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Guo FX, Wu CY. Study on the prevention and nursing intervention of infection after flap transfer for hand trauma. Medicine (Baltimore) 2023; 102:e34756. [PMID: 37653820 PMCID: PMC10470726 DOI: 10.1097/md.0000000000034756] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/19/2023] [Revised: 07/22/2023] [Accepted: 07/24/2023] [Indexed: 09/02/2023] Open
Abstract
To analyze the factors associated with infection after flap transfer for hand trauma and use them to develop nursing strategies and observe the effects of their application. Eighty-two patients admitted to our hospital for flap transfer for hand trauma from January 2020 to May 2020 were selected for the retrospective analysis. Logistic regression analysis was performed to analyze the factors associated with postoperative infections to develop care strategies. Another 88 patients admitted for flap transfer for hand trauma from September 2020 to June 2021 were retrospectively analyzed and divided into the observation (n = 44) and control groups (n = 44) according nursing strategies that they received. The operative time, intraoperative bleeding, incision healing time, first postoperative time to get out of bed on their own and hospital stay were compared between the 2 groups. The patients postoperative adverse effects and flap survival rates were also counted. visual analogue score, total active motion, manual muscle test, Barthel index, self-rating anxiety scale, self-rating depression scale scores were used to assess patients pain, hand function recovery and psychology before and after treatment. Logistic regression analysis manifested that postoperative bed rest time, affected limb immobilization, and pain were independent factors affecting postoperative infection after flap transfer (P < .05). After using targeted care strategies, the observation group had dramatically shorter operative time, intraoperative bleeding, incision healing time, time to first postoperative bed release on their own, and hospital stay, less postoperative pain and adverse effects, and higher flap survival rate than the control group (P < .05). Total active motion, manual muscle test, and Barthel index were higher in the observation group than in the control group after treatment, while self-rating anxiety scale and self-rating depression scale scores were lower than in the control group (P < .05). Finally, total satisfaction was higher in the observation group than in the control group (P < .05). Postoperative bedtime, fixation of the affected limb, and pain are independent factors affecting postoperative infection after flap transfer for hand trauma. Implementing infection prevention care strategies based on these factors can effectively improve the safety of flap transfer, reduce the possibility of infection, and shorten the recovery period of patients, which has high clinical application value.
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Affiliation(s)
- Fang-Xiang Guo
- Department of Operating Room, Affiliated Nanhua Hospital, University of South China, Hengyang, Hunan, China
| | - Cai-Yun Wu
- Department of Operating Room, Affiliated Nanhua Hospital, University of South China, Hengyang, Hunan, China
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Wong VWY, Huang Y, Wei WI, Wong SYS, Kwok KO. Approaches to multidrug-resistant organism prevention and control in long-term care facilities for older people: a systematic review and meta-analysis. Antimicrob Resist Infect Control 2022; 11:7. [PMID: 35033198 PMCID: PMC8761316 DOI: 10.1186/s13756-021-01044-0] [Citation(s) in RCA: 12] [Impact Index Per Article: 4.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/17/2020] [Accepted: 12/23/2021] [Indexed: 12/26/2022] Open
Abstract
BACKGROUND Despite clear evidence of benefits in acute-care hospitals, controversy over the effectiveness of IPC measures for MDROs is perceptible and evidence-based practice has not been established. OBJECTIVE To investigate the effects of IPC interventions on MDRO colonization and infections in LTCFs. DATA SOURCES Ovid MEDLINE, EMBASE, and CINAHL from inception to September 2020. ELIGIBILITY CRITERIA Original and peer-reviewed articles examining the post-intervention effects on MDRO colonization and infections in LTCFs. INTERVENTIONS (i) Horizontal interventions: administrative engagement, barrier precautions, education, environmental cleaning, hand hygiene, performance improvement, and source control; and (ii) vertical intervention: active surveillance plus decolonization. STUDY APPRAISAL AND SYNTHESIS We employed a random-effects meta-analysis to estimate the pooled risk ratios (pRRs) for methicillin-resistant Staphylococcus aureus (MRSA) colonization by intervention duration; and conducted subgroup analyses on different intervention components. Study quality was assessed using Cochrane risk of bias tools. RESULTS Of 3877 studies identified, 19 were eligible for inclusion (eight randomized controlled trials (RCTs)). Studies reported outcomes associated with MRSA (15 studies), vancomycin-resistant Enterococci (VRE) (four studies), Clostridium difficile (two studies), and Gram-negative bacteria (GNB) (two studies). Eleven studies were included in the meta-analysis. The pRRs were close to unity regardless of intervention duration (long: RR 0.81 [95% CI 0.60-1.10]; medium: RR 0.81 [95% CI 0.25-2.68]; short: RR 0.95 [95% CI 0.53-1.69]). Vertical interventions in studies with a small sample size showed significant reductions in MRSA colonization while horizontal interventions did not. All studies involving active administrative engagement reported reductions. The risk of bias was high in all but two studies. CONCLUSIONS Our meta-analysis did not show any beneficial effects from IPC interventions on MRSA reductions in LTCFs. Our findings highlight that the effectiveness of interventions in these facilities is likely conditional on resource availability-particularly decolonization and barrier precautions, due to their potential adverse events and uncertain effectiveness. Hence, administrative engagement is crucial for all effective IPC programmes. LTCFs should consider a pragmatic approach to reinforce standard precautions as routine practice and implement barrier precautions and decolonization to outbreak responses only.
