The environmental impact of surgical telemedicine: life cycle assessment of virtual vs. in-person preoperative evaluations for benign foregut disease
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Mary K. Bryant | R. Tarefder | Z. Khan | B. Oelschlager | Duncan A Meiklejohn | Duncan A. Meiklejohn | Baraka Gitonga | A. Wright | R. Sillcox | Jay Zhu
[1] K. Ranganathan,et al. Disparities in Telemedicine Literacy and Access in the United States , 2022, Plastic and reconstructive surgery.
[2] E. Avgerinos,et al. Improved outpatient medical visit compliance with sociodemographic discrepancies in vascular telehealth evaluations , 2022, Journal of Vascular Surgery.
[3] K. Kalantar-Zadeh,et al. Changing landscape of living kidney donation and the role of telemedicine , 2022, Current opinion in nephrology and hypertension.
[4] B. Shakhsheer,et al. Ethical Issues Related to the COVID-19 Pandemic That Have Influenced Pediatric Surgery. , 2022, Pediatric annals.
[5] E. A. Asare,et al. Bridging the Disparity Gap in Surgical Oncology Access: Does Telehealth Hold a Key? , 2022, Annals of Surgical Oncology.
[6] S. Greenberg,et al. Environmental impact of telehealth use for pediatric surgery. , 2022, Journal of pediatric surgery.
[7] Peter F. Halpin,et al. Mobile health school screening and telemedicine referral to improve access to specialty care in rural Alaska: a cluster- randomised controlled trial. , 2022, The Lancet. Global health.
[8] D. Pencheon,et al. Do no harm: addressing the environmental impact of health care , 2022, Nature Reviews Disease Primers.
[9] Kendall Gross,et al. Utilization and Adequacy of Telemedicine for Outpatient Pediatric Surgical Care , 2022, Journal of Surgical Research.
[10] C. Jobin,et al. Disparities in Telemedicine Utilization During COVID-19 Pandemic , 2022, JB & JS open access.
[11] B. Oelschlager,et al. The impact of socioeconomic status on telemedicine utilization during the COVID-19 pandemic among surgical clinics at an academic tertiary care center , 2022, Surgical Endoscopy.
[12] P. Melvin,et al. Sociodemographic Missed-care Predictors for Pediatric Orthopaedic Telemedicine During COVID-19 , 2022, Journal of pediatric orthopedics.
[13] D. Smink,et al. Demographic Disparity in Use of Telemedicine for Ambulatory General Surgical Consultation During the COVID-19 Pandemic: Analysis of the Initial Public Health Emergency and Second Phase Periods. , 2022, Journal of the American College of Surgeons.
[14] Jabaris D Swain,et al. “Can you see my screen?” Addressing Racial and Ethnic Disparities in Telehealth , 2021, Current Cardiovascular Risk Reports.
[15] M. Louie,et al. Patient Characteristics Associated with Access to Minimally Invasive Gynecologic Surgery: Changes during the COVID-19 Pandemic , 2021, Journal of Minimally Invasive Gynecology.
[16] A. Chagpar. Sociodemographic factors affecting telemedicine access: A population-based analysis , 2021, Surgery.
[17] E. Wilkinson. Reaching net zero carbon emissions in health systems , 2021, The Lancet.
[18] A. Barratt,et al. High value health care is low carbon health care , 2021, The Medical journal of Australia.
[19] S. Ratcliffe,et al. Disparities in telemedicine utilization among surgical patients during COVID-19 , 2021, PloS one.
[20] Rachel B. Seymour,et al. Age and socioeconomic status affect access to telemedicine at an urban level 1 trauma center , 2021, OTA international : the open access journal of orthopaedic trauma.
[21] D. Rainham,et al. Operating in a Climate Crisis: A State-of-the-Science Review of Life Cycle Assessment within Surgical and Anesthetic Care , 2021, Environmental health perspectives.
[22] D. Franceschi,et al. Demographics associated with US healthcare disparities are exacerbated by the telemedicine surge during the COVID-19 pandemic , 2021, Journal of telemedicine and telecare.
[23] A. De la taille,et al. Positive environmental impact of remote teleconsultation in urology during the COVID-19 pandemic in a highly populated area , 2021, Progrès en Urologie.
[24] M. Mazumdar,et al. Pre-existing Disparities and Potential Implications for the Rapid Expansion of Telemedicine in Response to the Coronavirus Disease 2019 Pandemic , 2021, Medical care.
[25] L. Hutzler,et al. Telemedicine Utilization at an Academic Medical Center During COVID-19 Pandemic: Are Some Patients Being Left Behind? , 2021, Telemedicine journal and e-health : the official journal of the American Telemedicine Association.
[26] J. Weiner,et al. In-Person and Telehealth Ambulatory Contacts and Costs in a Large US Insured Cohort Before and During the COVID-19 Pandemic , 2021, JAMA network open.
[27] B. Matthews,et al. Postdischarge Virtual Visits for Low-risk Surgeries: A Randomized Noninferiority Clinical Trial. , 2021, JAMA surgery.
[28] A. Ning,et al. Systematic Review of Telehealth Cost Minimization for Patients and Health Systems in Otolaryngology , 2020, The Laryngoscope.
[29] A. Capon,et al. Environmentally sustainable health care: now is the time for action , 2020, The Medical journal of Australia.
[30] N. Stuart. Environmental Sustainability Must Be on Our Agenda for Healthcare. , 2020, HealthcarePapers.
[31] Jorge A. Rodriguez,et al. Telemedicine, COVID-19, and disparities: Policy implications , 2020, Health Policy and Technology.
[32] A. Capon,et al. Environmentally sustainable health care: now is the time for action , 2020, The Medical journal of Australia.
[33] Jessica S. Ancker,et al. Interventions to increase patient portal use in vulnerable populations: a systematic review , 2019, J. Am. Medical Informatics Assoc..
[34] Jessica S. Ancker,et al. Good intentions are not enough: how informatics interventions can worsen inequality , 2018, J. Am. Medical Informatics Assoc..
[35] J. Sherman,et al. Life cycle environmental emissions and health damages from the Canadian healthcare system: An economic-environmental-epidemiological analysis , 2018, PLoS medicine.
[36] V. Chopra,et al. The Harm We Do: The Environmental Impact of Medicine , 2018, Journal of hospital medicine.
[37] M. Issa,et al. Comparative Cost Analysis: Teleurology vs Conventional Face-to-Face Clinics. , 2017, Urology.
[38] J. Sherman,et al. Environmental Impacts of the U.S. Health Care System and Effects on Public Health , 2016, PloS one.
[39] M. Nilsson,et al. Carbon Footprint of Telemedicine Solutions - Unexplored Opportunity for Reducing Carbon Emissions in the Health Sector , 2014, PloS one.
[40] David O Meltzer,et al. Estimate of the carbon footprint of the US health care sector. , 2009, JAMA.
[41] H. Labelle. [Now is the time for action]. , 1986, Tijdschrift voor ziekenverpleging.
[42] Edeltraud Guenther,et al. Life cycle assessment as decision support tool for environmental management in hospitals: A literature review. , 2019, Health care management review.
[43] Manfred Lenzen,et al. The carbon footprint of Australian health care. , 2018, The Lancet. Planetary health.
[44] O. Jolliet,et al. Life Cycle Impact Assessment , 2015 .