The Onset of Convection in a Layer of a Porous Medium Saturated by a Nanofluid: Effects of Conductivity and Viscosity Variation and Cross-Diffusion
  172. Development of active porous medium filters based on plasma textiles
  173. INVESTIGATION OF SIMULTANEOUS EFFECTS OF GYROTACTIC AND OXYTACTIC MICROORGANISMS ON NANOFLUID BIO-THERMAL CONVECTION IN POROUS MEDIA
  174. NANOFLUID BIOCONVECTION IN A HORIZONTAL FLUID-SATURATED POROUS LAYER
  175. NANOFLUID BIOCONVECTION IN POROUS MEDIA: OXYTACTIC MICROORGANISMS
  176. An analytical solution describing retrograde viral transport in an axon
  177. Effect of pharmaceutical agent degradation on axonal transport drug delivery: An analytical solution for a transient situation
  178. The effects of combined horizontal and vertical heterogeneity on the onset of convection in a porous medium with horizontal throughflow
  179. The Effect of Strong Heterogeneity and Strong Throughflow on the Onset of Convection in a Porous Medium: Periodic and Localized Variation
  180. Merging of viral concentration waves in retrograde viral transport in axons
  181. The Effect of Strong Heterogeneity and Strong Throughflow on the Onset of Convection in a Porous Medium: Non-Periodic Global Variation
  182. Analytical investigation of various regimes of retrograde trafficking of neurotropic viruses in axons
  183. The Effect of Vertical Throughflow on the Onset of Convection in a Porous Medium in a Rectangular Box
  184. Nanofluid bio-thermal convection: simultaneous effects of gyrotactic and oxytactic micro-organisms
  185. Onset of Convection in a Porous Medium with Strong Vertical Throughflow
  186. Coupling a dynein transport model with a model of anterograde and retrograde transport of intracellular organelles
  187. Modeling bidirectional transport of quantum dot nanoparticles in membrane nanotubes
  188. The onset of double-diffusive convection in a nanofluid layer
  189. Distribution characteristics of exhaust gases and soot particles in a wall-flow ceramics filter
  190. The Cheng–Minkowycz problem for natural convection about a vertical plate embedded in a tridisperse porous medium
  191. The onset of convection in a tridisperse porous medium
  192. The Effects of Combined Horizontal and Vertical Heterogeneity on the Onset of Convection in a Porous Medium with Vertical Throughflow
  193. Bio-thermal convection induced by two different species of microorganisms
  194. Double-diffusive natural convective boundary-layer flow of a nanofluid past a vertical plate
  195. Influence of Geometry on Starting Vortex and Ejector Performance
  196. Modeling of retrograde nanoparticle transport in axons and dendrites
  197. Effect of cytoskeletal element degradation on merging of concentration waves in slow axonal transport
  198. Nanofluid bioconvection: interaction of microorganisms oxytactic upswimming, nanoparticle distribution, and heating/cooling from below
  199. Method of modelling intracellular transport in branching neurites: application to axons and dendrites ofDrosophilasensory neurons
  200. Non-oscillatory and oscillatory nanofluid bio-thermal convection in a horizontal layer of finite depth
  201. Analytical solution of equations describing slow axonal transport based on the stop-and-go hypothesis
  202. The Onset of Convection in a Heterogeneous Porous Medium with Vertical Throughflow
  203. Modelling active transport in Drosophila unipolar motor neurons
  204. Nanofluid bioconvection in water-based suspensions containing nanoparticles and oxytactic microorganisms: oscillatory instability
  205. The Effect of Vertical Throughflow on Thermal Instability in a Porous Medium Layer Saturated by a Nanofluid
  206. THE EFFECT OF LOCAL THERMALNONEQUILIBRIUM ON THE ONSET OF CONVECTION IN A POROUS MEDIUM LAYER SATURATED BY A NANOFLUID: BRINKMAN MODEL
  207. The Cheng–Minkowycz problem for the double-diffusive natural convective boundary layer flow in a porous medium saturated by a nanofluid
  208. Comparison of active transport in neuronal axons and dendrites
  209. Effect of the degree of polar mismatching on traffic jam formation in fast axonal transport
