缩小城乡差距:利用技术和人工智能改善美国农村地区健康和经济成果的实施计划。

IF 3.1 3区 医学 Q2 HEALTH CARE SCIENCES & SERVICES Journal of Rural Health Pub Date : 2024-03-23 DOI:10.1111/jrh.12836
William B Weeks MD, PhD, MBA, Justin Spelhaug BA, James N Weinstein DO, MS, Juan M Lavista Ferres PhD, MS
{"title":"缩小城乡差距:利用技术和人工智能改善美国农村地区健康和经济成果的实施计划。","authors":"William B Weeks MD, PhD, MBA,&nbsp;Justin Spelhaug BA,&nbsp;James N Weinstein DO, MS,&nbsp;Juan M Lavista Ferres PhD, MS","doi":"10.1111/jrh.12836","DOIUrl":null,"url":null,"abstract":"<p>Rural residents have higher age-adjusted mortality and prevalence rates for cardiovascular disease, diabetes, cancer, unintentional injury, and stroke.<span><sup>1-8</sup></span> Those living in rural settings experience shorter lifespans<span><sup>9-11</sup></span> amplified by higher the premature mortality rates implicated in “deaths of despair.”<span><sup>12</sup></span> These longstanding rural-urban disparities in health outcomes, clinical care, health behaviors, and social determinants of health are increasing<span><sup>11, 13</sup></span> as is the “rural mortality penalty,”<span><sup>14-16</sup></span> which has tripled in the past two decades.<span><sup>17</sup></span></p><p>While “Health Care Access and Quality” was the primary health priority for rural America in Rural Healthy People 2010 and 2020, it dropped to the third most important priority in Rural Healthy People 2030. Over the past decade, both mental health and addiction have risen in relative importance for rural America, with “Economic Stability” debuting among the top 10 social determinant priorities.<span><sup>18</sup></span></p><p>Utilization data indicate an increasing demand for telemedicine services in rural settings: the relatively low uptake of telepsychiatry services in rural settings prior to the COVID epidemic<span><sup>19</sup></span> and persistent rural-urban disparities in preventable acute care use suggest an unmet demand for high-quality ambulatory care in rural areas<span><sup>20</sup></span> and portend increasing reliance on telemedicine to improve rural residents’ healthcare access and health management.</p><p>Finally, rural districts reported significantly fewer students who have access to an internet-enabled device that is adequate for online learning and access to reliable broadband; given that inadequate broadband infrastructure is a critical barrier both to telehealth services provision and remote learning in rural settings, efforts to expand broadband access should focus on rural settings to ensure health and education equity.<span><sup>21</sup></span></p><p>In this context, access to healthcare among rural US residents is declining: rural hospitals are experiencing substantial financial distress,<span><sup>22</sup></span> closing at a faster rate than urban hospitals<span><sup>23</sup></span> (accounting for 71% of total hospital closures between 2017 and 2021),<span><sup>24</sup></span> and restricting the types of care that they offer if they remain open.<span><sup>25, 26</sup></span> These realities have direct adverse impact on local healthcare outcomes and indirect adverse impacts on the local economy: rural hospitals are important local employers and drivers of local economic health and their closures can reduce care access and create local economic chaos.<span><sup>23, 27, 28</sup></span> That rural residents disproportionately rely on emergency services and experience greater mortality for symptom-based conditions, underscores the importance of ensuring access to treatment of life-threatening conditions in rural emergency departments, which are increasingly endangered by hospital closures.<span><sup>29</sup></span></p><p>In addition to rural hospitals’ persistent challenges of low patient volumes, poor payer and patient mixes, workforce shortages, economic and demographic shifts, the opioid epidemic, and inadequate medical surge capacity,<span><sup>25</sup></span> they are more vulnerable to cyberattacks,<span><sup>30</sup></span> with ransomware attacks causing unprecedented crises in rural and small hospitals.<span><sup>31</sup></span> While security and training offer potential solutions, barriers to technological solutions include initial and ongoing costs, technical concerns with current systems, and inadequate local technical support.<span><sup>32</sup></span> Rural hospitals’ lack of technological sophistication has clinical practice ramifications: those lacking electronic health records have lower odds of adopting telehealth.<span><sup>33</sup></span></p><p>In the post-COVID era, from a national public health perspective, it is important to ensure that rural hospitals maintain solvency to avoid delayed and deferred care:<span><sup>34</sup></span> in the last decade, rural public health systems have lost public health capacity, while urban systems have expanded that capacity.<span><sup>35</sup></span></p><p>The goal of healthcare is to achieve the quadruple aim: improving the patient experience, improving the provider experience, improving care quality and outcomes (in an equitable way), and reducing per-capita costs over time.