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Mathematical Biosciences 1997: Vol 139 Index PDF

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Preview Mathematical Biosciences 1997: Vol 139 Index

Nea) ass Ae. 45 ELSEVIER Author Index to Volumes 139-146 Andersson, Hakan, 140:79 Grist, Eric P. M., and William S. C. Arani, Ramin B., and M. Bhaskara Rao, Gurney, 145:1 146:63 Gupta, Ramesh C., Nandini Kannan, and Axelrod, Daniel, 141:149 Aparna Raychaudhuri, 139:103 Axelrod, D. E., See Staudte, R. G. Gurney, William S. C., See Grist, Eric P. M. Bahrampour, Abbas, See Becker, Niels G. Bassingthwaighte, J. B., See Wang, C. Y. Hadeler, K. P., and P. van den Driessche, Basson, Marinelle, and Michael J. 146:15 Fogarty, 141:41 Happel, Robert, See Hecht, Robert Becker, Niels G., and Abbas Bahrampour, Hecht, Robert, Robert Happel, Peter 142:63 Schuster, and Peter F. Stadler, 140:33 and Dianna N. Starczak, 139:117 Hernandez-Bermejo, Benito, and Victor Bertuzzi, Alessandro, Alberto Gandolfi, Fairén, 140:1 Carmela Sinisgalli, and Daniela Ia- Herzog, W., See Wu, J. Z. coviello, 143:61 Hethcote, Herbert W., 145:89 Bishir, John, and James Roberds, 142:1 Hinderer, Karl, and Alfred Miller, 142:31 Boggio Ronceros, Rafael, Oscar Horacek, B. Milan, and John C. Clements, Sorarrain, Juan C. Salerno, and 144:119 Ewald A. Favret, 140:85 Huggins, R. M., See Staudte, R. G. Britton, Tom, 141:79 Hurn, A. S., K. A. Lindsay, and C. A. Busoni, Giorgio, and Serena Matucci, Michie, 143:91 143:1 Byrne, H. M., 144:83 Iacoviello, Daniela, See Bertuzzi, Alessandro Cazelles, B., and N. P. Chau, 140:131 Iannelli, M., F. A. Milner, A. Pugliese, Chau, N. P., See Cazelles, B. and M. Gonzo, 139:25 Clements, John C., See Horacek, B. Milan Cole, G. K., See Wu, J. Z. Kannan, Nandini, See Gupta, Ramesh C. Katopodes, Nikolaos D., 140:75 Kimmel, M., See Staudte, R. G. Dietz, Klaus, See Stilianakis, Nikolaos I. Komarov, V. P., See Petin, V. G. Dye, C., See Williams, B. G. Lindsay, K. A., See Hurn, A. S. Fairén, Victor, See Hernandez-Bermejo, Lindsay, Kenneth A., See Wheldon, Benito Elizabeth G. Favret, Ewald A., See Boggio Ronceros, Lungu, E. M., and B. O@ksendal, 145:47 Rafael Lutz, Werner K., See Zheng, Qi Fogarty, Michael J., See Basson, Marinelle Mao, Jian-Hua, See Wheldon, Elizabeth G. Gandolfi, Alberto, See Bertuzzi, Matucci, Serena, See Busoni, Giorgio Alessandro May, Robert M., Dov J. Stekel, and Gaylor, David W., See Zheng, Qi Martin A. Nowak, 139:59 Gonzo, M., See Iannelli, M. Mentré, France, See Merlé, Yann MATHEMATICAL BIOSCIENCES 146: 131-132 0025-1066 /9 7/$17.00 © 1997 Elsevier Science Inc. All rights reserved PII S0025-5564(97)00115-6 655 Avenue of the Americas, New York, NY 10010 132 AUTHOR INDEX Merlé, Yann, and France Mentré, 144:45 Srivastava, Vijai Pratap, and Meena Michie, C. A., See Hurn, A. S. Saxena, 139:79 Milner, F. A., See Iannelli, M. Stadler, Peter F., See Hecht, Robert Moerbeek, M., and F. van den Bosch, Starczak, Dianna N., See Becker, Niels G. 141:115 Staudte, R. G., R. M. Huggins, J. Zhang, Miiller, Alfred, See Hinderer, Karl D. E. Axelrod, and M. Kimmel, 143:103 Miller, Johannes, 139:133 Stekel, Dov J., See May, Robert M. Miller, Walter, See Yakovlev, Andrej Stilianakis, Nikolaos I., Klaus Dietz, and Dieter Schenzle, 145:27 Nizami, Lance, and Bruce Schneider, Stone, J. R., 142:13 141:1 Nomura, Tetsuro, 142:79 Taib, Ziad, 145:137 Nowak, Martin A., See May, Robert M. Thompson, James R., See West, R. Webster @Mksendal, B., See Lungu, E. M. Travis, C. C., See Wiarda, D. Panetta, John Carl, 146:89 van den Bosch, F., See Moerbeek, M. Pavlova, Lyudmila, See Yakovlev, Andrej van den Driessche, P., See Hadeler, K. P. Petin, V. G., and V. P. Komarov, 146:115 Polig, Erich, See Yakovlev, Andrej Wada, A. Russell, 