  210. The onset of nanofluid bioconvection in a suspension containing both nanoparticles and gyrotactic microorganisms
  211. Investigation of the role of diffusivity on spreading, rate, and merging of the bell-shaped waves in slow axonal transport
  212. Special Issue on Heat and Mass Transfer in Biosystems
  213. Modeling Bidirectional Transport of New and Used Organelles in Fast Axonal Transport in Neurons
  214. A four kinetic state model of fast axonal transport: Model formulation and perturbation solution
  215. The Onset of Convection in a Strongly Heterogeneous Porous Medium with Transient Temperature Profile
  216. Effect of strong heterogeneity on the onset of convection in a porous medium: Importance of spatial dimensionality and geologic controls
  217. MODELING TRAFFIC JAMS IN SLOW AXONAL TRANSPORT
  218. Effect of diffusion on slowing the velocity of a bell-shaped wave in slow axonal transport
  219. Effect of vesicle traps on traffic jam formation in fast axonal transport
  220. Equations describing molecular-motor-assisted transport in dendrites with a non-uniform cross-sectional area
  221. The Onset of Double-Diffusive Nanofluid Convection in a Layer of a Saturated Porous Medium
  222. Modeling organelle transport in branching dendrites with a variable cross-sectional area
  223. Forced convection in cellular porous materials: Effect of temperature-dependent conductivity arising from radiative transfer
  224. Comparison Between Numerically Simulated and Experimentally Measured Flowfield Quantities Behind a Pulsejet
  225. The Onset of Convection in a Layer of Cellular Porous Material: Effect of Temperature-Dependent Conductivity Arising From Radiative Transfer
  226. The onset of convection in a horizontal nanofluid layer of finite depth
  227. The Onset of Convection in a Heterogeneous Porous Medium with Transient Temperature Profile
  228. Modeling of particle trajectories in an electrostatically charged channel
  229. Bio‐thermal convection caused by combined effects of swimming of oxytactic bacteria and inclined temperature gradient in a shallow fluid layer
  230. The Effect of Local Thermal Nonequilibrium on the Onset of Convection in a Nanofluid
  231. Natural convective boundary-layer flow of a nanofluid past a vertical plate
  232. The onset of bio‐thermal convection in a suspension of gyrotactic microorganisms in a fluid layer with an inclined temperature gradient
  233. FORCED CONVECTION WITH PHASE-LAGGED OSCILLATORY COUNTERFLOWIN A SATURATED POROUS CHANNEL
  234. The Cheng–Minkowycz problem for natural convective boundary-layer flow in a porous medium saturated by a nanofluid
  235. Thermal instability in a porous medium layer saturated by a nanofluid
  236. Instability of a slip flow in a curved channel formed by two concentric cylindrical surfaces
  237. The Effect of Strong Heterogeneity on the Onset of Convection in a Porous Medium: 2D/3D Localization and Spatially Correlated Random Permeability Fields
  238. Effect of protein degradation in the axon on the speed of the bell-shaped concentration wave in slow axonal transport
  239. Effect of Local Thermal Non-equilibrium on the Onset of Convection in a Porous Medium Layer Saturated by a Nanofluid
  240. Forced Convection With Laminar Pulsating Counterflow in a Saturated Porous Channel
  241. Combined numerical and experimental investigation on the effect of jet pressure and forming belt geometry on the hydroentanglement process
  242. Thermal Instability in a Porous Medium Layer Saturated by a Nanofluid: Brinkman Model
  243. The Effect of Strong Heterogeneity on the Onset of Convection in a Porous Medium: Periodic and Localized Variation
  244. A macroscopic model of traffic jams in axons
  245. Macroscopic modeling of slow axonal transport of rapidly diffusible soluble proteins
  246. Experimental and numerical investigation of the peeling force required for the detachment of fabric from the forming belt in the hydroentanglement process
  247. The effect of a transition layer between a fluid and a porous medium: shear flow in a channel
  248. Forced Convection with Counterflow in a Circular Tube Occupied by a Porous Medium