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Affiliation(s)
- Valerie Wing Yu Wong
- JC School of Public Health and Primary Care, The Chinese University of Hong Kong, Room 419, 4/F, JC School of Public Health and Primary Care Building, Prince of Wales Hospital, Shatin, N.T., Hong Kong Special Administrative Region, China
| | - Ying Huang
- JC School of Public Health and Primary Care, The Chinese University of Hong Kong, Room 419, 4/F, JC School of Public Health and Primary Care Building, Prince of Wales Hospital, Shatin, N.T., Hong Kong Special Administrative Region, China
| | - Wan In Wei
- JC School of Public Health and Primary Care, The Chinese University of Hong Kong, Room 419, 4/F, JC School of Public Health and Primary Care Building, Prince of Wales Hospital, Shatin, N.T., Hong Kong Special Administrative Region, China
| | - Samuel Yeung Shan Wong
- JC School of Public Health and Primary Care, The Chinese University of Hong Kong, Room 419, 4/F, JC School of Public Health and Primary Care Building, Prince of Wales Hospital, Shatin, N.T., Hong Kong Special Administrative Region, China
| | - Kin On Kwok
- JC School of Public Health and Primary Care, The Chinese University of Hong Kong, Room 419, 4/F, JC School of Public Health and Primary Care Building, Prince of Wales Hospital, Shatin, N.T., Hong Kong Special Administrative Region, China.
- Stanley Ho Centre for Emerging Infectious Diseases, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong Special Administrative Region, China.
- Shenzhen Research Institute of The Chinese University of Hong Kong, Shenzhen, China.
- Hong Kong Institute of Asia-Pacific Studies, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong Special Administrative Region, China.
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Ducarmon QR, Terveer EM, Nooij S, Bloem MN, Vendrik KEW, Caljouw MAA, Sanders IMJG, van Dorp SM, Wong MC, Zwittink RD, Kuijper EJ. Microbiota-associated risk factors for asymptomatic gut colonisation with multi-drug-resistant organisms in a Dutch nursing home. Genome Med 2021; 13:54. [PMID: 33827686 PMCID: PMC8028076 DOI: 10.1186/s13073-021-00869-z] [Citation(s) in RCA: 18] [Impact Index Per Article: 4.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/17/2020] [Accepted: 03/16/2021] [Indexed: 11/25/2022] Open
Abstract
Background Nursing home residents have increased rates of intestinal colonisation with multidrug-resistant organisms (MDROs). We assessed the colonisation and spread of MDROs among this population, determined clinical risk factors for MDRO colonisation and investigated the role of the gut microbiota in providing colonisation resistance against MDROs. Methods We conducted a prospective cohort study in a Dutch nursing home. Demographical, epidemiological and clinical data were collected at four time points with 2-month intervals (October 2016–April 2017). To obtain longitudinal data, faecal samples from residents were collected for at least two time points. Ultimately, twenty-seven residents were included in the study and 93 faecal samples were analysed, of which 27 (29.0%) were MDRO-positive. Twelve residents (44.4%) were colonised with an MDRO at at least one time point throughout the 6-month study. Results Univariable generalised estimating equation logistic regression indicated that antibiotic use in the previous 2 months and hospital admittance in the previous year were associated with MDRO colonisation. Characterisation of MDRO isolates through whole-genome sequencing revealed Escherichia coli sequence type (ST)131 to be the most prevalent MDRO and ward-specific clusters of E. coli ST131 were identified. Microbiota analysis by 16S rRNA gene amplicon sequencing revealed no differences in alpha or beta diversity between MDRO-positive and negative samples, nor between residents who were ever or never colonised. Three bacterial taxa (Dorea, Atopobiaceae and Lachnospiraceae ND3007 group) were more abundant in residents never colonised with an MDRO throughout the 6-month study. An unexpectedly high abundance of Bifidobacterium was observed in several residents. Further investigation of a subset of samples with metagenomics showed that various Bifidobacterium species were highly abundant, of which B. longum strains remained identical within residents over time, but were different between residents. Conclusions Our study provides new evidence for the role of the gut microbiota in colonisation resistance against MDROs in the elderly living in a nursing home setting. Dorea, Atopobiaceae and Lachnospiraceae ND3007 group may be associated with protection against MDRO colonisation. Furthermore, we report a uniquely high abundance of several Bifidobacterium species in multiple residents and excluded the possibility that this was due to probiotic supplementation. Supplementary Information The online version contains supplementary material available at 10.1186/s13073-021-00869-z.
