1.Remote cardiac rehabilitation is a good alternative of outpatient cardiac rehabilitation in the COVID-19 era.
Atsuko NAKAYAMA ; Naoko TAKAYAMA ; Momoko KOBAYASHI ; Kanako HYODO ; Naomi MAESHIMA ; Fujiwara TAKAYUKI ; Hiroyuki MORITA ; Issei KOMURO
Environmental Health and Preventive Medicine 2020;25(1):48-48
BACKGROUND:
In the wake of the coronavirus disease 2019 (COVID-19) pandemic, people need to practice social distancing in order to protect themselves from SARS-CoV-2 infection. In such stressful situations, remote cardiac rehabilitation (CR) might be a viable alternative to the outpatient CR program.
METHODS:
We prospectively investigated patients hospitalized for heart failure (HF) with a left ventricular ejection fraction of < 50%. As for patients who participated in the remote CR program, telephone support was provided by cardiologists and nurses who specialized in HF every 2 weeks after discharge. The emergency readmission rate within 30 days of discharge was compared among the outpatient CR, remote CR, and non-CR groups, and the EQ-5D score was compared between the outpatient CR and remote CR groups.
RESULTS:
The participation rate of HF patients in our remote CR program elevated during the COVID-19 pandemic. As observed in the outpatient CR group (n = 69), the emergency readmission rate within 30 days of discharge was lower in the remote CR group (n = 30) than in the non-CR group (n = 137) (P = 0.02). The EQ-5D score was higher in the remote CR group than in the outpatient CR group (P = 0.03) 30 days after discharge.
CONCLUSIONS
Remote CR is as effective as outpatient CR for improving the short-term prognosis of patients hospitalized for heart failure post-discharge. This suggests that the remote CR program can be provided as a good alternative to the outpatient CR program.
Aged
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Betacoronavirus
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Cardiac Rehabilitation
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methods
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Coronavirus Infections
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epidemiology
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Heart Failure
;
rehabilitation
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Humans
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Japan
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Middle Aged
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Monitoring, Ambulatory
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Pandemics
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Pneumonia, Viral
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epidemiology
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Prospective Studies
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Self Care
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Telemedicine
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methods
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Telephone
2.Multidisciplinary approach to assess the toxicities of arsenic and barium in drinking water.
Masashi KATO ; Nobutaka OHGAMI ; Shoko OHNUMA ; Kazunori HASHIMOTO ; Akira TAZAKI ; Huadong XU ; Lisa KONDO-IDA ; Tian YUAN ; Tomoyuki TSUCHIYAMA ; Tingchao HE ; Fitri KURNIASARI ; Yishuo GU ; Wei CHEN ; Yuqi DENG ; Kanako KOMURO ; Keming TONG ; Ichiro YAJIMA
Environmental Health and Preventive Medicine 2020;25(1):16-16
Well water could be a stable source of drinking water. Recently, the use of well water as drinking water has been encouraged in developing countries. However, many kinds of disorders caused by toxic elements in well drinking water have been reported. It is our urgent task to resolve the global issue of element-originating diseases. In this review article, our multidisciplinary approaches focusing on oncogenic toxicities and disturbances of sensory organs (skin and ear) induced by arsenic and barium are introduced. First, our environmental monitoring in developing countries in Asia showed elevated concentrations of arsenic and barium in well drinking water. Then our experimental studies in mice and our epidemiological studies in humans showed arsenic-mediated increased risks of hyperpigmented skin and hearing loss with partial elucidation of their mechanisms. Our experimental studies using cultured cells with focus on the expression and activity levels of intracellular signal transduction molecules such as c-SRC, c-RET, and oncogenic RET showed risks for malignant transformation and/or progression arose from arsenic and barium. Finally, our original hydrotalcite-like compound was proposed as a novel remediation system to effectively remove arsenic and barium from well drinking water. Hopefully, comprehensive studies consisting of (1) environmental monitoring, (2) health risk assessments, and (3) remediation will be expanded in the field of environmental health to prevent various disorders caused by environmental factors including toxic elements in drinking water.
Animals
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Arsenic
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toxicity
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Barium
;
toxicity
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Drinking Water
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analysis
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Environmental Exposure
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Environmental Health
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Environmental Monitoring
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Humans
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Mice
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Water Pollutants, Chemical
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toxicity
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Water Wells