Claim Missing Document
Check
Articles

Found 2 Documents
Search

Distribution of Aedes aegypti (Linnaeus, 1762) based on Ovitrap Geodata at Kolongan Satu Village, Central Tomohon, North Sulawesi Rettob, Thesia; Astuti, Raden Roro Upiek Ngesti Wibawaning; Nugroho, Laurentius Hartanto
Journal of Tropical Life Science Vol. 15 No. 3
Publisher : Journal of Tropical Life Science

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.11594/jtls.15.03.11

Abstract

Dengue Hemorrhagic Fever (DHF) remains a major public health problem in Indonesia, particularly in urban and peri-urban areas where Aedes aegypti thrives. Tomohon City has experienced a significant increase in DHF cases and, in early 2024, ranked among the top five regions with the highest Incidence Rates (IR) in Indonesia. This study aimed to assess the distribution and density of A. aegypti larvae through ovitrap-based surveillance and to evaluate residents' basic knowledge of DHF and its vectors in Kolongan Satu Village, Tomohon City. A cross-sectional study was conducted using larval surveillance and a structured questionnaire. A total of 200 ovitraps were placed both indoors and outdoors in and around 100 houses across five surveillance stations. Egg collection was carried out in two stages. Collected eggs were identified morphologically as A. aegypti. Vector density was analyzed using the Ovitrap Index (OI) and Ovitrap Density Index (ODI). Residents’ knowledge regarding DHF transmission, vector characteristics, and preventive measures was assessed descriptively. The results showed that the OI values during stage 1 were 25.5% indoors and 39% outdoors, while during stage 2, the values were 24% indoors and 35% outdoors, indicating a medium level of vector presence. The ODI increased markedly from 3.21% in stage 1 to 9.72% in stage 2, reflecting a high density of A. aegypti. Most respondents demonstrated good knowledge of DHF, its vectors, and preventive strategies, although some difficulties in understanding scientific terminology were identified and addressed through education. These findings indicate persistent A. aegypti breeding in Kolongan Satu Village and highlight the need for strengthened vector control measures and continuous community-based education to prevent future DHF outbreaks.
Analysis Distribution Patterns and Correlation of Ecological Characteristics Affecting the Existence of the Maleo Birds (Macrocephalon maleo) in Central Sulawesi, Indonesia: Distribution and Ecological Drivers of Maleo in Central Sulawesi Abd. Karim , Wahyudin; Hadisusanto, Suwarno; Wibawaning Astuti, Raden Roro Upiek Ngesti; Pudyatmoko, Satyawan
Journal of Tropical Life Science Vol. 16 No. 01 (2026)
Publisher : Journal of Tropical Life Science

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.11594/jtls.16.01.08

Abstract

Macrocephalon maleo is an endemic bird species of Sulawesi that selects nesting sites based on specific environmental conditions, particularly optimal soil temperature, moisture, water content, soil weight, and texture (including clay, dust, and sand composition). However, studies examining the relationship between soil physical characteristics and microclimatic factors across multiple nesting sites remain limited. This study aims to analyze the distribution patterns and the correlation of ecological characteristics that influence the existence of maleo in Central Sulawesi. The research was conducted from February 2024 to March 2025 at seven locations with a total of 23 coordinate points, including nesting grounds near geothermal sources (Saluki, Lore Lindu National Park), coastal areas (Taima, Moilong, Batui, Ampana, and Balingara), and a riverbank area (Bukit Jaya). Field observations were carried out for 10 days at each location, during which 197 maleo birds were recorded. Maleo distribution patterns were analyzed using the Morisita Index, while the relationships between ecological factors and maleo presence were assessed using Pearson correlation analysis. The Morisita Index indicates a clumped distribution pattern, with values ranging from 2.0 to 5.0. The average sand temperatures recorded were 33.9°C in the geothermal area (Saluki TNLL); 35.0°C, 34.4°C, 35.4°C, 33.13°C, and 32.9°C in the coastal areas (Taima, Moilong, Batui, Ampana, and Balingara), and 36.1°C in the riverbank area (Bukit Jaya). The results indicate that soil-related ecological factors, particularly water content, soil texture, and sand weight, had a stronger influence on maleo presence than ambient microclimatic variables such as air temperature, humidity, wind speed, and light intensity. Soil texture influences water retention, aeration, heat absorption, and soil consistency. Sandy soils tend to absorb and release heat efficiently, thereby creating suitable incubation conditions for maleo eggs in natural nesting habitats.