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Affiliation(s)
- Quinten R Ducarmon
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands. .,Center for Microbiome Analyses and Therapeutics, Leiden University Medical Center, Leiden, The Netherlands.
| | - Elisabeth M Terveer
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.,Center for Microbiome Analyses and Therapeutics, Leiden University Medical Center, Leiden, The Netherlands
| | - Sam Nooij
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.,Center for Microbiome Analyses and Therapeutics, Leiden University Medical Center, Leiden, The Netherlands
| | - Michelle N Bloem
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.,Center for Microbiome Analyses and Therapeutics, Leiden University Medical Center, Leiden, The Netherlands
| | - Karuna E W Vendrik
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.,Center for Infectious Disease Control, National Institute for Public Health and the Environment, Bilthoven, The Netherlands
| | - Monique A A Caljouw
- Department of Public Health and Primary Care, Leiden University Medical Center, Leiden, The Netherlands
| | - Ingrid M J G Sanders
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands
| | - Sofie M van Dorp
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.,Department of Internal Medicine and Geriatrics, Onze Lieve Vrouwe Gasthuis (OLVG Hospital), Amsterdam, The Netherlands
| | - Man C Wong
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands
| | - Romy D Zwittink
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.,Center for Microbiome Analyses and Therapeutics, Leiden University Medical Center, Leiden, The Netherlands
| | - Ed J Kuijper
- Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.,Center for Microbiome Analyses and Therapeutics, Leiden University Medical Center, Leiden, The Netherlands.,Center for Infectious Disease Control, National Institute for Public Health and the Environment, Bilthoven, The Netherlands
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Sloane PD, Zimmerman S, Nace DA. Progress and Challenges in the Management of Nursing Home Infections. J Am Med Dir Assoc 2020; 21:1-4. [DOI: 10.1016/j.jamda.2019.11.025] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/27/2019] [Accepted: 11/27/2019] [Indexed: 01/08/2023]
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Thompson ND, Penna A, Eure TR, Bamberg WM, Barney G, Barter D, Clogher P, DeSilva MB, Dumyati G, Epson E, Frank L, Godine D, Irizarry L, Kainer MA, Li L, Lynfield R, Mahoehney JP, Nadle J, Ocampo V, Perry L, Ray SM, Davis SS, Sievers M, Wilson LE, Zhang AY, Stone ND, Magill SS. Epidemiology of Antibiotic Use for Urinary Tract Infection in Nursing Home Residents. J Am Med Dir Assoc 2019; 21:91-96. [PMID: 31822391 DOI: 10.1016/j.jamda.2019.11.009] [Citation(s) in RCA: 20] [Impact Index Per Article: 3.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/09/2019] [Revised: 11/01/2019] [Accepted: 11/12/2019] [Indexed: 01/27/2023]
Abstract
OBJECTIVES Describe antibiotic use for urinary tract infection (UTI) among a large cohort of US nursing home residents. DESIGN Analysis of data from a multistate, 1-day point prevalence survey of antimicrobial use performed between April and October 2017. SETTING AND PARTICIPANTS Residents of 161 nursing homes in 10 US states of the Emerging Infections Program (EIP). METHODS EIP staff reviewed nursing home medical records to collect data on systemic antimicrobial drugs received by residents, including therapeutic site, rationale for use, and planned duration. For drugs with the therapeutic site documented as urinary tract, pooled mean and nursing home-specific prevalence rates were calculated per 100 nursing home residents, and proportion of drugs by selected characteristics were reported. Data were analyzed in SAS, version 9.4. RESULTS Among 15,276 residents, 407 received 424 antibiotics for UTI. The pooled mean prevalence rate of antibiotic use for UTI was 2.66 per 100 residents; nursing home-specific rates ranged from 0 to 13.6. One-quarter of antibiotics were prescribed for UTI prophylaxis, with a median planned duration of 111 days compared with 7 days when prescribed for UTI treatment (P < .001). Fluoroquinolones were the most common (18%) drug class used. CONCLUSIONS AND IMPLICATIONS One in 38 residents was receiving an antibiotic for UTI on a given day, and nursing home-specific prevalence rates varied by more than 10-fold. UTI prophylaxis was common with a long planned duration, despite limited evidence to support this practice among older persons in nursing homes. The planned duration was ≥7 days for half of antibiotics prescribed for treatment of a UTI. Fluoroquinolones were the most commonly used antibiotics, despite their association with significant adverse events, particularly in a frail and older adult population. These findings help to identify priority practices for nursing home antibiotic stewardship.