  249. Start-Up Flow in a Channel or Pipe Occupied by a Fluid-Saturated Porous Medium
  250. A minimal hydrodynamic model for a traffic jam in an axon
  251. A bioheat transfer model: Forced convection in a channel occupied by a porous medium with counterflow
  252. Modeling traffic jams in intracellular transport in axons
  253. Analytical solution of the steady-state molecular-motor-assisted transport equations governing distribution of intracellular particles within a cell dendrite
  254. Forced Convection with Laminar Pulsating Counterflow in a Saturated Porous Circular Tube
  255. The Effect of a Transition Layer Between a Fluid and a Porous Medium: Forced Convection in a Channel
  256. Vertical Free Convective Boundary-Layer Flow in a Bidisperse Porous Medium
  257. The method of separation of variables for solving equations describing molecular-motor-assisted transport of intracellular particles in a dendrite or axon
  258. Thermally Developing Forced Convection in a Porous Medium Occupied by a Rarefied Gas: Parallel Plate Channel or Circular Tube with Walls at Constant Heat Flux
  259. Numerical modeling of molecular-motor-assisted transport of adenoviral vectors in a spherical cell
  260. Simulation of shape dynamics of a long flexible fiber in a turbulent flow in the hydroentanglement process
  261. The effects of combined horizontal and vertical heterogeneity on the onset of convection in a porous medium: Moderate heterogeneity
  262. A New Acoustic Model for Valveless Pulsejets and Its Application to Optimization Thrust
  263. Generalized Fourier series solution of equations governing molecular-motor-assisted transport of adenoviral vectors in a spherical cell
  264. Natural convection about a vertical plate embedded in a bidisperse porous medium
  265. Thermal in vivo skin electroporation pore development and charged macromolecule transdermal delivery: A numerical study of the influence of chemically enhanced lower lipid phase transition temperatures
  266. Analytical investigation of transient molecular-motor-assisted transport in elongated cells
  267. On the evolution of salt lakes: Episodic convection beneath an evaporating salt lake
  268. A Porous Medium Model of the Hydro entanglement Process
  269. Effects of Combined Horizontal and Vertical Heterogeneity on the Onset of Transient Convection in a Porous Medium
  270. The effects of combined horizontal and vertical heterogeneity and anisotropy on the onset of convection in a porous medium
  271. Erratum to “The effects of combined horizontal and vertical heterogeneity on the onset of convection in a porous medium” [Int. J. Heat Mass Transfer 50 (2007) 1909–1915]
  272. Numerical Modeling of a Moving Particle in a Continuous Flow Subjected to Microwave Heating
  273. The effect of combined vertical and horizontal heterogeneity on the onset of convection in a bidisperse porous medium
  274. The effects of combined horizontal and vertical heterogeneity on the onset of convection in a porous medium: double diffusive case
  275. Forced convection with laminar pulsating flow in a channel or tube
  276. Simulation of Fiber Entanglement by Modeling Vorticity in Water Flow Field
  277. The effects of combined horizontal and vertical heterogeneity on the onset of convection in a porous medium
  278. Investigation of a particulate flow containing spherical particles subjected to microwave heating
  279. Analytical solution of equations governing molecular-motor-assisted transport of intracellular particles
  280. Mathematical modeling of continuous flow microwave heating of liquids (effects of dielectric properties and design parameters)
  281. The Onset of Convection in a Porous Medium Occupying an Enclosure of Variable Width or Height
  282. Local Temperature Rises Influence In Vivo Electroporation Pore Development: A Numerical Stratum Corneum Lipid Phase Transition Model
  283. Flow instability in a curved porous channel formed by two concentric cylindrical surfaces
  284. Flow in a Curved Porous Channel with a Rectangular Cross Section
