collaborators

5 papers

stat.AP2026

A two-parameter, minimal-data model to predict dengue cases: the 2022-2023 outbreak in Florida, USA

Saman Hosseini, Lee W. Cohnstaedt, Caterina Scoglio

Reliable and timely dengue predictions can provide an actionable lead time for targeted vector control and clinical preparedness, reducing preventable disease and health-system cos…

math.DS2026

Optimal Scheduling of Dengue Vector Control

Aram Vajdi, Lee W. Cohnstaedt, Caterina M. Scoglio +1

Dengue transmission is shaped by the population dynamics of the Aedes aegypti mosquito, making vector control a central strategy for disease mitigation. The impact of interventions…

cs.SI2026

EpidemIQs: Prompt-to-Paper LLM Agents for Epidemic Modeling and Analysis

Mohammad Hossein Samaei, Faryad Darabi Sahneh, Lee W. Cohnstaedt +1

Large Language Models (LLMs) offer new opportunities to accelerate complex interdisciplinary research domains. Epidemic modeling, characterized by its complexity and reliance on ne…

stat.AP2025

A Data-Parsimonious Model for Long-Term Risk Assessments of West Nile Virus Spillover

Saman Hosseini, Lee W. Cohnstaedt, Matin Marjani +1

Many West Nile virus (WNV) forecasting frameworks incorporate entomological or avian surveillance data, which may be unavailable in some regions. We introduce a novel data-parsimon…

stat.AP2025

Probabilistic Assessment of West Nile Virus Spillover Risk Using a Compartmental Mechanistic Model

Saman Hosseini, Lee W. Cohnstaedt, Matin Marjani +1

This paper presents a novel probabilistic approach for assessing the risk of West Nile Disease (WND) spillover to the human population. The assessment has been conducted under two…