paper-with-me

홈 › Papers

Queueing Analysis of a Chagas Disease Control Campaign

2017-06-27

A critical component of preventing the spread of vector borne diseases such as Chagas disease are door-to-door campaigns by public health officials that implement insecticide application in order to eradicate the vector infestation of households. The success of such campaigns depends on adequate household participation during the active phase as well as on sufficient follow-up during the surveillance phase when newly infested houses or infested houses that had not participated in the active phase will receive treatment. Queueing models which are widely used in operations management give us a mathematical representation of the operational efforts needed to contain the spread of infestation. By modeling the queue as consisting of all infested houses in a given locality, we capture the dynamics of the insect population due to prevalence of infestation and to the additional growth of infestation by redispersion, i.e. by the spread of infestation to previously uninfested houses during the wait time for treatment. In contrast to traditional queueing models, houses waiting for treatment are not known but must be identified through a search process by public health workers. Thus, both the arrival rate of houses to the queue as well as the removal rate from the queue depend on the current level of infestation. We incorporate these dependencies through a load dependent queueing model which allows us to estimate the long run average rate of removing houses from the queue and therefore the cost associated with a given surveillance program. The model is motivated by and applied to an ongoing Chagas disease control campaign in Arequipa, Peru.

📄 PDF Abstract BibTeX arXiv:1706.08668

Code (0)

등록된 구현이 없습니다.

Tasks

Management

Similar Papers 제목 키워드 기반

Uncovering the Spread of Chagas Disease in Argentina and Mexico

2018-08-09 · Juan de Monasterio, Alejo Salles, Carolina Lang, Diego Weinberg 외

Chagas disease is a neglected disease, and information about its geographical spread is very scarse. We analyze here mobility and calling patterns in order to identify potential risk zones for the disease, by using publi…

Detection of Chagas Disease from the ECG: The George B. Moody PhysioNet Challenge 2025

2025-10-02 · Matthew A. Reyna, Zuzana Koscova, Jan Pavlus, Soheil Saghafi 외 arxiv

Objective: Chagas disease is a parasitic infection that is endemic to South America, Central America, and, more recently, the U.S., primarily transmitted by insects. Chronic Chagas disease can cause cardiovascular diseas…

Biomarker-Based Pretraining for Chagas Disease Screening in Electrocardiograms

2026-04-10 · Elias Stenhede, Arian Ranjbar arxiv

Chagas disease screening via ECGs is limited by scarce and noisy labels in existing datasets. We propose a biomarker-based pretraining approach, where an ECG feature extractor is first trained to predict percentile-binne…

Early ECG Warning for Chagas Patients: Implementation of TinyML for Low-Resource Areas in Peru

2024-07-02 · UPCH 2024 7 · Diego A. Taquiri, Erick A. Valdivia, Ana B. Mantilla, Armando A. Flórez

Cardiovascular diseases (CVDs) are the leading cause of death globally, claiming approximately 17.9 million lives annually. These disorders, including coronary heart diseases, cerebrovascular diseases, and rheumatic hear…

Electrocardiography (ECG)

CardioRAG: A Retrieval-Augmented Generation Framework for Multimodal Chagas Disease Detection

2025-10-02 · Zhengyang Shen, Xuehao Zhai, Hua Tu, Mayue Shi arxiv

Chagas disease affects nearly 6 million people worldwide, with Chagas cardiomyopathy representing its most severe complication. In regions where serological testing capacity is limited, AI-enhanced electrocardiogram (ECG…