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      The effect of pain-education nursing based on a mind map on postoperative pain score and quality of life in patients with colorectal cancer

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          Abstract

          Mind mapping is a combination of images and logical thinking in the form of pictures and texts. It presents a natural expression process that conforms to the divergent thinking of the brain, helping patients understand memory. This study aimed to investigate the impact of pain-education nursing with the aid of mind maps on postoperative pain scores and quality of life in patients with colorectal cancer. The medical records of 100 colorectal cancer patients treated from July 2020 to July 2022 were selected as retrospective research participants and divided into control and observation groups. The control group received routine pain care, and the observation group was given pain-education nursing based on a mind map. The effects on quality of life, pain, negative emotions, and comfort after nursing were compared between the 2 groups. There was no significant difference in quality of-life scores between the 2 groups before the nursing intervention ( P > .05). After nursing, the physical, emotional, cognitive, and social functions of patients in the observation group were significantly higher than those in the control group. However, the overall quality of life and financial difficulties of patients in the observation group were significantly lower than those in the control group ( P < .05). The observation group’s social, physical, and psychological comfort scores were significantly higher than those in the control group after nursing intervention ( P < .05). After nursing, the observation group’s visual analog scale scores at different times after the operation were significantly lower than those of the control group. The scores on the self-rating anxiety scale and self-rating depression scale in the observation group were significantly lower than those in the control group ( P < .05). Pain-education nursing based on mind maps can effectively improve the daily living ability, pain symptoms, and quality of life of patients after colorectal cancer, and there is a reference value for post-nursing care of patients after colorectal cancer.

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          School-based physical activity programs for promoting physical activity and fitness in children and adolescents aged 6 to 18.

          The World Health Organization (WHO) estimates that 1.9 million deaths worldwide are attributable to physical inactivity and at least 2.6 million deaths are a result of being overweight or obese. In addition, WHO estimates that physical inactivity causes 10% to 16% of cases each of breast cancer, colon, and rectal cancers as well as type 2 diabetes, and 22% of coronary heart disease and the burden of these and other chronic diseases has rapidly increased in recent decades. The purpose of this systematic review was to summarize the evidence of the effectiveness of school-based interventions in promoting physical activity and fitness in children and adolescents. The search strategy included searching several databases to October 2011. In addition, reference lists of included articles and background papers were reviewed for potentially relevant studies, as well as references from relevant Cochrane reviews. Primary authors of included studies were contacted as needed for additional information. To be included, the intervention had to be relevant to public health practice (focused on health promotion activities), not conducted by physicians, implemented, facilitated, or promoted by staff in local public health units, implemented in a school setting and aimed at increasing physical activity, included all school-attending children, and be implemented for a minimum of 12 weeks. In addition, the review was limited to randomized controlled trials and those that reported on outcomes for children and adolescents (aged 6 to 18 years). Primary outcomes included: rates of moderate to vigorous physical activity during the school day, time engaged in moderate to vigorous physical activity during the school day, and time spent watching television. Secondary outcomes related to physical health status measures including: systolic and diastolic blood pressure, blood cholesterol, body mass index (BMI), maximal oxygen uptake (VO2max), and pulse rate. Standardized tools were used by two independent reviewers to assess each study for relevance and for data extraction. In addition, each study was assessed for risk of bias as specified in the Cochrane Handbook for Systematic Reviews of Interventions. Where discrepancies existed, discussion occurred until consensus was reached. The results were summarized narratively due to wide variations in the populations, interventions evaluated, and outcomes measured. In the original review, 13,841 records were identified and screened, 302 studies were assessed for eligibility, and 26 studies were included in the review. There was some evidence that school-based physical activity interventions had a positive impact on four of the nine outcome measures. Specifically positive effects were observed for duration of physical activity, television viewing, VO2 max, and blood cholesterol. Generally, school-based interventions had little effect on physical activity rates, systolic and diastolic blood pressure, BMI, and pulse rate. At a minimum, a combination of printed educational materials and changes to the school curriculum that promote physical activity resulted in positive effects.In this update, given the addition of three new inclusion criteria (randomized design, all school-attending children invited to participate, minimum 12-week intervention) 12 of the original 26 studies were excluded. In addition, studies published between July 2007 and October 2011 evaluating the effectiveness of school-based physical interventions were identified and if relevant included. In total an additional 2378 titles were screened of which 285 unique studies were deemed potentially relevant. Of those 30 met all relevance criteria and have been included in this update. This update includes 44 studies and represents complete data for 36,593 study participants. Duration of interventions ranged from 12 weeks to six years.Generally, the majority of studies included in this update, despite being randomized controlled trials, are, at a minimum, at moderate risk of bias. The results therefore must be interpreted with caution. Few changes in outcomes were observed in this update with the exception of blood cholesterol and physical activity rates. For example blood cholesterol was no longer positively impacted upon by school-based physical activity interventions. However, there was some evidence to suggest that school-based physical activity interventions led to an improvement in the proportion of children who engaged in moderate to vigorous physical activity during school hours (odds ratio (OR) 2.74, 95% confidence interval (CI), 2.01 to 3.75). Improvements in physical activity rates were not observed in the original review. Children and adolescents exposed to the intervention also spent more time engaged in moderate to vigorous physical activity (with results across studies ranging from five to 45 min more), spent less time watching television (results range from five to 60 min less per day), and had improved VO2max (results across studies ranged from 1.6 to 3.7 mL/kg per min). However, the overall conclusions of this update do not differ significantly from those reported in the original review. The evidence suggests the ongoing implementation of school-based physical activity interventions at this time, given the positive effects on behavior and one physical health status measure. However, given these studies are at a minimum of moderate risk of bias, and the magnitude of effect is generally small, these results should be interpreted cautiously. Additional research on the long-term impact of these interventions is needed.
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            Japanese guidelines for the management of acute pancreatitis: Japanese Guidelines 2015.

