A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical Transmission
We conditionally extend formulas of(Dietz and Schenzle, J. Math. Biol. 22: 117-120,1995) for the ”transmission potential” of an immunizing infection with pre-infection possible before birth and vertical transmission admitted. We look for minimum proportion to be covered to reduce basic reproduction...
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doaj-ae2f2d39463c4737849db6991ce44d102020-11-24T22:05:36ZengBiomath ForumBiomath1314-684X1314-72182015-05-014110.11145/365326A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical TransmissionYannick Kouakep Tchaptchie0Duplex Elvis Houpa DangaNguelbe AlexGuidzavai K. AlbertUniversity of Ngaoundere, Dpt of Mathematics and Computer scienceWe conditionally extend formulas of(Dietz and Schenzle, J. Math. Biol. 22: 117-120,1995) for the ”transmission potential” of an immunizing infection with pre-infection possible before birth and vertical transmission admitted. We look for minimum proportion to be covered to reduce basic reproduction rate below 1 by acting through vaccination. We present also a new criterion allowing the selection of an immunizing vaccination strategy by bringing the reproduction number below 1. We find that reduce vertical transmission, adds chances to eradicate disease. Moreover reduce age of vaccination reduces the minimum vaccination coverage inducing global immunization against disease by bringing down the basic reproduction number.http://www.biomathforum.org/biomath/index.php/biomath/article/view/365Transmission potential, minimum proportion for vaccination immunization, endemic disease, pre-infection |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yannick Kouakep Tchaptchie Duplex Elvis Houpa Danga Nguelbe Alex Guidzavai K. Albert |
spellingShingle |
Yannick Kouakep Tchaptchie Duplex Elvis Houpa Danga Nguelbe Alex Guidzavai K. Albert A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical Transmission Biomath Transmission potential, minimum proportion for vaccination immunization, endemic disease, pre-infection |
author_facet |
Yannick Kouakep Tchaptchie Duplex Elvis Houpa Danga Nguelbe Alex Guidzavai K. Albert |
author_sort |
Yannick Kouakep Tchaptchie |
title |
A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical Transmission |
title_short |
A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical Transmission |
title_full |
A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical Transmission |
title_fullStr |
A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical Transmission |
title_full_unstemmed |
A Note on Proportionate Mixing Assumption Revisited for a Model with Vertical Transmission |
title_sort |
note on proportionate mixing assumption revisited for a model with vertical transmission |
publisher |
Biomath Forum |
series |
Biomath |
issn |
1314-684X 1314-7218 |
publishDate |
2015-05-01 |
description |
We conditionally extend formulas of(Dietz and Schenzle, J. Math. Biol. 22: 117-120,1995) for the ”transmission potential” of an immunizing infection with pre-infection possible before birth and vertical transmission admitted. We look for minimum proportion to be covered to reduce basic reproduction rate below 1 by acting through vaccination. We present also a new criterion allowing the selection of an immunizing vaccination strategy by bringing the reproduction number below 1. We find that reduce vertical transmission, adds chances to eradicate disease. Moreover reduce age of vaccination reduces the minimum vaccination coverage inducing global immunization against disease by bringing down the basic reproduction number. |
topic |
Transmission potential, minimum proportion for vaccination immunization, endemic disease, pre-infection |
url |
http://www.biomathforum.org/biomath/index.php/biomath/article/view/365 |
work_keys_str_mv |
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