<span><sup>36</sup></span></p><p>In rural settings, AI-informed telehealth models have been associated with positive outcomes for patients and healthcare professionals,<span><sup>37</sup></span> reduced overall healthcare utilization and improved cardiovascular disease risk factors,<span><sup>38</sup></span> and enhanced self-care and knowledge of heart failure.<span><sup>39</sup></span> Technological solutions could effectively expand the rural provider workforce by using computer vision analysis of skin, tympanic membranes, retinas, or CT scans<span><sup>40</sup></span> to identify cases without follow-up needs, reducing existing providers’ workload and allowing them to focus on patients with healthcare needs. Further, technology infrastructure transformation could improve patient-provider communications: while rural residents are as likely as their urban counterparts to own and use digital health technology to manage health conditions, they are less likely to communicate with their health providers using that technology, particularly when EHRs are unavailable.<span><sup>41</sup></span></p><p>Fundamental technological transformation could reduce healthcare costs in rural settings by reducing ransomware exposure and automating back-office operations, including scheduling, correspondence, and billing. It could support the implementation of AI-informed models of health monitoring and healthcare delivery (both for direct patient care and telemedicine consultation), development of new roles for rural hospitals (like the provision of recovery care and care at home), and analytic capacity of electronic medical records. Such implementation could help rural hospitals become more financially viable while improving access to high quality, affordable, local healthcare.</p><p>Further, technological transformation may generate positive community externalities by stimulating rural economic growth in several ways. First, it could serve as a basis for technology training for other sectors important in rural America, helping to build a rural technology workforce. Second, it could facilitate technology use in the classroom, thereby improving the quality of local rural educational systems. Third, it could support applications designed to enhance rural America's cultural and entertainment experience, improving access to benefits sought by those who leave rural settings and helping address rural health workforce recruiting and retention challenges.<span><sup>42</sup></span></p><p>While new policies and incentives are needed to overcome the health information technology shortcomings in rural America,<span><sup>43</sup></span> we propose a three-phased technology implementation proposal designed to improve rural hospitals’ financial performance, support clinical and population health in rural settings, and help rural hospitals and communities thrive. In the short term, for national security purposes, rural hospitals should implement cloud-based software solutions that can reduce ransomware risk and help with back-office operations, scheduling, and patient communications. Supported by industry and government, this would improve data security, financial performance (by reducing overall on-premises information technology costs), and provider- and administrator-productivity. In the medium term, building on this ecosystem, rural hospitals could implement AI-informed diagnostic, patient-management, and population management tools that would further enhance financial performance (by avoiding unnecessary care and enhancing provider efficiency) while improving patient engagement, care access, and population health. In the long term, rural hospitals might engage in public-private-partnership-funded programs designed to explore how best to deploy technology to deliver care and improve population health across the rural-urban continuum. By pairing rural hospitals with financially sound academic medical centers in the same general region, a “hub and spoke” model could give rural hospitals access to resources beyond their current budgetary capacities like systems that allow for copatient management across settings and ambient intelligent solutions that facilitate high quality and safe care.</p><p>Rural residents and the rural hospitals that serve them are increasingly under advantaged compared to their urban counterparts. We propose a phased technological transformation process that can improve national security, improve productivity and financial sustainability, achieve the quadruple aim, improve the local economic environment, and provide local access to technology, skilling, educational, and cultural experiences in rural settings. Such an initiative could stabilize rural economic environments and potentially reverse longstanding rural-urban health disparities.</p><p>The authors have no conflicts of interest to report.</p>","PeriodicalId":50060,"journal":{"name":"Journal of Rural Health","volume":null,"pages":null},"PeriodicalIF":3.1000,"publicationDate":"2024-03-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1111/jrh.12836","citationCount":"0","resultStr":"{\"title\":\"Bridging the rural-urban divide: An implementation plan for leveraging technology and artificial intelligence to improve health and economic outcomes in rural America\",\"authors\":\"William B Weeks MD, PhD, MBA,&nbsp;Justin Spelhaug BA,&nbsp;James N Weinstein DO, MS,&nbsp;Juan M Lavista Ferres PhD, MS\",\"doi\":\"10.1111/jrh.12836\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Rural residents have higher age-adjusted mortality and prevalence rates for cardiovascular disease, diabetes, cancer, unintentional injury, and stroke.