Analisis Faktor Fisik Lingkungan Terhadap Indeks Populasi Lalat di Pasar Baru Kabupaten Ogan Komering Ulu

Eka Joni Yansyah, Putri Mayang Sari

Abstract


The higher the number or density of flies, it can indicate that environmental sanitation in that place is not bad and can indicate that human behavior around the place is not clean. The purpose of this study was to analyze the waste management system and physical environmental factors on the fly population index in Pasar Baru, Baturaja Timur District, OKU Regency in 2024. The research method used was the cross-sectional method. The research sample consisted of 60 respondents. The samples to be used in this study were 60 traders and 60 fly measurement locations. The univariate analysis in this study was the fly population index, room temperature, and air humidity in Pasar Baru, Baturaja Timur District. The bivariate analysis used the Chi Square test with a confidence level of 95%. The results of the study showed no significant relationship between room temperature and the fly population index in Pasar Baru, Baturaja Timur District, OKU Regency in 2024 with a P Value of 0.235 and no significant relationship between air humidity and the fly population index in Pasar Baru, Baturaja Timur District, OKU Regency in 2024 with a P Value of 0.134. Traders are expected to independently provide trash bins in accordance with regulations, separate trash bins for dry and wet waste, waterproof and closed.


Keywords


Environmental Physical Factors, Fly Population Index

References


Al-Irsyad, M., & Deniati, E. N. (2021). Faktor yang Berhubungan dengan Indeks Populasi Lalat pada Tempat Penampungan Sementara (TPS) Sampah di Pasar Kota Malang dan Kota Batu. Sport Science and Health, 3(6), 429–439. https://doi.org/10.17977/um062v3i62021p429-439

Awaliyah, H. F., & Yuriah, S. (2024). Family empowerment in support of pregnancy examination: Scoping review. International Journal of Health Sciences, 8(S1), 1543–1555. https://doi.org/10.53730/ijhs.v8nS1.15319

Edelsparre, A. H., Hefley, T. J., Rodríguez, M. A., Fitzpatrick, M. J., & Sokolowski, M. B. (2021). Scaling up: Understanding movement from individual differences to population-level dispersal. Ecology. https://doi.org/10.1101/2021.01.04.425125

Hu, G., Stefanescu, C., Oliver, T. H., Roy, D. B., Brereton, T., Van Swaay, C., Reynolds, D. R., & Chapman, J. W. (2021). Environmental drivers of annual population fluctuations in a trans-Saharan insect migrant. Proceedings of the National Academy of Sciences, 118(26), e2102762118. https://doi.org/10.1073/pnas.2102762118

Korneeva, Y. (2022). The Adverse Environmental Impact Factors Analysis on Fly-In-Fly-Out Personnel at Industrial Enterprises. International Journal of Environmental Research and Public Health, 19(2), 997. https://doi.org/10.3390/ijerph19020997

Lutz, L., Verhoff, M. A., & Amendt, J. (2019). Environmental factors influencing flight activity of forensically important female blow flies in Central Europe. International Journal of Legal Medicine, 133(4), 1267–1278. https://doi.org/10.1007/s00414-018-1967-5

Manisalidis, I., Stavropoulou, E., Stavropoulos, A., & Bezirtzoglou, E. (2020). Environmental and Health Impacts of Air Pollution: A Review. Frontiers in Public Health, 8, 14. https://doi.org/10.3389/fpubh.2020.00014

Meeds, A. W., Rusch, T. W., Falcone, D. L., & Weidner, L. M. (2023). A survey of blow fly (Diptera: Calliphoridae) populations in Phoenix, Arizona. Frontiers in Ecology and Evolution, 11, 1158347. https://doi.org/10.3389/fevo.2023.1158347

Moelyaningrum, A. D., Prajnawita, D., & Ningrum, P. T. (2020). Analysis Flies Density at Final Waste Disposal Jember Distric Area, Indonesia (Studi at Pakusari landfill and Ambulu landfill). JURNAL KESEHATAN LINGKUNGAN, 12(2), 136. https://doi.org/10.20473/jkl.v12i2.2020.136-143

Muthoharoh, B. L., Yuriah, S., Gustiani, R., Agustina, Y. R., Indrawati, I., & Mufdlilah, M. (2022). Efficacy of early initiation of breastfeeding (EIB) for preventing hypothermia in newborns. Journal of Health Technology Assessment in Midwifery, 5(2), 82–95. https://doi.org/10.31101/jhtam.2211

