scholarly journals Geriatric Oral Health for dental and non-dental primary care providers

2021 ◽  
Vol 5 (Supplement_1) ◽  
pp. 841-841
Author(s):  
Maryam Tabrizi

Abstract Age-Friendly Health System is the innovation that provides care to older adults within 4Ms structure comprehensively. The 4Ms structure is the clinicians' guideline for providing treatments for each individual based on what matters most which is the first M. The 4Ms structure creates a person focus approach for the health of the elderly on every visit, as what matters most may change over time based on other health conditions of life situation. We must consider our patients come from all kinds of life walks, based on his/ her lifestyle, health beliefs, and cultural background. Consequently, older adults may define health and wellness differently and they might have different needs, oral health is no exception. However, evaluating both primary care office workflow and hospital workflow is missing the health element of oral care. The current health flow designed by the Institute of Health Improvement (IHI) in a collaborative effort with John A. Hartford may create a larger gap between oral health and overall health. In the light of integrating oral health to the overall health, the best place and most feasible in both primary care and hospital workflow is at the time of Check history for a baseline on 4Ms. This poster will clearly illustrate how oral health can integrate to overall health leading by the non-dental profession who usually take history for a baseline. As oral health is an integrated factor in the health of the geriatric population in the Age-Friendly Health System.

2020 ◽  
Vol 4 (Supplement_1) ◽  
pp. 10-11
Author(s):  
Victoria Grando ◽  
Roy Grando

Abstract In recent years, FNPs have been challenged to deliver mental health services in the primary care setting. Over half of mental health services are provided in primary care, and one-quarter of all primary care patients have a mental disorder. Moreover, 20% of older adults have a mental or neurological disorder often not diagnosed. Nationally, it is estimated that 17% of older adults commit suicide, 15% have a mental condition, 11% have dementia, and 5% have a serious mental condition. There is a paucity of adequately prepared primary care providers trained in geropsychiatric treatment. A didactic course was developed to instruct FNP students in the skills needed to provide mental health treatment in primary care. We discuss mental illness in the context of culture to ensure that treatment is congruent with a patient’s unique cultural background and experiences. This shapes the patients’ beliefs and behaviors that influence the way they view their condition and what they perceive as acceptable solutions. We then go into detail about the common mental conditions that older adults exhibit. Through the case study method, students learn to identify the presenting problem, protocols for analyzing the case, which includes making differential diagnoses and a treatment plan including initial medications, non-medical treatments, and referral. Students are introduced to the DMS-5 to learn the criteria for mental health diagnosis with an emphasis on suicide, depressive disorders, anxiety disorders, bipolar disorders, substance use disorders, and neurocognitive disorders. We have found that students most often misdiagnose neurocognitive disorders.


2020 ◽  
Vol 4 (Supplement_1) ◽  
pp. 686-686
Author(s):  
Erin Emery-Tiburcio ◽  
Rani Snyder

Abstract As the Age-Friendly Health System initiative moves across the US and around the world, not only do health system staff require education about the 4Ms, but older adults, caregivers, and families need education. Engaging and empowering the community about the 4Ms can improve communication, clarify and improve adherence to treatment plans, and improve patient satisfaction. Many methods for engaging the community in age-friendly care are currently in development. Initiated by Health Resources and Services Administration (HRSA)-funded Geriatric Workforce Enhancement Programs (GWEPs), Community Catalyst is leading the co-design of Age-Friendly Health System materials with older adults and caregivers. Testing these materials across the country in diverse populations of older adults and caregivers will yield open-source documents for local adaptation. Rush University Medical Center is testing a method for identifying, engaging, educating, and providing health services for family caregivers of older adults. This unique program integrates with the Age-Friendly Health System efforts in addressing all 4Ms for caregivers. The Bronx Health Corps (BHC) was created by the New York University Hartford Institute of Geriatric Nursing to educate older adults in the community about health and health behaviors. BHC developed a method for engaging and educating older adults that is replicable in other communities. Baylor College of Medicine adapted and tested the Patient Priorities Care model to educate primary care providers about how to engage older adults in conversations about What Matters to them. Central to the Age-Friendly movement, John A. Hartford Foundation leadership will discuss the implications of this important work.