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Affiliation(s)
- Nicola D Thompson
- Division of Healthcare Quality Promotion, Centers for Disease Control and Prevention, Atlanta, GA.
| | - Austin Penna
- Division of Healthcare Quality Promotion, Centers for Disease Control and Prevention, Atlanta, GA
| | - Taniece R Eure
- Division of Healthcare Quality Promotion, Centers for Disease Control and Prevention, Atlanta, GA
| | - Wendy M Bamberg
- Colorado Department of Public Health and Environment, Denver, CO
| | - Grant Barney
- New York Emerging Infections Program, Rochester, NY
| | - Devra Barter
- Colorado Department of Public Health and Environment, Denver, CO
| | - Paula Clogher
- Connecticut Emerging Infections Program and the Yale School of Public Health, New Haven, CT
| | | | - Ghinwa Dumyati
- New York Emerging Infections Program, Rochester, NY; University of Rochester, Rochester, NY
| | - Erin Epson
- California Department of Health, Richmond, CA
| | - Linda Frank
- California Emerging Infections Program, Oakland, CA
| | | | | | | | - Linda Li
- Maryland Department of Health, Baltimore, MD
| | | | | | - Joelle Nadle
- California Emerging Infections Program, Oakland, CA
| | | | - Lewis Perry
- Georgia Emerging Infections Program, Atlanta, GA
| | - Susan M Ray
- Georgia Emerging Infections Program, Atlanta, GA; Emory University, Atlanta, GA
| | | | | | | | | | - Nimalie D Stone
- Division of Healthcare Quality Promotion, Centers for Disease Control and Prevention, Atlanta, GA
| | - Shelley S Magill
- Division of Healthcare Quality Promotion, Centers for Disease Control and Prevention, Atlanta, GA
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Measuring Antibiotic Appropriateness for Urinary Tract Infections in Nursing Home Residents. Infect Control Hosp Epidemiol 2017; 38:998-1001. [PMID: 28560933 DOI: 10.1017/ice.2017.96] [Citation(s) in RCA: 27] [Impact Index Per Article: 3.4] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/07/2022]
Abstract
We assessed the appropriateness of initiating antibiotics in 49 nursing home (NH) residents receiving antibiotics for urinary tract infection (UTI) using 3 published algorithms. Overall, 16 residents (32%) received prophylaxis, and among the 33 receiving treatment, the percentage of appropriate use ranged from 15% to 45%. Opportunities exist for improving UTI antibiotic prescribing in NH. Infect Control Hosp Epidemiol 2017;38:998-1001.
