1. Agi, V. N., Aleru, C. P., & Uweh, E. J. (2021). Bacterial contamination of some domestic and laboratory refrigerators in Port Harcourt Metropolis. European Journal of Health Sciences, 6(1), 16-34. [
Crossref]
2. Alhassan, M., Nzeh, J., Quansah, L., & Dufailu, O. A. (2022). Antimicrobial resistance profile of Staphylococcus spp. and Listeria spp. isolated from refrigerators of retailers and students in the Tolon District, Ghana. Journal of Food Safety and Hygiene, 8(2), 122-131. [
Crossref]
3. Altunatmaz, S. S., Issa, G., & Aydin, A. (2012). Detection of airborne psychrotrophic bacteria and fungi in food storage refrigerators. Brazilian Journal of Microbiology, 43(4), 1436-1443. [
Crossref]
4. Düven, G., Tiryaki Gündüz, G., & Kışla, D. (2021). Determination of hygienic status of refrigerator surfaces. Food and Health, 7(4), 251-258. [
Crossref]
5. Fazelipour, M., Neisi, A., Alizadehattar, S., & Kiasat, N. (2020). Isolation and identification of psychrotrophic fungal contamination in food storage refrigerators in Ahvaz city restaurants. Jundishapur Journal of Health Sciences, 12(2), 6-10. [
Crossref]
6. Lalitha, C., Krishna, V. S., & Visakhapatnam, P. A. (2019). Contamination of refrigerator is a threat for infection. International Journal of Advanced Research, Ideas and Innovations in Technology, 5(2), 1514-1517.
7. Larone, D. H. (2011). Medically important fungi: A guide to identification (5th ed.). ASM Press. [
Crossref]
8. MacFaddin, J. F. (2000). Biochemical tests for identification of medical bacteria (3rd ed.). Lippincott Williams & Wilkins.
9. Mori, M., Sakagami, Y., Tanaka, M., Inoue, R., & Jojima, T. (2020). Analysis of the relationship of microbial contamination with temperature and cleaning frequency and method of domestic refrigerators in Japan. Journal of Food Protection, 83(7), 1234-1240. [
Crossref]
10. Otu-Bassey, I. B., Ewaoche, I. S., Okon, B. F., & Ibor, U. A. (2017). Microbial contamination of house hold refrigerators in Calabar Metropolis-Nigeria. American Journal of Epidemiology and Infectious Disease, 5(1), 1-7.
11. Pasquarella, C., Pitzurra, O., & Savino, A. (2000). The index of microbial air contamination (IMA): A new index for the assessment of airborne microorganisms. Journal of Hospital Infection, 46(4), 241-256. [
Crossref]
12. Sarabi, N., Sarkhosh, M., Najafpoor, A., Alidadi, H., & Baridkazemi, S. (2022). Investigation of bacterial and fungal contamination in domestic refrigerators. Journal of Research in Environmental Health, 8(3), 259-266.
13. Shahzad, A., Qureshi, A., Rehman, M. A. U., Ain, Q. U., Nawaz, A., Amir, A., . . . & Rizwan, M. (2025). Frequency and antimicrobial susceptibility pattern of bacteria and fungi isolated from household refrigerators. Frontiers in Medical and Health Research, 3(4), 428-445.
14. Soomro, R., Urooj, S., Ali Miran, Z., Huda, N., Naz, Sh., Mirbahar, A. A., . . . & Raza, Y. (2024). Illuminating biofilm formation and pathogen persistence in household refrigerators: Evidence from Karachi, Pakistan. Microbiological and Immunological Communications, 3(1), 81-92. [
Crossref]
15. Taha, H. H., Abed, F. N. M., & Al-Rawi, J. M. (2025). Isolation and identification of fungal species contaminating refrigerators. Al-Kitab Journal for Pure Sciences, 9(1), 103-116. [
Crossref]
16. Telli, A. E., Kahraman, H. A., Bicer, Y., & Gurbuz, U. (2019). Detection of the airborne microbiological contamination in domestic refrigerators in a student residential area of Konya, Turkey. Fresenius Environmental Bulletin, 28(6), 4790-4797.
17. Yong, S. S., Lee, J. I., & Kang, D. H. (2023). Bacterial composition of refrigerators in households and inactivation of airborne Staphylococcus aureus using a TiO₂ UVLED module in a 512 L aerobiology chamber. Food Microbiology, 114, 104274. [
Crossref]
18. Zhang, W., Wang, J., Zhang, Y., Ye, K., Han, Y., Wang, C., . . . & Ge, X. (2022). Evaluation of bacterial contamination on three different surfaces within domestic refrigerators. Food Materials Research, 2(1), 1-7. [
Crossref]