scholarly journals TABACO ZERO – INTERVENÇÃO COMUNITÁRIA DOS ALUNOS DE EDUCAÇÃO PARA A SAÚDE DA UNIVERSIDADE DE ÉVORA

Author(s):  
Jorge Bonito

Abstract:ZERO TOBACCO – COMMUNITY INTERVENTION STUDENTS’ HEALTH EDUCATION AT THE UNIVERSITY OF ÉVORASmoking is said by the World Health Organization as the leading cause of preventable disease and death. A comprehensive strategy to tackle this scourge includes treatment, control, prevention, awareness and information. In the area of prevention, counseling 3 min may have a success rate in smoking cessation than 2%, while a 10-minute brief advice could reach 3%. Given these principles, nursing students of Health Education in Evora University held semiannually brief counseling on smoking prevention in the city of Évora. This paper gives an account of the organizational structure of the community intervention and the alarming results of prevalence of intakes that met in the last three years.Keywords: Prevention, smoking, health education.Resumo:O tabagismo é apontado, pela Organização Mundial de Saúde, como a principal causa de doença e de morte evitável. Uma estratégia global para enfrentar este flagelo inclui tratamento, controlo, prevenção, acompanhada de sensibilização e informação. No domínio da prevenção, um aconselhamento de 3 min poderá ter uma taxa de sucesso na cessação tabágica de 2%, enquanto um aconselhamento breve de 10 minutos poderá chegar aos 3%. Atendendo a estes princípios, os alunos de enfermagem da unidade curricular de Educação para a Saúde da Universidade de Évora realizam semestralmente aconselhamentos breves em prevenção tabágica na cidade de Évora. Este trabalho dá conta da estrutura organizativa da intervenção comunitária e dos resultados alarmantes de prevalências de consumos que reunimos nos últimos três anos.Palavras-chave: Prevenção, tabagismo, educação para a saúde.

JAMIA Open ◽  
2020 ◽  
Author(s):  
Srikar Chamala ◽  
Sherri Flax ◽  
Petr Starostik ◽  
Kartikeya Cherabuddi ◽  
Nicole M Iovine ◽  
...  

Abstract Coronavirus disease 2019, first reported in China in late 2019, has quickly spread across the world. The outbreak was declared a pandemic by the World Health Organization on March 11, 2020. Here, we describe our initial efforts at the University of Florida Health for processing of large numbers of tests, streamlining data collection, and reporting data for optimizing testing capabilities and superior clinical management. Specifically, we discuss clinical and pathology informatics workflows and informatics instruments which we designed to meet the unique challenges of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) testing. We hope these results benefit institutions preparing to implement SARS-CoV-2 testing.


Author(s):  
Irene Calvente ◽  
María Isabel Núñez ◽  
Rachid Chahboun Karimi ◽  
Juan Villalba-Moreno

The objective of this pilot study was to gather and analyze data on radon concentrations in workplaces in three buildings of Granada University (Southern Spain) constructed in different centuries. All measurements were made at basement or ground floor level under normal use conditions except for one space (mineral store), in which measurements were compared between the door closed and open. Measurements were conducted during different time periods between October 2013 and March 2019 with a Radon-Scout PLUS portable Radonmonitor. The duration of continuous recordings at different sites ranged between 42 and 1104 h. Mean accumulated radon concentrations ranged between 12 and 95 Bq/m3, below the maximal level of 300 Bq/m3 set by the World Health Organization (WHO). Relatively high values were recorded in the oldest building (15th century), which was also poorly ventilated. Ventilation appeared to be an important factor in reducing radon levels, especially in areas less exposed to radon, such as Southern Spain.


2020 ◽  
Vol 14 (4) ◽  
pp. 193-197
Author(s):  
Alan Glasper

In light of the emergence in China of COVID-19, the novel corona virus, emeritus professor Alan Glasper, from the University of Southampton discusses the role of the World Health Organization and other public health institutions in responding to potential new global pandemics and deliberates on the role of NHS staff in coping with infectious disease in clinical environments.


Molecules ◽  
2021 ◽  
Vol 26 (18) ◽  
pp. 5543
Author(s):  
Michael Piameu ◽  
Philippe Nwane ◽  
Wilson Toussile ◽  
Konstantinos Mavridis ◽  
Nadja Christina Wipf ◽  
...  