Nur, M., Sarong, M. A., Mudatsir, -, Sayuthi, M., & Marlina, -. (2022). Analysis of the Fly Population in the Community Around the Landfill Area through Ex Post Facto Approach. International Journal on Advanced Science, Engineering and Information Technology, 12(6), 2196–2202. https://doi.org/10.18517/ijaseit.12.6.16969

Pogue, T., Malod, K., & Weldon, C. W. (2024). Effects of Physiological Status and Environmental Factors on the Lure Responses of Three Pest Fruit Fly Species (Diptera: Tephritidae). Journal of Chemical Ecology, 50(11), 679–700. https://doi.org/10.1007/s10886-024-01516-8

Ptatscheck, C., Gansfort, B., Majdi, N., & Traunspurger, W. (2020). The influence of environmental and spatial factors on benthic invertebrate metacommunities differing in size and dispersal mode. Aquatic Ecology, 54(2), 447–461. https://doi.org/10.1007/s10452-020-09752-2

Purwanto, F. R., & Porusia, M. (2023). PENGENDALIAN LALAT MELALUI METODE MEKANIK DI PASAR HARJODAKSINO SURAKARTA. 7.

Putri, Y. D., Gunadi, R., Pranowo, D., Affandi, A., & Suputa, S. (2024). Population Dynamic of Fruit Fly Pests Bactrocera spp. In Salacca Orchard in Relation to Host Plants and Climate Factors. AGRIVITA Journal of Agricultural Science, 46(1), 1. https://doi.org/10.17503/agrivita.v46i1.4257

Ramayani, & Harto, T. (2023). Factors Related To The Incidence Of Ari At Tanjung Agung Health Center. Majalah Kedokteran Sriwijaya, 55(4).

Saputra, A., & Arvinanda, P. (2022). Hubungan Faktor Fisik Lingkungan Dan Pengelolaan Sampah Terhadap Indeks Populasi Lalat Di Resto Apung Pelabuhan Muara Angke Tahun 2022. 01(5).

Septiani, E. (2020). Hubungan Status Gizi Dengan Kejadian Ispa Pada Balita Di Wilayah Kerja Puskesmas Tanjung Agung Kabupaten Ogan Komering Ulu Tahun 2019. Journal Masker Medika, 8(1).

Subagyo, A. R., Salsabilla, V. C., Juliana Samantha, I., Irham, M. F., Rapika, M., Sari, M. M., & Suryawan, I. W. K. (2023). Optimizing Hospital Waste Management through Fly Trap Technology: A Cost and Potential Problem Analysis. Jurnal Serambi Engineering, 8(4). https://doi.org/10.32672/jse.v8i4.6571

Sun, Z., Sokolova, E., Brittain, J. E., Saltveit, S. J., Rauch, S., & Meland, S. (2019). Impact of environmental factors on aquatic biodiversity in roadside stormwater ponds. Scientific Reports, 9(1), 5994. https://doi.org/10.1038/s41598-019-42497-z

Yu, Z., Yang, G., Lin, T., Zhao, B., Xu, Y., Yao, X., Ma, W., Vejre, H., & Jiang, B. (2024). Exposure Ecology Drives a Unified Understanding of the Nexus of (Urban) Natural Ecosystem, Ecological Exposure, and Health. Ecosystem Health and Sustainability, 10, 0165. https://doi.org/10.34133/ehs.0165

Yuriah, S., Kartini, F., & Isnaeni, Y. (2022). Experiences of women with preeclampsia. International Journal of Health & Medical Sciences, 5(3), 201–210. https://doi.org/10.21744/ijhms.v5n3.1901

Zhao, L., Gao, R., Liu, J., Liu, L., Li, R., Men, L., & Zhang, Z. (2023). Effects of Environmental Factors on the Spatial Distribution Pattern and Diversity of Insect Communities along Altitude Gradients in Guandi Mountain, China. Insects, 14(3), 224. https://doi.org/10.3390/insects14030224




DOI: https://doi.org/10.33992/jsh:tjoh.v21i2.3820

Refbacks

  • There are currently no refbacks.


    

Web Analytics Made Easy - Statcounter

View My Stats