146:75 Pugliese, A., See Iannelli, M. Wang, C. Y., and J. B. Bassingthwaighte, 142:91 Radcliffe, J., and L. Rass, 140:101 West, R. Webster, and James R. Rao, M. Bhaskara, See Arani, Ramin B. Thompson, 141:29; 143:35 Rass, L., See Radcliffe, J. Wheldon, Elizabeth G., Kenneth A. Raychaudhuri, Aparna, See Gupta, Lindsay, Thomas E. Wheldon, and Ramesh C. Jian-Hua Mao, 139:1 Rivero-Hudec, Mercedes A., 142:119 Wheldon, Thomas E., See Wheldon, Roberds, James, See Bishir, John Elizabeth G. Wiarda, D., 146:1 Salerno, Juan C., See Boggio Ronceros, Wikan, Arild, 146:37 Rafael Williams, B. G., and C. Dye, 145:77 Satten, Glen A., 141:101 Wu, J. Z., W. Herzog, and G. K. Cole, Saxena, Meena, See Srivastava, Vijai 139:69 Pratap Schenzle, Dieter, See Stilianakis, Yakovlev, Andrej, Walter Miller, Lyud- Nikolaos I. mila Pavlova, and Erich Polig, 142:107 Schneider, Bruce, See Nizami, Lance Yakubu, Abdul-Aziz, 144:155 Schuster, Peter, See Hecht, Robert Yeatts, F. R., 144:71 Silva, Jacques A. L., 144:1 Sinisgalli, Carmela, See Bertuzzi, Alessandro Zhang, J., See Staudte, R. G. Sorarrain, Oscar, See Boggio Ronceros, Zheng, Qi, Werner K. Lutz, and David W. Rafael Gaylor, 144:23 ELSEVIER Subject Index to Volumes 139-146 Age-structured model for pertussis trans- Cancer model, two-stage deterministic, mission, 145:89 model parameters in, 146:1 AIDS, model for pathogenicity of, 145:27 Carcinogenesis model describing muta- Antigenic diversity thresholds and hazard tional events at the DNA adduct functions, 139:59 level, 144:23 Auditory dynamic range derived from Childhood acute lymphoblastic leukemia, mean rate-intensity function in the two-stage model for, 139:1 cat, 141:1 Clonal forestry, risk analysis in, 142:1 Autocatalytic networks with intermedi- Clonal heterogeneity and interexperiment ates: irreversible reactions, 140:33 variability, estimating with bifurcating Avascular tumor growth, effect of time de- autoregressive model, 143:103 lays on dynamics of, 144:83 D'Arcy Thompson, spirit of, and empirical morphospace, 142:13 Backward bifurcation in epidemic control, Discrete time spatial models arising in ge- 146:15 netics, evolutionary game theory, and Bayesian design criterion, optimization of, branching processes, 140:101 144:45 Drug delivery, control model, 146:75 Biological growth on a surface, 142:91 Dynamic contraction of muscle, modeling Blood flow through stenotic arteries, sus- using cross-bridge theory, 139:69 pension model, 139:79 Blue-green algae, multitype branching Electrocardiography, the inverse problem process model for, 145:137 of, a solution in terms of single- and BOOK REVIEW: Axelrod, Daniel, What double-layer sources on the epicardial Is Life? The Next Fifty Years. Specu- surface, 144:119 lations on the Future of Biology Epidemic, simple, models for, 141:29 (Michael P. Murphy and Luke Epidemic control, backward bifurcation O'Neill, Eds.), 141:149 in, 146:15 BOOK REVIEW: Katopodes, Nikolaos Epidemic model, cost-minimal immuniza- D., Modelling Change in Environ- tion in, 142:31 mental Systems (A. J. Jakeman, M. B. Epidemic modeling, 146:15 Beck, and M. J. McAleer, Eds.), Epidemics, in a population with social 140:75 structures, 140:79 BOOK REVIEW: Rivero-Hudec, Mer- preventing with age-specific vaccina- cedes A., Basic Biochemical Labora- tion schedules, 142:63 tory Procedures and Computers (R. testing for homogeneous mixing in, Cecil Jack), 142:119 141:79 Branching processes, discrete time spatial Evolutionary game theory, discrete time models arising in, 140:101 spatial models arising in, 140:101 Cancer, breast and ovarian, treated with Genetics, discrete time spatial models paclitaxel, model, 146:89 arising in, 140:101 MATHEMATICAL BIOSCIENCES 146: 133-135 0025-1066/ 97/$17.00 © Elsevier