Previous studies have indicated widespread insecticide resistance in malaria vector populations from Cameroon. However, the intensity of this resistance and underlying mechanisms are poorly known. Therefore, we conducted three cross-sectional resistance surveys between April 2018 and October 2019, using the revised World Health Organization protocol, which includes resistance incidences and intensity assessments. Field-collected Anopheles gambiae s.l. populations from Nkolondom, Nkolbisson and Ekié vegetable farms in the city of Yaoundé were tested with deltamethrin, permethrin, alpha-cypermethrin and etofenprox, using 1× insecticide diagnostic concentrations for resistance incidence, then 5× and 10× concentrations for resistance intensity. Subsamples were analyzed for species identification and the detection of resistance-associated molecular markers using TaqMan® qPCR assays. In Nkolbisson, both An. coluzzii (96%) and An. gambiae s.s. (4%) were found together, whereas only An. gambiae s.s. was present in Nkolondom, and only An. coluzzii was present in Ekié. All three populations were resistant to the four insecticides (<75% mortality rates―MR1×), with intensity generally fluctuating over the time between mod-erate (<98%―MR5×; ≥98%―MR10×) and high (76–97%―MR10×). The kdr L995F, L995S, and N1570Y, and the Ace-1 G280S-resistant alleles were found in An. gambiae from Nkolondom, at 73%, 1%, 16% and 13% frequencies, respectively, whereas only the kdr L995F was found in An. gambiae s.s. from Nkolbisson at a 50% frequency. In An. coluzzii from Nkolbisson and Ekié, we detected only the kdr L995F allele at 65% and 60% frequencies, respectively. Furthermore, expression levels of Cyp6m2, Cyp9k1, and Gste2 metabolic genes were highly upregulated (over fivefold) in Nkolondom and Nkolbisson. Pyrethroid and etofenprox-based vector control interventions may be jeopardized in the prospected areas, due to high resistance intensity, with multiple mechanisms in An. gambiae s.s. and An. coluzzii.


2020 ◽  
Vol 134 (16) ◽  
pp. 2137-2160 ◽  
Author(s):  
Daniella S. Battagello ◽  
Guilherme Dragunas ◽  
Marianne O. Klein ◽  
Ana L.P. Ayub ◽  
Fernando J. Velloso ◽  
...  

Abstract The highly infective coronavirus disease 19 (COVID-19) is caused by a novel strain of coronaviruses – the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) – discovered in December 2019 in the city of Wuhan (Hubei Province, China). Remarkably, COVID-19 has rapidly spread across all continents and turned into a public health emergency, which was ultimately declared as a pandemic by the World Health Organization (WHO) in early 2020. SARS-CoV-2 presents similar aspects to other members of the coronavirus family, mainly regarding its genome, protein structure and intracellular mechanisms, that may translate into mild (or even asymptomatic) to severe infectious conditions. Although the mechanistic features underlying the COVID-19 progression have not been fully clarified, current evidence have suggested that SARS-CoV-2 may primarily behave as other β-coronavirus members. To better understand the development and transmission of COVID-19, unveiling the signaling pathways that may be impacted by SARS-CoV-2 infection, at the molecular and cellular levels, is of crucial importance. In this review, we present the main aspects related to the origin, classification, etiology and clinical impact of SARS-CoV-2. Specifically, here we describe the potential mechanisms of cellular interaction and signaling pathways, elicited by functional receptors, in major targeted tissues/organs from the respiratory, gastrointestinal (GI), cardiovascular, renal, and nervous systems. Furthermore, the potential involvement of these signaling pathways in evoking the onset and progression of COVID-19 symptoms in these organ systems are presently discussed. A brief description of future perspectives related to potential COVID-19 treatments is also highlighted.


2018 ◽  
Vol 3 (1) ◽  
pp. 119-152 ◽  
Author(s):  
Maryam Nazzal ◽  
Samer Chinder

In Lebanon, the social connections are undeniable and crucial. However, meeting places remain private such as houses, restaurants, malls, and beach resorts. This is mainly due to the shortage of public spaces in Lebanon resulting from lack of planning, regulations and awareness around the right to the city and the importance of public spaces. In main cities where land prices are so expensive, common practice has prioritized the use of land in real estate development, thus trumping other uses such as public and communal spaces.In the late 1990s, Lebanon saw the emergence of malls, which have arguably acted as alternatives to public spaces. Malls, with their wealth of food courts, restaurants, cinemas, and play areas, have become the new downtown for a portion of the Lebanese population. They are also considered safe, which is another important factor.In 2015, the percentage of green spaces in Lebanon has decreased to less than 13%. While the World Health Organization (WHO) recommends a minimum of 9m2 of green space per capita (UN-HABITAT, 2016), Beirut has only 0.8m2.


