Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
Tumor growth and chemotherapy: Mathematical methods, computer simulations, and experimental foundations - MaRDI portal

Tumor growth and chemotherapy: Mathematical methods, computer simulations, and experimental foundations

From MaRDI portal
Publication:2559316

DOI10.1016/0025-5564(73)90072-2zbMath0257.92002OpenAlexW2046872475MaRDI QIDQ2559316

Yanyan Li

Publication date: 1973

Published in: Mathematical Biosciences (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/0025-5564(73)90072-2




Related Items (37)

Bifurcation, multistability in the dynamics of tumor growth and electronic simulations by the use of PspiceA model of proliferating cell populations with inherited cycle lengthUnderstanding the antiangiogenic effect of metronomic chemotherapy through a simple mathematical modelDISCRETE AND CONTINUOUS COMPARTMENTAL MODELS OF CELLULAR POPULATIONSMathematical models of the cell cycle with a view to tumor studiesOptimal scheduling for cell synchronization by cycle-phase-specific blockersA model of tumor growth based on cell cycle kineticsGrowth of cell populations with arbitrarily distributed cycle durations. I. Basic modelMathematical model of brain tumour with glia-neuron interactions and chemotherapy treatmentA mathematical model of periodically pulsed chemotherapy: Tumor recurrence and metastasis in a competitive environmentSimulation and flow-systems analysis of the cell cycleA flexible nonlinear model for simulating growth systemsChaos in a tumor growth model with delayed responses of the immune systemRole of optimal control theory in cancer chemotherapyDesign of optimal cancer chemotherapy using a continuous-time state model of cell kineticsMeasuring differences between phenomenological growth models applied to epidemiologyOptimization of additive chemotherapy combinations for an in vitro cell cycle model with constant drug exposuresA mathematical model for the growth and classification of a solid tumor: A new approach via nonlinear elasticity theory using strain-energy functionsA mathematical model of the effector cell response to cancerA mathematical model for chemoimmunotherapy of chronic lymphocytic leukemiaA conversational dynamic model of adaptive biological populationReduction of model for the spread of cancer in the uterus; arbitrary specific growth rateA theoretical and computational method for determining optimal treatment schedules in fractionated radiation therapyOptimal control in some cancer chemotherapy problemsA mathematical model of cancer chemotherapy with an optimal selection of parametersOptimal control analysis in the chemotherapy of IgG multiple myelomaRandom effects in biomedical flow systemsMathematical approaches to optimization of cancer chemotherapyOptimal control of bilinear systems: Time-varying effects of cancer drugsA mathematical model of the effects of drug resistance in cancer chemotherapyOptimal control applications in biomedical engineering-a surveyModeling cellular aging and tumorigenic transformationA kinetic study of chemotherapyMathematical model of cancer chemotherapy. Periodic schedules of phase- specific cytotoxic-agent administration increasing the selectivity of therapyA cellular automata model of chemotherapy effects on tumour growth: targeting cancer and immune cellsCell lifetime and chemical kineticsResonance phenomena in cell population chemotherapy models



Cites Work


This page was built for publication: Tumor growth and chemotherapy: Mathematical methods, computer simulations, and experimental foundations