<span><sup>1-8</sup></span> Those living in rural settings experience shorter lifespans<span><sup>9-11</sup></span> amplified by higher the premature mortality rates implicated in “deaths of despair.”<span><sup>12</sup></span> These longstanding rural-urban disparities in health outcomes, clinical care, health behaviors, and social determinants of health are increasing<span><sup>11, 13</sup></span> as is the “rural mortality penalty,”<span><sup>14-16</sup></span> which has tripled in the past two decades.<span><sup>17</sup></span></p><p>While “Health Care Access and Quality” was the primary health priority for rural America in Rural Healthy People 2010 and 2020, it dropped to the third most important priority in Rural Healthy People 2030. Over the past decade, both mental health and addiction have risen in relative importance for rural America, with “Economic Stability” debuting among the top 10 social determinant priorities.<span><sup>18</sup></span></p><p>Utilization data indicate an increasing demand for telemedicine services in rural settings: the relatively low uptake of telepsychiatry services in rural settings prior to the COVID epidemic<span><sup>19</sup></span> and persistent rural-urban disparities in preventable acute care use suggest an unmet demand for high-quality ambulatory care in rural areas<span><sup>20</sup></span> and portend increasing reliance on telemedicine to improve rural residents’ healthcare access and health management.</p><p>Finally, rural districts reported significantly fewer students who have access to an internet-enabled device that is adequate for online learning and access to reliable broadband; given that inadequate broadband infrastructure is a critical barrier both to telehealth services provision and remote learning in rural settings, efforts to expand broadband access should focus on rural settings to ensure health and education equity.<span><sup>21</sup></span></p><p>In this context, access to healthcare among rural US residents is declining: rural hospitals are experiencing substantial financial distress,<span><sup>22</sup></span> closing at a faster rate than urban hospitals<span><sup>23</sup></span> (accounting for 71% of total hospital closures between 2017 and 2021),<span><sup>24</sup></span> and restricting the types of care that they offer if they remain open.<span><sup>25, 26</sup></span> These realities have direct adverse impact on local healthcare outcomes and indirect adverse impacts on the local economy: rural hospitals are important local employers and drivers of local economic health and their closures can reduce care access and create local economic chaos.<span><sup>23, 27, 28</sup></span> That rural residents disproportionately rely on emergency services and experience greater mortality for symptom-based conditions, underscores the importance of ensuring access to treatment of life-threatening conditions in rural emergency departments, which are increasingly endangered by hospital closures.<span><sup>29</sup></span></p><p>In addition to rural hospitals’ persistent challenges of low patient volumes, poor payer and patient mixes, workforce shortages, economic and demographic shifts, the opioid epidemic, and inadequate medical surge capacity,<span><sup>25</sup></span> they are more vulnerable to cyberattacks,<span><sup>30</sup></span> with ransomware attacks causing unprecedented crises in rural and small hospitals.<span><sup>31</sup></span> While security and training offer potential solutions, barriers to technological solutions include initial and ongoing costs, technical concerns with current systems, and inadequate local technical support.<span><sup>32</sup></span> Rural hospitals’ lack of technological sophistication has clinical practice ramifications: those lacking electronic health records have lower odds of adopting telehealth.<span><sup>33</sup></span></p><p>In the post-COVID era, from a national public health perspective, it is important to ensure that rural hospitals maintain solvency to avoid delayed and deferred care:<span><sup>34</sup></span> in the last decade, rural public health systems have lost public health capacity, while urban systems have expanded that capacity.<span><sup>35</sup></span></p><p>The goal of healthcare is to achieve the quadruple aim: improving the patient experience, improving the provider experience, improving care quality and outcomes (in an equitable way), and reducing per-capita costs over time.<span><sup>36</sup></span></p><p>In rural settings, AI-informed telehealth models have been associated with positive outcomes for patients and healthcare professionals,<span><sup>37</sup></span> reduced overall healthcare utilization and improved cardiovascular disease risk factors,<span><sup>38</sup></span> and enhanced self-care and knowledge of heart failure.