Aksa Ingrid Vieira Batista, Arthur Willian de Lima Brasil, Victor Fernando Santana Lima, Wesley Adson Costa Coelho, Lucas Micael Freire Pereira, João Vitor de Oliveira Gurgel, Maisa Alves Batista de Souza, Jose Rômulo Soares Dos Santos, Giliene Costa Monteiro Araujo, Josivania Soares Pereira
Coproparasitological examinations are essential non-invasive tools for detecting endoparasites in wild animals; however, the lack of methodological standardization and the variable performance of available techniques remain important challenges. This study evaluated the agreement and comparative performance of the Simplified Parasite Detection Method (SPDM) relative to three routinely used coproparasitological comparator methods: spontaneous sedimentation, Willis-Mollay flotation, and Mini-FLOTAC®. A total of 143 pooled fecal samples from mammals, birds, and reptiles were analyzed. Overall, SPDM showed moderate to substantial agreement with the comparator methods (Cohen's κ = 0.509 [C.I 95% 0.362-0.656]; 0.624 [CI 95% 0.491-0.757]; p < 0.001), together with high relative specificity, negative predictive values, and overall agreement. In addition to its comparative performance, SPDM required approximately five min of processing time per sample, involved minimal laboratory infrastructure, and had a low implementation cost, making it a practical alternative for routine coproparasitological examinations in both laboratory and field settings. Comparative performance varied among animal groups, with the highest agreement observed in birds and lower agreement in reptiles, probably reflecting the limited sample size and biological characteristics of reptile feces. SPDM also detected parasitic structures in some samples classified as negative by the comparator methods, highlighting its potential as an additional coproparasitological technique. Because no independent gold standard was available, the diagnostic indices reported should be interpreted as measures of comparative performance relative to the evaluated comparator methods rather than estimates of absolute diagnostic accuracy.