            Japanese (JPN) guidelines for the management of acute pancreatitis were published in 2006. The severity assessment criteria for acute pancreatitis were later revised by the Japanese Ministry of Health, Labour and Welfare (MHLW) in 2008, leading to their publication as the JPN Guidelines 2010. Following the 2012 revision of the Atlanta Classifications of Acute Pancreatitis, in which the classifications of regional complications of pancreatitis were revised, the development of a minimally invasive method for local complications of pancreatitis spread, and emerging evidence was gathered and revised into the JPN Guidelines.
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              Tokyo Guidelines 2018: antimicrobial therapy for acute cholangitis and cholecystitis.

              Antimicrobial therapy is a mainstay of the management for patients with acute cholangitis and/or cholecystitis. The Tokyo Guidelines 2018 (TG18) provides recommendations for the appropriate use of antimicrobials for community-acquired and healthcare-associated infections. The listed agents are for empirical therapy provided before the infecting isolates are identified. Antimicrobial agents are listed by class-definitions and TG18 severity grade I, II, and III subcategorized by clinical settings. In the era of emerging and increasing antimicrobial resistance, monitoring and updating local antibiograms is underscored. Prudent antimicrobial usage and early de-escalation or termination of antimicrobial therapy are now important parts of decision-making. What is new in TG18 is that the duration of antimicrobial therapy for both acute cholangitis and cholecystitis is systematically reviewed. Prophylactic antimicrobial usage for elective endoscopic retrograde cholangiopancreatography is no longer recommended and the section was deleted in TG18. Free full articles and mobile app of TG18 are available at: http://www.jshbps.jp/modules/en/index.php?content_id=47. Related clinical questions and references are also included.
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                Author and article information

                Contributors
                Journal
                Medicine (Baltimore)
                MD
                Medicine
                Lippincott Williams & Wilkins (Hagerstown, MD )
                0025-7974
                1536-5964
                12 May 2023
                12 May 2023
                : 102
                : 19
                : e33562
                Affiliations
                [a ] Pain Department Hand Surgery, Wuhan Fourth Hospital, Wuhan, Hubei, China
                [b ] Department of Surgery, Central Hospital of Enshi Tujia and Miao Autonomous Prefecture, Enshi City, Hubei Province, China
                [c ] Urology Gastrointestinal Surgery, Wuhan Fourth Hospital, Wuhan Fourth Hospital, Wuhan, Hubei, China.
                Author notes
                * Correspondence: Dan Li, Urology Gastrointestinal Surgery, Wuhan Fourth Hospital, Wuhan Fourth Hospital, Wuhan, Hubei, China (e-mail: ahc1ahc@ 123456163.com ).
                Author information
                https://orcid.org/0000-0003-0707-5091
                Article
                00057
                10.1097/MD.0000000000033562
                10174362
                37171350
                19c5ef93-c2ad-4e03-a254-9e6dc272a016
                Copyright © 2023 the Author(s). Published by Wolters Kluwer Health, Inc.

                This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial License 4.0 (CCBY-NC), where it is permissible to download, share, remix, transform, and buildup the work provided it is properly cited. The work cannot be used commercially without permission from the journal.

                History
                : 17 November 2022
                : 14 March 2023
                : 29 March 2023
                Categories
                4500
                Research Article
                Observational Study
                Custom metadata
                TRUE

                colorectal cancer,mind mapping,pain care,pain-education nursing

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