<span><sup>39</sup></span> Technological solutions could effectively expand the rural provider workforce by using computer vision analysis of skin, tympanic membranes, retinas, or CT scans<span><sup>40</sup></span> to identify cases without follow-up needs, reducing existing providers’ workload and allowing them to focus on patients with healthcare needs. Further, technology infrastructure transformation could improve patient-provider communications: while rural residents are as likely as their urban counterparts to own and use digital health technology to manage health conditions, they are less likely to communicate with their health providers using that technology, particularly when EHRs are unavailable.<span><sup>41</sup></span></p><p>Fundamental technological transformation could reduce healthcare costs in rural settings by reducing ransomware exposure and automating back-office operations, including scheduling, correspondence, and billing. It could support the implementation of AI-informed models of health monitoring and healthcare delivery (both for direct patient care and telemedicine consultation), development of new roles for rural hospitals (like the provision of recovery care and care at home), and analytic capacity of electronic medical records. Such implementation could help rural hospitals become more financially viable while improving access to high quality, affordable, local healthcare.</p><p>Further, technological transformation may generate positive community externalities by stimulating rural economic growth in several ways. First, it could serve as a basis for technology training for other sectors important in rural America, helping to build a rural technology workforce. Second, it could facilitate technology use in the classroom, thereby improving the quality of local rural educational systems. Third, it could support applications designed to enhance rural America's cultural and entertainment experience, improving access to benefits sought by those who leave rural settings and helping address rural health workforce recruiting and retention challenges.<span><sup>42</sup></span></p><p>While new policies and incentives are needed to overcome the health information technology shortcomings in rural America,<span><sup>43</sup></span> we propose a three-phased technology implementation proposal designed to improve rural hospitals’ financial performance, support clinical and population health in rural settings, and help rural hospitals and communities thrive. In the short term, for national security purposes, rural hospitals should implement cloud-based software solutions that can reduce ransomware risk and help with back-office operations, scheduling, and patient communications. Supported by industry and government, this would improve data security, financial performance (by reducing overall on-premises information technology costs), and provider- and administrator-productivity. In the medium term, building on this ecosystem, rural hospitals could implement AI-informed diagnostic, patient-management, and population management tools that would further enhance financial performance (by avoiding unnecessary care and enhancing provider efficiency) while improving patient engagement, care access, and population health. In the long term, rural hospitals might engage in public-private-partnership-funded programs designed to explore how best to deploy technology to deliver care and improve population health across the rural-urban continuum. By pairing rural hospitals with financially sound academic medical centers in the same general region, a “hub and spoke” model could give rural hospitals access to resources beyond their current budgetary capacities like systems that allow for copatient management across settings and ambient intelligent solutions that facilitate high quality and safe care.</p><p>Rural residents and the rural hospitals that serve them are increasingly under advantaged compared to their urban counterparts. We propose a phased technological transformation process that can improve national security, improve productivity and financial sustainability, achieve the quadruple aim, improve the local economic environment, and provide local access to technology, skilling, educational, and cultural experiences in rural settings. Such an initiative could stabilize rural economic environments and potentially reverse longstanding rural-urban health disparities.</p><p>The authors have no conflicts of interest to report.</p>\",\"PeriodicalId\":50060,\"journal\":{\"name\":\"Journal of Rural Health\",\"volume\":null,\"pages\":null},\"PeriodicalIF\":3.1000,\"publicationDate\":\"2024-03-23\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"https://onlinelibrary.wiley.com/doi/epdf/10.1111/jrh.12836\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Journal of Rural Health\",\"FirstCategoryId\":\"3\",\"ListUrlMain\":\"https://onlinelibrary.wiley.com/doi/10.1111/jrh.12836\",\"RegionNum\":3,\"RegionCategory\":\"医学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q2\",\"JCRName\":\"HEALTH CARE SCIENCES & SERVICES\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Rural Health","FirstCategoryId":"3","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1111/jrh.12836","RegionNum":3,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"HEALTH CARE SCIENCES & SERVICES","Score":null,"Total":0}
引用次数: 0