  285. Combined Numerical and Experimental Investigation of a Hobby-Scale Pulsejet
  286. Fluid dynamics of cell cytokinesis — Numerical analysis of intracellular flow during cell division
  287. Instability of Slip Flow in a Channel Occupied by a Hyperporous Medium
  288. Thermal damage reduction associated with in vivo skin electroporation: A numerical investigation justifying aggressive pre-cooling
  289. The onset of convection in a shallow box occupied by a heterogeneous porous medium with constant flux boundaries
  290. Forced Convection with Laminar Pulsating Flow in a Saturated Porous Channel or Tube
  291. Reply to comments on ‘Forced convection with slip-flow in a channel or duct occupied by a hyper-porous medium saturated by a rarefied gas’
  292. Numerical investigation of thinning of the intercellular bridge during cell cytokinesis
  293. The Onset of Convection in a Suspension of Gyrotactic Microorganisms in Superimposed Fluid and Porous Layers: Effect of Vertical Throughflow
  294. Numerical Assessment of Thermal Response Associated With In Vivo Skin Electroporation: The Importance of the Composite Skin model
  295. The onset of bio-thermal convection in a suspension of gyrotactic microorganisms in a fluid layer: Oscillatory convection
  296. Dynamics of large solid particles in bioconvective sedimentation
  297. Forced Convection with Slip-flow in a Channel or Duct Occupied by a Hyper-porous Medium Saturated by a Rarefied Gas
  298. Investigation of Feasibility of Developing Intelligent Firefighter-Protective Garments Based on the Utilization of a Water-Injection System
  299. The onset of convection in a bidisperse porous medium
  300. Optimization problems for bioheat equation
  301. Renormalization Group Model of Large-Scale Turbulence in Porous Media
  302. Numerical simulation of forced convection in a duct subjected to microwave heating
  303. Investigation of the onset of bioconvection in a suspension of oxytactic microorganisms subjected to high-frequency vertical vibration
  304. The onset of thermo-bioconvection in a shallow fluid saturated porous layer heated from below in a suspension of oxytactic microorganisms
  305. Boundary Layer Treatment of Forced Convection over a Wedge with an Attached Porous Substrate
  306. Thermally Developing Forced Convection in a Bidisperse Porous Medium
  307. Thermo-Bio-Convection in Porous Media
  308. Direct numerical simulation of settling of a large solid particle during bioconvection
  309. Investigation of stability of a laminar flow in a parallel-plate channel filled with a fluid saturated porous medium
  310. Numerical Modeling of In Vivo Plate Electroporation Thermal Dose Assessment
  311. Heat transfer in a laminar flow in a helical pipe filled with a fluid saturated porous medium
  312. Thermo-bioconvection in a suspension of oxytactic bacteria
  313. Settling of bidispersed small solid particles in a dilute suspension containing gyrotactic micro-organisms
  314. A Two-Velocity Two-Temperature Model for a Bi-Dispersed Porous Medium: Forced Convection in a Channel
  315. The interaction of bioconvection caused by gyrotactic micro‐organisms and settling of small solid particles
  316. Investigation of the onset of thermo-bioconvection in a suspension of oxytactic microorganisms in a shallow fluid layer heated from below
  317. Investigation of laminar flow in a helical pipe filled with a fluid saturated porous medium
  318. The onset of bioconvection in a suspension of gyrotactic microorganisms in a fluid layer of finite depth heated from below
  319. Forced Convective Cooling via Acoustic Streaming in a Narrow Channel Established by a Vibrating Piezoelectric Bimorph
  320. Thermally developing forced convection in a channel occupied by a porous medium saturated by a non-Newtonian fluid
  321. Computational analysis of the feasibility of a micro-pulsejet
  322. Effect of Fouling on Stability of Bioconvection of Gyrotactic Microorganisms in a Porous Medium
  323. Forced convection in a composite parallel plate channel: modeling the effect of interface roughness and turbulence utilizing a k–ε model
