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INTERSTITIAL DIFFUSION OF MACROMOLECULES IN NORMAL AND TUMOR CAPIL
CONTROLLED RELEASE OF SURFACE ACTIVE DRUGS THROUGH POLYMERIC MEM
ANALYSIS OF THE EFFECT OF THE FAHRAEUSLINDQUIST PHENOMENON UPON
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ACTZ alveolar antibody approximately arterial assumed axial blood flow boundary calculated capillary carbonic anhydrase compartment computed concentration constant convection core countercurrent curve cutaneous decrease deep tissue density dextran dialysate diameter diffusion coefficients drug dynamic effects enhancement Equation equilibrium experimental data experiments flow rate flowrate fluid flux glycerol gradient hematocrit hemoglobin hyperthermia idiotope increase initial interstitial kinetics layer leukocyte LiNO3 lung mathematical model matrix measured micelles microemboli molecular molecules monomer mucus neoplastic neoplastic tissues normal and neoplastic normal tissue obtained osmotic oxygen packet parameters partial pressure perfusate permeability Physiol plasma pore porous membranes pouch predicted pressure profiles protein pulmonary radius rebreathing red blood cells reflection coefficients region release resorption shear stress shown in Figure simulated skin solubility solute species spermicide spheroids surface surfactant technique temperature thermal responses thyroid tumor tion transport values valve velocity vessels viscosity volume wall xenon