IntroductionThe aim of this study was to assess the effects of preoperative pulmonary rehabilitation (PPR) on preoperative clinical status changes in patients with chronic obstructive pulmonary disease (COPD) and non-small cell lung cancer (NSCLC), and net effects of PPR and cancer resection on residual pulmonary function and functional capacity.Material and methodsThis prospective single group study included 83 COPD patients (62 ±8 years, 85% males, FEV1 = 1844 ±618 ml, Tiffeneau index = 54 ±9%) with NSCLC, on 2–4-week PPR, before resection. Pulmonary function, and functional and symptom status were evaluated by spirometry, 6-minute walking distance (6MWD) and Borg scale, on admission, after PPR and after surgery.ResultsFollowing PPR significant improvement was registered in the majority of spirometry parameters (FEV1 by 374 ml, p < 0.001; VLC by 407 ml, p < 0.001; FEF50 by 3%, p = 0.003), 6MWD (for 56 m, p < 0.001) and dyspnoeal symptoms (by 1.0 Borg unit, p < 0.001). A positive correlation was identified between preoperative increments of FEV1 and 6MWD (r s = 0.503, p = 0.001). Negative correlations were found between basal FEV1 and its percentage increment (r s = –0.479, p = 0.001) and between basal 6MWD and its percentage change (r s = –0.603, p < 0.001) during PPR. Compared to basal values, after resection a significant reduction of most spirometry parameters and 6MWD were recorded, while Tiffeneau index, FEF25 and dyspnoea severity remained stable (p = NS).ConclusionsPreoperative pulmonary rehabilitation significantly enhances clinical status of COPD patients before NSCLC resection. Preoperative increase of exercise tolerance was the result of pulmonary function improvement during PPR. The beneficial effects of PPR were most emphasized in patients with initially the worst pulmonary function and the weakest functional capacity.
Because the pattern of lung function change is different in patients with chronic obstructive pulmonary disease compared with that of patients with normal lung function, surgery can be offered to carefully selected patients with lung cancer, even in the presence of severely limited lung function.
Influence of physiotherapy on the outcome of the lung resection is still controversial. Study aim was to assess the influence of physiotherapy program on postoperative lung function and effort tolerance in lung cancer patients with chronic obstructive pulmonary disease (COPD) that are undergoing lobectomy or pneumonectomy. The prospective study included 56 COPD patients who underwent lung resection for primary non small-cell lung cancer after previous physiotherapy (Group A) and 47 COPD patients (Group B) without physiotherapy before lung cancer surgery. In Group A, lung function and effort tolerance on admission were compared with the same parameters after preoperative physiotherapy. Both groups were compared in relation to lung function, effort tolerance and symptoms change after resection. In patients with tumors requiring a lobectomy, after preoperative physiotherapy, a highly significant increase in FEV1, VC, FEF50 and FEF25 of 20%, 17%, 18% and 16% respectively was registered with respect to baseline values. After physiotherapy, a significant improvement in 6-minute walking distance was achieved. After lung resection, the significant loss of FEV1 and VC occurred, together with significant worsening of the small airways function, effort tolerance and symptomatic status. After the surgery, a clear tendency existed towards smaller FEV1 loss in patients with moderate to severe, when compared to patients with mild baseline lung function impairment. A better FEV1 improvement was associated with more significant loss in FEV1. Physiotherapy represents an important part of preoperative and postoperative treatment in COPD patients undergoing a lung resection for primary lung cancer.Key words: pulmonary rehabilitation, preoperative physiotherapy, lung cancer, lobectomy, pneumonectomy During the previous decade, functional assessment of patients that were diagnosed with lung cancer that are undergoing surgery significantly changed. Cut-off values of ventilatory parameters that are used in treatment planning particularly forthe safe resection have been changed, along with improvement of postoperative lung function prediction and operative risk assessment methods [1][2][3]. In addition, as it was convincingly demonstrated that age itself is not a contraindication for surgery, there is increasing evidence of safe surgical treatment in septuagenarians and even in octogenarians [4,5].
Modifiable risk factors, such as cardiometabolic and lifestyle risk factors, considerably contribute to (bi)atrial remodeling, finally resulting in clinical occurrence of atrial fibrillation (AF). Early identification and prompt intervention on these risk factors may delay further progression of atrial arrhythmia substrate and prevent the occurrence of new-onset AF. Moreover, in patients with previous history of recurrent AF, aggressive risk factor management may improve efficacy of other rhythm control strategies, including antiarrhythmic drugs and catheter ablation in sinus rhythm maintenance. Finally, modification of risk factors improves overall health and reduces cardiovascular mortality and morbidity. The first part of this review evaluates the association between AF and the following risk factors: hypertension, diabetes mellitus, physical activity, and cigarette smoking. We systematically discuss the impact of risk factor modification on primary and secondary prevention of AF.
BackgroundThe pattern and factors influencing the lung function recovery in the first postoperative days are still not fully elucidated, especially in patients at increased risk.MethodsProspective study on 60 patients at increased risk, who underwent a lung resection for primary lung cancer. Inclusion criteria: complete resection and one or more known risk factors in form of COPD, cardiovascular disorders, advanced age or other comorbidities. Previous myocardial infarction, myocardial revascularization or stenting, cardiac rhythm disorders, arterial hypertension and myocardiopathy determined the increased cardiac risk. The severity of COPD was graded according to GOLD criteria. The trend of the postoperative lung function recovery was assessed by performing spirometry with a portable spirometer.ResultsCardiac comorbidity existed in 55%, mild and moderate COPD in 20% and 35% of patients respectively. Measured values of FVC% and FEV1% on postoperative days one, three and seven, showed continuous improvement, with significant difference between the days of measurement, especially between days three and seven. There was no difference in the trend of the lung function recovery between patients with and without postoperative complications. Whilst pO2 was decreasing during the first three days in a roughly parallel fashion in patients with respiratory, surgical complications and in patients without complications, a slight hypercapnia registered on the first postoperative day was gradually abolished in all groups except in patients with cardiac complications.ConclusionExtent of the lung resection and postoperative complications do not significantly influence the trend of the lung function recovery after lung resection for lung cancer.
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