摘要

41 根本性的技术转型可以减少勒索软件的风险,实现排班、通信和计费等后台操作的自动化,从而降低农村地区的医疗成本。它可以支持实施以人工智能为基础的健康监测和医疗服务模式(包括直接的患者护理和远程医疗咨询),为乡村医院开发新的角色(如提供康复护理和居家护理),以及电子病历的分析能力。此外,技术改造可以通过多种方式刺激农村经济增长,从而产生积极的社区外部效应。首先,它可以为美国农村地区其他重要部门的技术培训奠定基础,帮助建立农村技术人才队伍。其次,它可以促进技术在课堂上的应用,从而提高当地农村教育系统的质量。42 虽然需要新的政策和激励措施来克服美国农村地区医疗信息技术的不足,43 但我们提出了一个三阶段的技术实施方案,旨在改善农村医院的财务状况,支持农村地区的临床和人口健康,帮助农村医院和社区蓬勃发展。在短期内,出于国家安全目的,乡村医院应实施基于云的软件解决方案,以降低勒索软件风险,并帮助后台操作、日程安排和患者沟通。在行业和政府的支持下,这将提高数据安全性、财务业绩(通过降低整体信息技术成本)以及医疗服务提供者和管理者的工作效率。从中期来看,在这一生态系统的基础上,乡镇医院可以实施人工智能诊断、患者管理和人口管理工具,从而进一步提高财务绩效(通过避免不必要的护理和提高医疗服务提供者的效率),同时提高患者参与度、医疗服务可及性和人口健康水平。从长远来看,乡镇医院可以参与由公私合作伙伴资助的项目,旨在探索如何以最佳方式部署技术,以提供医疗服务并改善城乡人口的健康状况。通过将乡镇医院与同一地区财务状况良好的学术医疗中心结成对子,"中心辐射 "模式可以让乡镇医院获得超出其现有预算能力的资源,如允许跨机构共同管理病人的系统,以及促进高质量和安全护理的环境智能解决方案。我们建议分阶段进行技术改造,以提高国家安全,提高生产力和财政可持续性,实现四重目标,改善当地经济环境,并在农村地区提供技术、技能、教育和文化体验。这一举措可以稳定农村经济环境,并有可能扭转城乡之间长期存在的健康差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
查看原文
分享 分享
微信好友 朋友圈 QQ好友 复制链接
本刊更多论文
Bridging the rural-urban divide: An implementation plan for leveraging technology and artificial intelligence to improve health and economic outcomes in rural America

Rural residents have higher age-adjusted mortality and prevalence rates for cardiovascular disease, diabetes, cancer, unintentional injury, and stroke.1-8 Those living in rural settings experience shorter lifespans9-11 amplified by higher the premature mortality rates implicated in “deaths of despair.”12 These longstanding rural-urban disparities in health outcomes, clinical care, health behaviors, and social determinants of health are increasing11, 13 as is the “rural mortality penalty,”14-16 which has tripled in the past two decades.17

While “Health Care Access and Quality” was the primary health priority for rural America in Rural Healthy People 2010 and 2020, it dropped to the third most important priority in Rural Healthy People 2030. Over the past decade, both mental health and addiction have risen in relative importance for rural America, with “Economic Stability” debuting among the top 10 social determinant priorities.18

Utilization data indicate an increasing demand for telemedicine services in rural settings: the relatively low uptake of telepsychiatry services in rural settings prior to the COVID epidemic19 and persistent rural-urban disparities in preventable acute care use suggest an unmet demand for high-quality ambulatory care in rural areas20 and portend increasing reliance on telemedicine to improve rural residents’ healthcare access and health management.