  324. Porous Medium Model for Investigating Transient Heat and Moisture Transport in Firefighter Protective Clothing under High-Intensity Thermal Exposure
  325. Thermal Development of Forced Convection in a Channel or Duct Partly Occupied by a Porous Medium
  326. A borehole temperature during drilling in a fractured rock formation
  327. INVESTIGATION OF HYSTERESIS IN ACOUSTICALLY DRIVEN CHANNEL FLOW AT ULTRASONIC FREQUENCY
  328. Forced convection in a bi-disperse porous medium channel: a conjugate problem
  329. Forced convection in a helical pipe filled with a saturated porous medium
  330. Numerical modeling of a falling bioconvection plume in a porous medium
  331. Numerical modeling of turbulent flow in a composite porous/fluid duct utilizing a two-layer k–ε model to account for interface roughness
  332. Stability of a suspension of gyrotactic microorganisms in superimposed fluid and porous layers
  333. Interaction of Transverse Heterogeneity and Thermal Development of Forced Convection in a Porous Medium
  334. Three-dimensional numerical simulation of a circulating fluidized bed reactor for multi-pollutant control
  335. Effects of Viscous Dissipation and Flow Work on Forced Convection in a Channel Filled by a Saturated Porous Medium
  336. EFFECT OF SMALL SOLID PARTICLES ON THE DEVELOPMENT OF BIOCONVECTION PLUMES
  337. INVESTIGATION OF THE ACOUSTIC STREAMING IN A RECTANGULAR CAVITY INDUCED BY THE VIBRATION OF ITS LID
  338. Laminar forced convection in curved channel with vortex structures
  339. Analytical investigation of a falling plume caused by bioconvection of oxytactic bacteria in a fluid saturated porous medium
  340. The Onset of Bioconvection in a Horizontal Porous-Medium Layer
  341. Effect of Suspended Particles on Couple-Stress Fluid Heated and Soluted from Below in Porous Medium
  342. Effect of Turbulence on Forced Convection in a Composite Tube Partly Filled with a Porous Medium
  343. Effect of small particles on this stability of bioconvection in a suspension of gyrotactic microorganisms in a layer of finite depth
  344. Effect of the interface roughness on turbulent convective heat transfer in a composite porous/fluid duct
  345. Laminar Forced Convection in Curved Channel with Vortex Structures
  346. STREAMING IN A CHANNEL BOUNDED BY AN ULTRASONICALLY OSCILLATING BEAM AND ITS COOLING EFFICIENCY
  347. OPTIMIZATION OF PIN-FIN HEAT SINKS USING ANISOTROPIC LOCAL THERMAL NONEQUILIBRIUM POROUS MODEL IN A JET IMPINGING CHANNEL
  348. Thermally Developing Forced Convection in a Porous Medium: Circular Duct with Walls at Constant Temperature, with Longitudinal Conduction and Viscous Dissipation Effects
  349. Development of an engineering approach to computations of turbulent flows in composite porous/fluid domains
  350. Stability Analysis of Bioconvection of Gyrotactic Motile Microorganisms in a Fluid Saturated Porous Medium
  351. Analysis of stability of bioconvection of motile oxytactic bacteria in a horizontal fluid saturated porous layer
  352. Investigation of turbulence effects on forced convection in a composite porous/fluid duct: Constant wall flux and constant wall temperature cases
  353. Modeling heat and moisture transport in firefighter protective clothing during flash fire exposure
  354. Bioconvection of negatively geotactic microorganisms in a porous medium: the effect of cell deposition and declogging
  355. Development of low-diffusion flux-splitting methods for dense gas–solid flows
  356. Thermally developing forced convection in a porous medium: parallel plate channel with walls at uniform temperature, with axial conduction and viscous dissipation effects
  357. A SIMILARITY SOLUTION FOR A FALLING PLUME IN BIOCONVENTION OF OXYTACTIC BACTERIA IN A POROUS MEDIUM
  358. EFFECT OF NON-UNIFORMITY OF SOURCE VIBRATION AMPLITUDE ON THE SOUND FIELD WAVE NUMBER, ATTENUATION COEFFICIENT AND REYNOLDS STRESS FOR THE ACOUSTIC STEAMING
  359. Effects of Gross Heterogeneity and Anisotropy in Forced Convection in a Porous Medium: Layered Medium Analysis
  360. Effects of Heterogeneity in Forced Convection in a Porous Medium: Parallel-Plate Channel, Brinkman Model
