References: Centers for Disease Control and Prevention. Sexually Transmitted Infections Surveillance, 2022. 2022. Available at: https://www.cdc.gov/std/statistics/2022/default.htm . Accessed February 23, 2024.
Ohio Department of Health. Ohio Gonorrhea Cases 2018–2022. 2023. Available at: https://odh.ohio.gov/wps/wcm/connect/gov/0c08cee5-9ec0-4d3b-b4e5-125e8b42507a/GC1418.pdf?MOD=AJPERES&CONVERT_TO=url&CACHEID=ROOTWORKSPACE.Z18_M1HGGIK0N0JO00QO9DDDDM3000-0c08cee5-9ec0-4d3b-b4e5-125e8b42507a-mHF-DP . Accessed February 23, 2024.
Columbus Public Health. STIs in Central Ohio: Local, State & National Trends. 2019. Available at: https://www.columbus.gov/Services/Public-Health/About-Public-Health/Data-Reports . Accessed February 23, 2024.
Copen CE, Haderxhanaj LT, Renfro KJ, et al. County-level chlamydia and gonorrhea rates by social vulnerability, United States, 2014–2018. Sex Transm Dis 2022; 49:822–825.
Jennings JM, Curriero FC, Celentano D, et al. Geographic identification of high gonorrhea transmission areas in Baltimore, Maryland. Am J Epidemiol 2005; 161:73–80.
Cohen D, Spear S, Scribner R, et al. “Broken windows” and the risk of gonorrhea. Am J Public Health 2000; 90:230–236.
Du P, McNutt L-A, O'Campo P, et al. Changes in community socioeconomic status and racial distribution associated with gonorrhea rates: An analysis at the community level. Sex Transm Dis 2009; 36:430–438.
Owusu-Edusei K, Chesson HW. Using spatial regression methods to examine the association between county-level racial/ethnic composition and reported cases of chlamydia and gonorrhea: An illustration with data from the state of Texas. Sex Transm Dis 2009; 36:657–664.
Chesson HW, Kent CK, Owusu-Edusei K, et al. Disparities in sexually transmitted disease rates across the “eight Americas”. Sex Transm Dis 2012; 39:458–464.
Sullivan AB, Gesink DC, Brown P, et al. Are neighborhood sociocultural factors influencing the spatial pattern of gonorrhea in North Carolina? Ann Epidemiol 2011; 21:245–252.
von dem Knesebeck O. Concepts of social epidemiology in health services research. BMC Health Serv Res 2015; 15:357.
Hallfors DD, Iritani BJ, Miller WC, et al. Sexual and drug behavior patterns and HIV and STD racial disparities: The need for new directions. Am J Public Health 2007; 97:125–132.
Mah JC, Penwarden JL, Pott H, et al. Social vulnerability indices: A scoping review. BMC Public Health 2023; 23:1253.
Agency for Toxic Substances and Disease Registry. CDC/ATSDR Social Vulnerability Index. Available at: https://www.atsdr.cdc.gov/placeandhealth/svi/fact_sheet/fact_sheet.html . Accessed February 23, 2024.
Centers for Disease Control and Prevention. STD Surveillance Network (SSuN). Available at: https://www.cdc.gov/sti/php/projects/ssun.html?CDC_AAref_Val=https://www.cdc.gov/std/ssun/default.htm . Accessed February 23, 2024.
Rietmeijer CA, Donnelly J, Bernstein KT, et al. Here comes the SSuN: Early experiences with the STD Surveillance Network. Public Health Rep 2009; 124(Suppl 2):72–77.
Patton ME, Kidd S, Llata E, et al. Extragenital gonorrhea and chlamydia testing and infection among men who have sex with men—STD Surveillance Network, United States, 2010–2012. Clin Infect Dis 2014; 58:1564–1570.
Ramesh B, Jagger MA, Zaitchik BF, et al. Estimating changes in emergency department visits associated with floods caused by Tropical Storm Imelda using satellite observations and syndromic surveillance. Health Place 2022; 74:102757.
Brewer CA. Evaluation of methods for classifying epidemiological data on choropleth maps in series. Ann Assoc Am Geogr 2002; 92:662–681.
Kahn RH, Moseley KE, Thilges JN, et al. Community-based screening and treatment for STDs: Results from a mobile clinic initiative. Sex Transm Dis 2003; 30:654–658.
Liang TS, Erbelding E, Jacob CA, et al. Rapid HIV testing of clients of a mobile STD/HIV clinic. AIDS Patient Care STDS 2005; 19:253–257.
Hogben M, Leichliter JS. Social determinants and sexually transmitted disease disparities. Sex Transm Dis 2008; 35(12 Suppl):S13–S18.
Han Y, Coles FB, Muse A, et al. Assessment of a geographically targeted field intervention on gonorrhea incidence in two New York State counties. Sex Transm Dis 1999; 26:296–302.
Du P, Coles FB, Gerber T, et al. Effects of partner notification on reducing gonorrhea incidence rate. Sex Transm Dis 2007; 34:189–194.
Fairley CK, Hocking JS, Zhang L, et al. Frequent transmission of gonorrhea in men who have sex with men. Emerg Infect Dis 2017; 23:102–104.
Llata E, Cuffe KM, Picchetti V, et al. Demographic, behavioral, and clinical characteristics of persons seeking care at sexually transmitted disease clinics—14 sites, STD Surveillance Network, United States, 2010–2018. MMWR Surveill Summ 2021; 70:1–20.
Barbee LA, Dombrowski JC, Kerani R, et al. Effect of nucleic acid amplification testing on detection of extragenital gonorrhea and chlamydial infections in men who have sex with men sexually transmitted disease clinic patients. Sex Transm Dis 2014; 41:168–172.
New data suggest STDs continued to increase during first year of the COVID-19 pandemic. 2022. Available at: https://www.cdc.gov/media/releases/2022/p0412-STD-Increase.html . Accessed February 23, 2024.
Stanford KA, Mason JA, Friedman EE. Trends in STI testing and diagnosis rates during the COVID-19 pandemic at a large urban tertiary care center, and the role of the emergency department in STI care. Front Reprod Health 2023; 5:1082429.
Cohen GH, Ross CS, Cozier YC, et al. Census 2020—A preventable public health catastrophe. Am J Public Health 2019; 109:1077–1078.
No Comments.