2021 ◽  
Author(s):  
Kelsey Ufholz ◽  
Amy Sheon ◽  
Daksh Bhargava ◽  
Goutham Rao

BACKGROUND Since the COVID-19 pandemic, telemedicine appointments have replaced many in-person healthcare visits [1 2]. However, older people are less likely to participate in telemedicine, preferring either in-person care or foregoing care altogether [3-6]. With a high prevalence of chronic conditions and vulnerability to COVID-19 morbidity and mortality through exposure to others in health care environments, (1-4), promoting telemedicine use should be a high priority for seniors. Seniors face significant barriers to participation in telemedicine, including lower internet and device access and skills, and visual, auditory, and tactile difficulties with telemedicine. OBJECTIVE Hoping to offer training to increase telemedicine use, we undertook a quality improvement survey to identify barriers to, and facilitators of telemedicine among seniors presenting to an outpatient family medicine teaching clinic which serves predominantly African American, economically disadvantaged adults with chronic illness in Cleveland, Ohio. METHODS Our survey, designated by the IRB as quality improvement, was designed based on a review of the literature, and input from our primary care providers and a digital equity expert (Figure 1). To minimize patient burden, the survey was limited to 10 questions. Because we were interested in technology barriers, data were collected on paper rather than a tablet or computer, with a research assistant available to read the survey questions. Patients presenting with needs that could be accomplished remotely were approached by a research assistant to complete the survey starting February 2021 until we reached the pre-determined sample size (N=30) in June 2021. Patients with known dementia, those who normally resident in a long-term care facility, and those presenting with an acute condition (e.g. fall or COPD exacerbation) were ineligible. Because of the small number of respondents, only univariate and bivariate tabulations were performed, in Excel. RESULTS 83% of respondents said they had devices that could be used for a telemedicine visit and that they went on the internet, but just 23% had had telemedicine visits. Few patients had advanced devices (iPhones, desktops, laptops or tablets); 46% had only a single device that was not IOS based mobile (Table 1). All participants with devices said they used them for “messaging on the internet,” but this was the only function used by 40%. No one used the internet for banking, shopping, and few used internet functions commonly needed for telemedicine (23.3% had email; 30% did video calling) (Table 1). 23.3% of respondents had had a telemedicine appointment. Many reported a loss of connection to their doctor as a concern. Participants who owned a computer or iPhone used their devices for a broader range of tasks, (Table 2 and 3), were aged 65-70 (Table 4), and were more likely to have had a telemedicine visit and to have more favorable views of telemedicine (Table 2). Respondents who had not had a telemedicine appointment endorsed a greater number of telemedicine disadvantages and endorsed less interest in future appointments (Table 2). Respondents who did not own an internet-capable device did not report using any internet functions and none had had a telemedicine appointment (Table 2). CONCLUSIONS This small survey revealed significant gaps in telemedicine readiness among seniors who said they had devices that could be used for telemedicine and that they went online themselves. No patients used key internet functions needed for staying safe during COVID, and few used internet applications that required skills needed for telemedicine. Few patients had devices that are optimal for seniors using telemedicine. Patients with more advanced devices used more internet functions and had more telemedicine experience and more favorable attitudes than others. Our results confirm previous studies [7-9] showing generally lower technological proficiency among older adults and some concerns about participating in telemedicine. However, our study is novel in pointing to subtle dimensions of telemedicine readiness that warrant further study—device capacity and use of internet in ways that build skills needed for telemedicine such as email and video calling. Before training seniors to use telemedicine, it’s important to ensure that they have the devices, basic digital skills and connectivity needed for telemedicine. Larger studies are needed to confirm our results and apply multivariate analysis to understand the relationships among age, device quality, internet skills and telemedicine attitudes. Development of validated scales of telemedicine readiness and telemedicine training to complement in-person care can help health systems offer precision-matched interventions to address barriers, facilitate increased adoption, and generally improve patients’ overall access to primary care and engagement with their primary care provider.


10.2196/14525 ◽  
2020 ◽  
Vol 9 (1) ◽  
pp. e14525
Author(s):  
Amber K Brooks ◽  
David P Miller Jr ◽  
Jason T Fanning ◽  
Erin L Suftin ◽  
M Carrington Reid ◽  
...  