Science Inc. All rights reserved PII $0025-5564(97)00115-6 655 Avenue of the Americas, New York, NY 10010 134 SUBJECT INDEX Harvesting, in discrete-time predator-prey Multitype branching process model for systems, 141:41 blue-green algae, 145:137 in a stochastic crowded environment, Mutational events at the DNA adduct 145:47 level, a carcinogenesis model, 144:23 Harvesting policy, optimal, in age-depen- dent populations, 143:1 Nonlinear regression models, Bayesian Hazard functions for HIV, 139:59 design criterion for Bayesian parame- HIV and the spread of tuberculosis, ter estimation of, 144:45 143:35 Nonlinear survival probabilities, 146:37 HIV infection from transfusion of Nonuniform cell loss, Steel's Tpot in cell screened blood, risk of, 141:101 populations affected by, 143:61 HIV/AIDS epidemic, using Kalman factor to assess, 140:131 Optimal harvesting policy in two-stage HIV/AIDS epidemics among drug injec- age-dependent populations, 143:1 tors, contact structure model, 139:25 Human T lymphocyte subsets, modeling Paclitaxel, model of cancer treated with, lifespan of, 143:91 146:89 Huxley's cross-bridge model and dynamic Parastichies, another look at, 144:71 contraction of muscle, 139:69 Persistence of seasonally transmitted dis- Hyperthermia and ionizing radiation, syn- ease, 145:77 ergistic interaction of, 146:115 Pertussis transmission, age-structured model for, 145:89 Immunization, cost-minimal, in Green- Pharmacokinetic-pharmacodynamic mod- wood epidemic model, 142:31 els, closed-loop stability of, 146:75 Infectious disease persistence when trans- Plant populations, lethal factors in, 140:85 mission varies seasonally, 145:77 Precancerous lesions induced by radiation, Insect-pathogen dynamics, 141:115 do cells repair?, 142:107 Intravenous drug delivery, automatic con- Predator-prey systems, discrete-time, har- trol of, 146:75 vesting in, 141:41 lonizing radiation, synergistic interaction with a prey refuge, prey dominance of hyperthermia and, 146:115 in, 144:155 Kalman factor, modeling HIV/AIDS epi- Radiation, do cells repair precancerous le- demic, 140:131 sions produced by?, 142:107 Reproductive delay in Leslie matrix mod- Leslie matrix models, reproductive delay els, 146:37 in, 146:37 Reproductive schedules in a density-de- Lethal factors in plant populations, theo- pendent recruitment model, 144:1 retical analysis, 140:85 Risk analysis in clonal forestry, 142:1 Leukomogenesis, hereditary and non- hereditary, application of childhood Selection in prediction of effective popula- leukemia model to, 139:1 tion size for a sex-linked locus, 142:79 Lotka-Volterra representation of general Sex-linked locus, effective population size nonlinear systems, 140:1 for, 142:79 SIRS models, epidemiological, 146:15 Mean rate-intensity function in the cat, Stage-specific life cycles, 145:1 141:1 Steel's potential doubling time under Model parameters in a two-stage cancer nonuniform cell loss, 143:61 model, determinability of, 146:1 Stenotic arteries, model for blood flow Morphospace, spirit of D'Arcy Thompson through, 139:79 in, 142:13 Survival data, lognormal, 139:103 SUBJECT INDEX 135 Survival experiment, 2(2, a result on, Tuberculosis in the United States, impact 146:63 of HIV on, 143:35 Synchronicity, seasonal, in Catops nigri- Two-stage deterministic cancer model, pa- cans, 145:1 rameters in, 146:1 Synergistic interaction of hyperthermia and ionizing radiation, 146:115 Vaccination schedules, age-specific, pre- venting epidemics with, 142:63 Vaccination strategies for community of Taxol, mathematical model of cancer households, optimal, 139:117 treated with, 146:89 Vaccination strategies, optimal for Topp's beetles revisited, 145:1 whom?, 139:133

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