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An Antimicrobial Stewardship Program Based on Systematic Infectious Disease Consultation in a Rehabilitation Facility. Infect Control Hosp Epidemiol 2016; 38:76-82. [PMID: 27745559 DOI: 10.1017/ice.2016.233] [Citation(s) in RCA: 29] [Impact Index Per Article: 3.2] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/22/2022]
Abstract
OBJECTIVE To assess the impact of an antimicrobial stewardship program (ASP) on antibiotic consumption, Clostridium difficile infections (CDI), and antimicrobial resistance patterns in a rehabilitation hospital. DESIGN Quasi-experimental study of the periods before (from January 2011 to June 2012) and after (from July 2012 to December 2014) ASP implementation. SETTING 150-bed rehabilitation hospital dedicated to patients with spinal-cord injuries. INTERVENTION Beginning in July 2012, an ASP was implemented based on systematic bedside infectious disease (ID) consultation and structural interventions (ie, revision of protocols for antibiotic prophylaxis and education focused on the appropriateness of antibiotic prescriptions). Antibiotic consumption, occurrence of CDI, and antimicrobial resistance patterns of selected microorganisms were compared between periods before and after the ASP implementation. RESULTS Antibiotic consumption decreased from 42 to 22 defined daily dose (DDD) per 100 patient days (P<.001). The main reductions involved carbapenems (from 13 to 0.4 DDD per 100 patient days; P=.01) and fluoroquinolones (from 11.8 to 0.99 DDD per 100 patient days; P=.006), with no increases in mortality or length of stay. The incidence of CDI decreased from 3.6 to 1.2 cases per 10,000 patient days (P=.001). Between 2011 and 2014, the prevalence of extensively drug-resistant (XDR) strains decreased from 55% to 12% in P. aeruginosa (P<.001) and from 96% to 73% in A. baumannii (P=.03). The prevalence of ESBL-producing strains decreased from 42% to 17% in E. coli (P=.0007) and from 62% to 15% in P. mirabilis (P=.0001). In K. pneumoniae, the prevalence of carbapenem-resistant strains decreased from 42% to 17% (P=.005), and the prevalence of in methicillin-resistant S. aureus strains decreased from 77% to 40% (P<.0008). CONCLUSIONS An ASP based on ID consultation was effective in reducing antibiotic consumption without affecting patient outcomes and in improving antimicrobial resistance patterns in a rehabilitation hospital. Infect Control Hosp Epidemiol. 2016;1-7.
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Ziakas PD, Joyce N, Zacharioudakis IM, Zervou FN, Besdine RW, Mor V, Mylonakis E. Prevalence and impact of Clostridium difficile infection in elderly residents of long-term care facilities, 2011: A nationwide study. Medicine (Baltimore) 2016; 95:e4187. [PMID: 27495022 PMCID: PMC4979776 DOI: 10.1097/md.0000000000004187] [Citation(s) in RCA: 19] [Impact Index Per Article: 2.1] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/24/2016] [Revised: 06/07/2016] [Accepted: 06/16/2016] [Indexed: 12/14/2022] Open
Abstract
The elderly population is particularly vulnerable to Clostridium difficile infection (CDI), but the epidemiology of CDI in long-term care facilities (LTCFs) is unknown.We performed a retrospective cohort study and used US 2011 LTCF resident data from the Minimum Data Set 3.0 linked to Medicare claims. We extracted CDI cases based on International Classification of Diseases-9 coding, and compared residents with the diagnosis of CDI to those who did not have a CDI diagnosis during their LTCF stay. We estimated CDI prevalence rates and calculated 3-month mortality rates.The study population consisted of 2,190,613 admissions (median age 82 years; interquartile range 76-88; female to male ratio 2:1; >80% whites), 45,500 of whom had a CDI diagnosis. The nationwide CDI prevalence rate was 1.85 per 100 LTCF admissions (95% confidence interval [CI] 1.83-1.87). The CDI rate was lower in the South (1.54%; 95% CI 1.51-1.57) and higher in the Northeast (2.29%; 95% CI 2.25-2.33). Older age, white race, presence of a feeding tube, unhealed pressure ulcers, end-stage renal disease, cirrhosis, bowel incontinence, prior tracheostomy, chemotherapy, and chronic obstructive pulmonary disease were independently related to "high risk" for CDI. Residents with a CDI diagnosis were more likely to be admitted to an acute care hospital (40% vs 31%, P < 0.001) and less likely to be discharged to the community (46% vs 54%, P < 0.001) than those not reported with CDI during stay. Importantly, CDI was associated with higher mortality (24.7% vs 18.1%, P = 0.001).CDI is common among the elderly residents of LTCFs and is associated with significant increase in 3-month mortality. The prevalence is higher in the Northeast and risk stratification can be used in CDI prevention policies.
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Affiliation(s)
| | - Nina Joyce
- Center for Gerontology and Healthcare Research, Brown University, Providence, RI
- Department of Health Care Policy, Harvard Medical School, Boston, MA
| | | | - Fainareti N. Zervou
- Infectious Diseases Division, Warren Alpert Medical School, Brown University
| | - Richard W. Besdine
- Center for Gerontology and Healthcare Research, Brown University, Providence, RI
| | - Vincent Mor
- Center for Gerontology and Healthcare Research, Brown University, Providence, RI
- Providence Veterans Administration Medical Center, Center for Innovation (COIN), Providence, RI
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