  361. Effects of Temperature-Dependent Viscosity in Forced Convection in a Porous Medium: Layered-Medium Analysis
  362. Numerical Study of the Efficiency of Acoustic Streaming for Enhancing Heat Transfer between Two Parallel Beams
  363. The effect of deposition and declogging on the critical permeability in bioconvection in a porous medium
  364. Thermally Developing Forced Convection in a Porous Medium: Parallel-Plate Channel or Circular Tube with Walls at Constant Heat Flux
  365. Effect of local thermal non-equilibrium on thermally developing forced convection in a porous medium
  366. EFFECTS OF THERMAL DISPERSION AND TURBULENCE IN FORCED CONVECTION IN A COMPOSITE PARALLEL-PLATE CHANNEL: INVESTIGATION OF CONSTANT WALL HEAT FLUX AND CONSTANT WALL TEMPERATURE CASES
  367. Particle flow, mixing, and chemical reaction in circulating fluidized bed absorbers
  368. A model for fine particle agglomeration in circulating fluidized bed absorbers
  369. A 2D analysis of stability of bioconvection in a fluid saturated porous medium — estimation of the critical permeability value
  370. ANALYSIS OF COUPLED TURBULENT FLOW AND SOLIDIFICATION IN THE WEDGE-SHAPED POOL WITH DIFFERENT NOZZLES DURING TWIN-ROLL STRIP CASTING
  371. Dependence of microporosity formation on the direction of solidification
  372. Effect of evaporation on thin film deposition in dip coating process
  373. Comparison between Lever and Scheil Rules for Modeling of Microporosity Formation during Solidification
  374. An investigation of the microporosity formation in an Al-4.1% Cu alloy casting in microgravity and in standard gravity
  375. The interaction of thermal nonequilibrium and heterogeneous conductivity effects in forced convection in layered porous channels
  376. Numerical investigation of bioconvection of gravitactic microorganisms in an isotropic porous medium
  377. EFFECTS OF HETEROGENEITY IN FORCED CONVECTION IN A POROUS MEDIUM: TRIPLE LAYER OR CONJUGATE PROBLEM
  378. EFFECT OF ANISOTROPY IN PERMEABILITY AND EFFECTIVE THERMAL CONDUCTIVITY ON THERMAL PERFORMANCE OF AN ALUMINUM FOAM HEAT SINK
  379. Symmetry of turbulent boundary-layer flows: Investigation of different eddy viscosity models
  380. Effects of Heterogeneity in Forced Convection in a Porous Medium: Parallel-Plate Channel, Asymmetric Property Variation, and Asymmetric Heating
  381. Simulation of coupled turbulent flow and heat transfer in the wedge-shaped pool of a twin-roll strip casting process
  382. Fluid flow and heat transfer analysis of Couette flow in a composite duct
  383. Numerical simulation of the effect of thermal dispersion on forced convection in a circular duct partly filled with a Brinkman‐Forchheimer porous medium
  384. Investigation of the effect of transverse thermal dispersion on forced convection in porous media
  385. Forced Convection in a Couette Flow in a Composite Duct: An Analysis of Thermal Dispersion and Non-Darcian Effects
  386. Analytical investigation of forced convection from a flat plate enhanced by a porous substrate
  387. Local thermal nonequilibrium effects in forced convection in a porous medium channel: a conjugate problem
  388. Parametric study of macrosegregation in the horizontal strip casting process for different cooling rates and different casting speeds
  389. Fluid Mechanics and Heat Transfer in the Interface Region Between a Porous Medium and a Fluid Layer: A Boundary Layer Solution
  390. Analytical investigation of Couette flow in a composite channel partially filled with a porous medium and partially with a clear fluid
  391. Analytical Study of Fluid Flow and Heat Transfer during Forced Convection in a Composite Channel Partly Filled with a Brinkman–Forchheimer Porous Medium
  392. Analytical investigation of heat transfer in Couette flow through a porous medium utilizing the Brinkman-Forchheimer-extended Darcy model
  393. Influence of the stress jump condition at the porous-medium/clear-fluid interface on a flow at a porous wall
  394. Analytical investigation of the fluid flow in the interface region between a porous medium and a clear fluid in channels partially filled with a porous medium