首页> 外文期刊>Archives of Physical Medicine and Rehabilitation >Estimating maximum work rate during incremental cycle ergometry testing from six-minute walk distance in patients with chronic obstructive pulmonary disease.
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Estimating maximum work rate during incremental cycle ergometry testing from six-minute walk distance in patients with chronic obstructive pulmonary disease.

机译:在慢性阻塞性肺疾病患者中,从步行六分钟的路程开始,在增量循环测功测试期间估算最大工作率。

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OBJECTIVE: To develop a predictive equation to permit estimation of the maximum work rate (Wmax) achieved during an incremental cycle ergometry test from the measurement of 6-minute walk distance (6MWD) and its derivative, 6-minute walk work, which is the product of 6MWD and body weight. DESIGN: Cross-sectional observational study. SETTING: Outpatient physiotherapy and pulmonary physiology clinics in a tertiary hospital. PARTICIPANTS: Patients (N=50; 36 men) with chronic obstructive pulmonary disease (forced expiratory volume in 1 second [FEV(1)]=37%+/-11% of predicted). INTERVENTIONS: Not applicable. MAIN OUTCOME MEASURES: Measurements were obtained of 6MWD and Wmax achieved during a laboratory-based, symptom-limited incremental cycle ergometry test. Linear regression analyses were performed using 6MWD, height, weight, and FEV(1) and using 6-minute walk work, height, and FEV(1) to determine their contribution to Wmax and to develop predictive equations for estimating Wmax. RESULTS: The equations derived to estimate Wmax using 6MWD and 6-minute walk work, respectively, were as follows: Wmax (W)=(0.122 x 6MWD)+(72.683 x height [m])-117.109 (r(2)=.67, standard error of the estimate [SEE]=10.8W) and Wmax (W)=17.393+(1.442 x 6-minute walk work) (r(2)=.60, SEE=11.8W). CONCLUSIONS: Wmax can be estimated from equations based on measurements of 6MWD or 6-minute walk work. The estimate of Wmax derived from either equation may provide a basis on which to prescribe cycle ergometry training work rates that comply with the current guidelines for pulmonary rehabilitation.
机译:目的:建立一个预测方程,以便通过测量6分钟步行距离(6MWD)及其派生的6分钟步行工作来估算增量循环测功过程中达到的最大工作率(Wmax)。 6MWD与体重的乘积。设计:横断面观察研究。地点:三级医院的门诊物理治疗和肺部生理诊所。参与者:慢性阻塞性肺疾病(1秒钟呼气量[FEV(1)] =预期值的37%+ /-11%)的患者(N = 50; 36名男性)。干预措施:不适用。主要观察指标:在基于实验室的症状受限增量循环测功测试中获得了6MWD和Wmax的测量值。使用6MWD,身高,体重和FEV(1)并使用6分钟步行工作,身高和FEV(1)进行线性回归分析,以确定它们对Wmax的贡献并开发用于估计Wmax的预测方程。结果:分别使用6MWD和6分钟步行工作得出的Wmax估算方程如下:Wmax(W)=(0.122 x 6MWD)+(72.683 x身高[m])-117.109(r(2)= .67,估算的标准误差[SEE] = 10.8W),Wmax(W)= 17.393 +(1.442 x 6分钟步行工作)(r(2)=。60,SEE = 11.8W)。结论:Wmax可以从基于6MWD或6分钟步行工作的测量值的方程式估算得出。从任一等式得出的Wmax估计值可提供依据,以规定符合当前肺康复指导原则的自行车测功训练速率。

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