Estrada-Contreras Israel, Sandoval-Ruiz César A, Mendoza-Palmero Fredy S, Ibáñez-Bernal Sergio, Equihua Miguel, Benítez Griselda
Red de Ambiente y Sustentabilidad, Instituto de Ecología, A.C., Carretera Antigua a Coatepec No. 351 El Haya, Xalapa, C.P. 91070 Veracruz, México.
Laboratorio de Artropodología y Salud, Escuela de Biología, Benemérita Universidad Autónoma de Puebla. Puebla, México. Blvd. Valsequillo y Av. San Claudio Edificio 112-A, Ciudad Universitaria Col. Jardines de San Manuel, C.P. 72570 Puebla, Mexico.
Data Brief. 2016 Dec 16;10:432-437. doi: 10.1016/j.dib.2016.12.014. eCollection 2017 Feb.
The data presented in this article are related to the research article entitled "Establishment of (L.) in mountainous regions in Mexico: Increasing number of population at risk of mosquito-borne disease and future climate conditions" (M. Equihua, S. Ibáñez-Bernal, G. Benítez, I. Estrada-Contreras, C.A. Sandoval-Ruiz, F.S. Mendoza-Palmero, 2016) [1]. This article provides presence records in shapefile format used to generate maps of potential distribution of with different climate change scenarios as well as each of the maps obtained in raster format. In addition, tables with values of potential distribution of the vector as well as the average values of probability of presence including data of the mosquito incidence along the altitudinal range.
本文所呈现的数据与题为《墨西哥山区(L.)的建立:蚊媒疾病高危人群数量增加及未来气候条件》(M. Equihua、S. Ibáñez-Bernal、G. Benítez、I. Estrada-Contreras、C.A. Sandoval-Ruiz、F.S. Mendoza-Palmero,2016年)的研究文章相关[1]。本文提供了以shapefile格式呈现的存在记录,这些记录用于生成不同气候变化情景下(物种名称缺失,推测为某种生物)潜在分布的地图以及以栅格格式获得的每张地图。此外,还提供了包含病媒潜在分布值以及存在概率平均值的表格,其中包括沿海拔范围的蚊虫发病率数据。