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Exercise-based rehabilitation programmes for pulmonary hypertension

医学 物理疗法 奇纳 梅德林 康复 荟萃分析 置信区间 优势比 不利影响 生活质量(医疗保健) 随机对照试验 心理信息 内科学 心理干预 精神科 政治学 护理部 法学
作者
Norman Morris,F. Kermeen,Anne E Holland
出处
期刊:The Cochrane library [Elsevier]
卷期号:2017 (2) 被引量:48
标识
DOI:10.1002/14651858.cd011285.pub2
摘要

Background Individuals with pulmonary hypertension (PH) have reduced exercise capacity and quality of life. Despite initial concerns that exercise training may worsen symptoms in this group, several studies have reported improvements in functional capacity and well‐being following exercise‐based rehabilitation in PH. Objectives To assess the efficacy and safety of exercise‐based rehabilitation for people with PH. Primary outcomes were exercise capacity, adverse events during the intervention period and health‐related quality of life (HRQoL). Secondary outcomes included cardiopulmonary haemodynamics, functional class, clinical worsening during follow‐up, mortality and changes in B‐type natriuretic peptide. Search methods We searched the Cochrane Airways Specialised Register of Trials up to August 2016, which is based on regular searches of CINAHL, AMED, Embase, PubMed, MEDLINE, PsycINFO and registries of clinical trials. In addition we searched CENTRAL and the PEDro database up to August 2016 and handsearched relevant journals. Selection criteria All randomised controlled trials (RCTs) focusing on exercise‐based rehabilitation programmes for PH. Data collection and analysis Two reviewers extracted data independently. For binary outcomes, we calculated odds ratios and their 95% confidence interval (CI), on an intention‐to‐treat basis. For continuous data, we estimated the mean difference (MD) between groups and its 95% CI. We employed a random‐effects model for analyses. We assessed risk of bias for included studies and created 'Summary of findings' tables using GRADE. Main results We included six RCTs and were able to extract data from five studies. The total number of included participants was 206. The majority of participants were Group I pulmonary artery hypertension (PAH). Study duration ranged from three to 15 weeks. Exercise programmes included both inpatient‐ and outpatient‐based rehabilitation that incorporated both upper and lower limb exercise. The mean six‐minute walk distance following exercise training was 60.12 metres higher than control (30.17 to 90.07 metres, n = 165, 5 RCTs, low‐quality evidence; minimal important difference was 30 metres), the mean peak oxygen uptake was 2.4 ml/kg/minute higher (1.4 to 3.4 ml/kg/min, n = 145, 4 RCTs, low‐quality evidence) and the mean peak power in the intervention groups was 16.4 W higher (10.9 to 22.0 higher, n = 145, 4 RCTs, low‐quality evidence). The mean change in HRQoL for the SF‐36 physical component score was 4.63 points higher (0.80 to 8.47 points, n = 33, 2 RCTs, low‐quality evidence) and for the SF‐36 mental component score was 4.17 points higher (0.01 to 8.34 points; n = 33; 2 RCTs, low‐quality evidence). One study reported a single adverse event, where a participant stopped exercise training due to lightheadedness. Authors' conclusions In people with PH, exercise‐based rehabilitation results in clinically relevant improvements in exercise capacity. Exercise training was not associated with any serious adverse events. Whilst most studies reported improvements in HRQoL, these may not be clinically important. Overall, we assessed the quality of the evidence to be low. The small number of studies and lack of information on participant selection makes it difficult to generalise these results across the spectrum of people with PH.

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