2020 ◽  
Vol 1 (2) ◽  
pp. 01-06
Author(s):  
Robert Skopec

Dr. Francis Boyle, who drafted the Biological Weapons Act has given a detailed statement admitting that the 2019 Wuhan Coronavirus is an offensive Biological Warfare Weapon and that the World Health Organization (WHO) already knows about it. Francis Boyle is a professor of international law at the University of Illinois College of Law. He drafted the U.S. domestic implementing legislation for the Biological Weapons Convention, known as the Biological Weapons Anti-Terrorism Act of 1989, that was approved unanimously by both Houses of the U.S. Congress and signed into law by President George H.W. Bush.


2021 ◽  
Vol 39 (1) ◽  
pp. 240
Author(s):  
Erlandson Ferreira SARAIVA ◽  
Leandro SAUER ◽  
Basílio De Bragança PEREIRA ◽  
Carlos Alberto de Bragança PEREIRA

In December of 2019, a new coronavirus was discovered in the city of Wuhan, China. The World Health Organization officially named this coronavirus as COVID-19. Since its discovery, the virus has spread rapidly around the world and is currently one of the main health problems, causing an enormous social and economic burden. Due to this, there is a great interest in mathematical models capable of projecting the evolution of the disease in countries, states and/or cities. This interest is mainly due to the fact that the projections may help the government agents in making decisions in relation to the prevention of the disease. By using this argument, the health department of the city (HDC) of Campo Grande asked the UFMS for the development of a mathematical study to project the evolution of the disease in the city. In this paper, we describe a modeling procedure used to fit a piecewise growth model for the accumulated number of cases recorded in the city. From the fitted model, we estimate the date in which the pandemic peak is reached and project the number of patients who will need treatment in intensive care units. Weekly, was sent to HDC a technical report describing the main results.


2021 ◽  
Vol 30 (2) ◽  
pp. 4-4

Welcome to the second issue of the Australasian Journal of Gifted Education for 2021. I am proud to introduce this issue of the journal, which is a special issue of the work of Professor Emerita C. June Maker and her colleagues on the fidelity of implementation of the Real Engagement in Active Problem Solving (REAPS) model. All four studies that form a part of the special issue were undertaken with Australian participants. The institutions that the authors of the articles represent include the University of Arizona, the University of Georgia, the University of British Columbia, the World Health Organization, and the Vail Unified School District in the United States.


2021 ◽  
Vol 7 (1) ◽  
pp. 24-32
Author(s):  
Semen Kireev ◽  
I. Popov ◽  
A. Ban'kovskiy ◽  
E. Litvinenko ◽  
E. Surova

At the end of 2019, an outbreak of a new coronavirus infection occurred in the People's Re-public of China with an epicenter in the city of Wuhan (Hubei province). On February 11, 2020, the World Health Organization has assigned the official name of the infection caused by the new coronavirus - COVID-19 ("Coronavirus disease2019"). On February 11, 2020, the International Committee on Virus Taxonomy gave the official name to the infectious agent - SARS-CoV-2.Since the end of January 2020, cases of COVID-19 have begun to be registered in many coun-tries of the world, mainly associated with travel to the PRC. At the end of February 2020, the epidemiological situation with COVID-19 in South Korea, Iran and Italy sharply worsened, which subsequently led to a significant increase in the number of cases in other countries of the world associated with travel to these countries, incl. and in Russia. The World Health Organiza-tion announced the COVID-19 pandemic on 11 March 2020, and the pandemic's challenge to the world will remain so as long as people are not immune to it.The Regional Director of the World Health Organization Takeshi Kasai, on the basis of an epidemiological analysis, reports that the spread of coronavirus infection COVID-19 in July-August 2020 occurred mainly among people under 50 years old, and they often did not even know about it, because they had mild or no symptoms. In the future, these people then infect older people who are more difficult to tolerate COVID-19. And we need to redouble our efforts to prevent the spread of the virus in vulnerable communities.


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