Finally, rural districts reported significantly fewer students who have access to an internet-enabled device that is adequate for online learning and access to reliable broadband; given that inadequate broadband infrastructure is a critical barrier both to telehealth services provision and remote learning in rural settings, efforts to expand broadband access should focus on rural settings to ensure health and education equity.21

In this context, access to healthcare among rural US residents is declining: rural hospitals are experiencing substantial financial distress,22 closing at a faster rate than urban hospitals23 (accounting for 71% of total hospital closures between 2017 and 2021),24 and restricting the types of care that they offer if they remain open.25, 26 These realities have direct adverse impact on local healthcare outcomes and indirect adverse impacts on the local economy: rural hospitals are important local employers and drivers of local economic health and their closures can reduce care access and create local economic chaos.23, 27, 28 That rural residents disproportionately rely on emergency services and experience greater mortality for symptom-based conditions, underscores the importance of ensuring access to treatment of life-threatening conditions in rural emergency departments, which are increasingly endangered by hospital closures.29

In addition to rural hospitals’ persistent challenges of low patient volumes, poor payer and patient mixes, workforce shortages, economic and demographic shifts, the opioid epidemic, and inadequate medical surge capacity,25 they are more vulnerable to cyberattacks,30 with ransomware attacks causing unprecedented crises in rural and small hospitals.31 While security and training offer potential solutions, barriers to technological solutions include initial and ongoing costs, technical concerns with current systems, and inadequate local technical support.32 Rural hospitals’ lack of technological sophistication has clinical practice ramifications: those lacking electronic health records have lower odds of adopting telehealth.33

In the post-COVID era, from a national public health perspective, it is important to ensure that rural hospitals maintain solvency to avoid delayed and deferred care:34 in the last decade, rural public health systems have lost public health capacity, while urban systems have expanded that capacity.35

The goal of healthcare is to achieve the quadruple aim: improving the patient experience, improving the provider experience, improving care quality and outcomes (in an equitable way), and reducing per-capita costs over time.36

In rural settings, AI-informed telehealth models have been associated with positive outcomes for patients and healthcare professionals,37 reduced overall healthcare utilization and improved cardiovascular disease risk factors,38 and enhanced self-care and knowledge of heart failure.39 Technological solutions could effectively expand the rural provider workforce by using computer vision analysis of skin, tympanic membranes, retinas, or CT scans40 to identify cases without follow-up needs, reducing existing providers’ workload and allowing them to focus on patients with healthcare needs. Further, technology infrastructure transformation could improve patient-provider communications: while rural residents are as likely as their urban counterparts to own and use digital health technology to manage health conditions, they are less likely to communicate with their health providers using that technology, particularly when EHRs are unavailable.41

Fundamental technological transformation could reduce healthcare costs in rural settings by reducing ransomware exposure and automating back-office operations, including scheduling, correspondence, and billing. It could support the implementation of AI-informed models of health monitoring and healthcare delivery (both for direct patient care and telemedicine consultation), development of new roles for rural hospitals (like the provision of recovery care and care at home), and analytic capacity of electronic medical records. Such implementation could help rural hospitals become more financially viable while improving access to high quality, affordable, local healthcare.

