Hyun Mo Yang
Biographic Data
| ID | 7284683 |
|---|---|
| NAME | Hyun Mo Yang |
| GIVEN NAMES | Hyun Mo |
| FAMILY NAME | Yang |
| SIGNATURE | YANG H M |
| AFFILIATIONS | Universidade Estadual de Campinas (UNICAMP) |
| ORCID | 0000-0002-1711-363X |
| VERIFIED | No |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 6 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2000 |
| LATEST PUBLICATION YEAR | 2011 |
| H-INDEX | 2 |
Inhibitory effect of Sanguisorba officinalis ethanol extract on NO and PGE2 production is mediated by suppression of NF-κB and AP-1 activation signaling cascade
Anti-inflammatory activity of ethanol extract derived from Phaseolus angularis beans
A mathematical model for malaria transmission relating global warming and local socioeconomic conditions
OBJECTIVE: Sensitivity analysis was applied to a mathematical model describing malaria transmission relating global warming and local socioeconomic conditions. METHODS: A previous compartment model was proposed to describe the overall transmission of malaria. This model was built up on several parameters and the prevalence of malaria in a community was characterized by the values assigned to them. To assess the control efforts, the model paramete…
Malaria transmission model for different levels of acquired immunity and temperature-dependent parameters (vector)
OBJECTIVE: Describe the overall transmission of malaria through a compartmental model, considering the human host and mosquito vector. METHODS: A mathematical model was developed based on the following parameters: human host immunity, assuming the existence of acquired immunity and immunological memory, which boosts the protective response upon reinfection; mosquito vector, taking into account that the average period of development from egg to ad…
Assessing the effects of global warming and local social and economic conditions on the malaria transmission
OBJECTIVE: To show how a mathematical model can be used to describe and to understand the malaria transmission. METHODS: The effects on malaria transmission due to the impact of the global temperature changes and prevailing social and economic conditions in a community were assessed based on a previously presented compartmental model, which describes the overall transmission of malaria. RESULTS/CONCLUSIONS: The assessments were made from the scen…
Malaria transmission model for different levels of acquired immunity and temperature-dependent parameters (vector)
OBJECTIVE: Describe the overall transmission of malaria through a compartmental model, considering the human host and mosquito vector. METHODS: A mathematical model was developed based on the following parameters: human host immunity, assuming the existence of acquired immunity and immunological memory, which boosts the protective response upon reinfection; mosquito vector, taking into account that the average period of development from egg to ad…
Assessing the effects of global warming and local social and economic conditions on the malaria transmission
OBJECTIVE: To show how a mathematical model can be used to describe and to understand the malaria transmission. METHODS: The effects on malaria transmission due to the impact of the global temperature changes and prevailing social and economic conditions in a community were assessed based on a previously presented compartmental model, which describes the overall transmission of malaria. RESULTS/CONCLUSIONS: The assessments were made from the scen…
A mathematical model for malaria transmission relating global warming and local socioeconomic conditions
OBJECTIVE: Sensitivity analysis was applied to a mathematical model describing malaria transmission relating global warming and local socioeconomic conditions. METHODS: A previous compartment model was proposed to describe the overall transmission of malaria. This model was built up on several parameters and the prevalence of malaria in a community was characterized by the values assigned to them. To assess the control efforts, the model paramete…
Malaria transmission model for different levels of acquired immunity and temperature-dependent parameters (vector)
OBJECTIVE: Describe the overall transmission of malaria through a compartmental model, considering the human host and mosquito vector. METHODS: A mathematical model was developed based on the following parameters: human host immunity, assuming the existence of acquired immunity and immunological memory, which boosts the protective response upon reinfection; mosquito vector, taking into account that the average period of development from egg to ad…
Assessing the effects of global warming and local social and economic conditions on the malaria transmission
OBJECTIVE: To show how a mathematical model can be used to describe and to understand the malaria transmission. METHODS: The effects on malaria transmission due to the impact of the global temperature changes and prevailing social and economic conditions in a community were assessed based on a previously presented compartmental model, which describes the overall transmission of malaria. RESULTS/CONCLUSIONS: The assessments were made from the scen…
A mathematical model for malaria transmission relating global warming and local socioeconomic conditions
OBJECTIVE: Sensitivity analysis was applied to a mathematical model describing malaria transmission relating global warming and local socioeconomic conditions. METHODS: A previous compartment model was proposed to describe the overall transmission of malaria. This model was built up on several parameters and the prevalence of malaria in a community was characterized by the values assigned to them. To assess the control efforts, the model paramete…
Inhibitory effect of Sanguisorba officinalis ethanol extract on NO and PGE2 production is mediated by suppression of NF-κB and AP-1 activation signaling cascade
Anti-inflammatory activity of ethanol extract derived from Phaseolus angularis beans
Biology (4 works) · Medicine (4 works) · Computer Science (3 works) · COVID-19 epidemiological studies (3 works) · Environmental health (3 works) · Immunology (3 works) · Immunology (3 works) · Malaria (3 works) · Transmission (telecommunications) (3 works) · Biochemistry (2 works)