Background Low back pain is a costly healthcare problem and the leading cause of disability among adults in the United States. Primary care providers urgently need effective ways to deliver evidence-based, nonpharmacological therapies for chronic low back pain. Guidelines published by several government and national organizations have recommended nonpharmacological and nonopioid pharmacological therapies for low back pain. Objective The Pain eHealth Platform (PEP) pilot trial aims to test the feasibility of a highly innovative intervention that (1) uses an electronic health record (EHR) query to systematically identify a phenotype of obese, older adults with chronic low back pain who may benefit from Web-based behavioral treatments; (2) delivers highly tailored messages to eligible older adults with chronic low back pain via the patient portal; (3) links affected patients to a Web app that provides education on the efficacy of evidence-based, nonpharmacological, behavioral pain treatments; and (4) directs patients to existing Web-based health treatment tools. Methods Using a three-step modified Delphi method, an expert panel of primary care providers will define a low back pain phenotype for an EHR query. Using the defined low back pain phenotype, an EHR query will be created to identify patients who may benefit from the PEP. Up to 15 patients with low back pain will be interviewed to refine the tailored messaging, esthetics, and content of the patient-facing Web app within the PEP. Up to 10 primary care providers will be interviewed to better understand the facilitators and barriers to implementing the PEP, given their clinic workflow. We will assess the feasibility of the PEP in a single-arm pragmatic pilot study in which secure patient portal invitations containing a hyperlink to the PEP Web app are sent to 1000 patients. The primary outcome of the study is usability as measured by the System Usability Scale. Results Qualitative interviews with primary care providers were completed in April 2019. Qualitative interviews with patients will begin in December 2019. Conclusions The PEP will leverage informatics and the patient portal to deliver evidence-based nonpharmacological treatment information to adults with chronic low back pain. Results from this study may help inform the development of Web-based health platforms for other pain and chronic health conditions. International Registered Report Identifier (IRRID) DERR1-10.2196/14525


2019 ◽  
Author(s):  
Amber K Brooks ◽  
David P Miller Jr ◽  
Jason T Fanning ◽  
Erin L Suftin ◽  
M Carrington Reid ◽  
...  

BACKGROUND Low back pain is a costly healthcare problem and the leading cause of disability among adults in the United States. Primary care providers urgently need effective ways to deliver evidence-based, nonpharmacological therapies for chronic low back pain. Guidelines published by several government and national organizations have recommended nonpharmacological and nonopioid pharmacological therapies for low back pain. OBJECTIVE The Pain eHealth Platform (PEP) pilot trial aims to test the feasibility of a highly innovative intervention that (1) uses an electronic health record (EHR) query to systematically identify a phenotype of obese, older adults with chronic low back pain who may benefit from Web-based behavioral treatments; (2) delivers highly tailored messages to eligible older adults with chronic low back pain via the patient portal; (3) links affected patients to a Web app that provides education on the efficacy of evidence-based, nonpharmacological, behavioral pain treatments; and (4) directs patients to existing Web-based health treatment tools. METHODS Using a three-step modified Delphi method, an expert panel of primary care providers will define a low back pain phenotype for an EHR query. Using the defined low back pain phenotype, an EHR query will be created to identify patients who may benefit from the PEP. Up to 15 patients with low back pain will be interviewed to refine the tailored messaging, esthetics, and content of the patient-facing Web app within the PEP. Up to 10 primary care providers will be interviewed to better understand the facilitators and barriers to implementing the PEP, given their clinic workflow. We will assess the feasibility of the PEP in a single-arm pragmatic pilot study in which secure patient portal invitations containing a hyperlink to the PEP Web app are sent to 1000 patients. The primary outcome of the study is usability as measured by the System Usability Scale. RESULTS Qualitative interviews with primary care providers were completed in April 2019. Qualitative interviews with patients will begin in December 2019. CONCLUSIONS The PEP will leverage informatics and the patient portal to deliver evidence-based nonpharmacological treatment information to adults with chronic low back pain. Results from this study may help inform the development of Web-based health platforms for other pain and chronic health conditions. INTERNATIONAL REGISTERED REPORT DERR1-10.2196/14525


2019 ◽  
Vol 3 (Supplement_1) ◽  
pp. S36-S36
Author(s):  
Erin Emery-Tiburcio ◽  
Magdalena Bednarcyzk ◽  
Febe Wallace ◽  
Michelle Newman

Abstract Nationally, there is a shortage of geriatric trained healthcare providers caring for older adults. As the population of older adults grows, health care systems and primary care providers struggle to provide high quality, cost effective care for older adults. Time for training is also limited in busy community health centers. The CATCH-ON Learning Communities (LCs) are telehealth educational interventions based on the ECHO model, modified to be less time intensive, thus decreasing cost to participating clinics. In the LC, geriatric specialists provide evidence-based, best practice training utilizing case discussions to illustrate pertinent learning points via monthly one hour video conferences. Practical, specific behavioral recommendations are offered for immediate implementation in each session. LCs are provided to interprofessional primary care teams. The first LC with a federally-qualified health center (FQHC) yielded consistently high satisfaction from participants, along with a 17% decrease in high risk medication prescriptions and 22% increase in falls screenings. Training the primary care workforce in evidence based geriatric interventions can improve the care of all older adults within each health system, improving healthcare access to help mitigate healthcare inequalities, slow adoption of best practices and rising costs of caring for complex older adults. The CATCH-ON Learning Community is an effective, low cost model of training the primary care work force without geographical or financial constraints that frequently limit access to specialized care.


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