Further, technological transformation may generate positive community externalities by stimulating rural economic growth in several ways. First, it could serve as a basis for technology training for other sectors important in rural America, helping to build a rural technology workforce. Second, it could facilitate technology use in the classroom, thereby improving the quality of local rural educational systems. Third, it could support applications designed to enhance rural America's cultural and entertainment experience, improving access to benefits sought by those who leave rural settings and helping address rural health workforce recruiting and retention challenges.42

While new policies and incentives are needed to overcome the health information technology shortcomings in rural America,43 we propose a three-phased technology implementation proposal designed to improve rural hospitals’ financial performance, support clinical and population health in rural settings, and help rural hospitals and communities thrive. In the short term, for national security purposes, rural hospitals should implement cloud-based software solutions that can reduce ransomware risk and help with back-office operations, scheduling, and patient communications. Supported by industry and government, this would improve data security, financial performance (by reducing overall on-premises information technology costs), and provider- and administrator-productivity. In the medium term, building on this ecosystem, rural hospitals could implement AI-informed diagnostic, patient-management, and population management tools that would further enhance financial performance (by avoiding unnecessary care and enhancing provider efficiency) while improving patient engagement, care access, and population health. In the long term, rural hospitals might engage in public-private-partnership-funded programs designed to explore how best to deploy technology to deliver care and improve population health across the rural-urban continuum. By pairing rural hospitals with financially sound academic medical centers in the same general region, a “hub and spoke” model could give rural hospitals access to resources beyond their current budgetary capacities like systems that allow for copatient management across settings and ambient intelligent solutions that facilitate high quality and safe care.

Rural residents and the rural hospitals that serve them are increasingly under advantaged compared to their urban counterparts. We propose a phased technological transformation process that can improve national security, improve productivity and financial sustainability, achieve the quadruple aim, improve the local economic environment, and provide local access to technology, skilling, educational, and cultural experiences in rural settings. Such an initiative could stabilize rural economic environments and potentially reverse longstanding rural-urban health disparities.

The authors have no conflicts of interest to report.

求助全文
通过发布文献求助,成功后即可免费获取论文全文。 去求助
来源期刊
Journal of Rural Health
Journal of Rural Health 医学-公共卫生、环境卫生与职业卫生
CiteScore
7.60
自引率
6.10%
发文量
86
审稿时长
>12 weeks
期刊介绍: The Journal of Rural Health, a quarterly journal published by the NRHA, offers a variety of original research relevant and important to rural health. Some examples include evaluations, case studies, and analyses related to health status and behavior, as well as to health work force, policy and access issues. Quantitative, qualitative and mixed methods studies are welcome. Highest priority is given to manuscripts that reflect scholarly quality, demonstrate methodological rigor, and emphasize practical implications. The journal also publishes articles with an international rural health perspective, commentaries, book reviews and letters.
期刊最新文献
Clinical outcomes and profitability following rural hospital mergers and acquisitions. Community responses and adaptations following the closure of a rural pharmacy and primary care facility. Weight status underestimation and weight management goals among adults in the rural South of the United States. Social needs and health outcomes in two rural Veteran populations. Association between obesogenic environments and childhood overweight/obesity across the United States: Differences by rurality.
×
引用
GB/T 7714-2015
复制
MLA
复制
APA
复制
导出至
BibTeX EndNote RefMan NoteFirst NoteExpress
×
×
提示
您的信息不完整,为了账户安全,请先补充。
现在去补充
×
提示
您因"违规操作"
具体请查看互助需知
我知道了
×
提示
现在去查看 取消
×
提示
确定
0
微信
客服QQ
Book学术公众号 扫码关注我们
反馈
×
意见反馈
请填写您的意见或建议
请填写您的手机或邮箱
已复制链接
已复制链接
快去分享给好友吧!
我知道了
×
扫码分享
扫码分享
Book学术官方微信
Book学术文献互助
Book学术文献互助群
群 号:481959085
Book学术
文献互助 智能选刊 最新文献 互助须知 联系我们:info@booksci.cn
Book学术提供免费学术资源搜索服务,方便国内外学者检索中英文文献。致力于提供最便捷和优质的服务体验。
Copyright © 2023 Book学术 All rights reserved.
ghs 京公网安备 11010802042870号 京ICP备2023020795号-1