Is the 1-Minute Sit-To-Stand Test a Good Tool to Evaluate Exertional Oxygen Desaturation in Chronic Obstructive Pulmonary Disease?
Abstract
:1. Introduction
2. Materials and Methods
2.1. Subjects
2.2. Study Design
2.3. Outcome Measurements
2.3.1. Six-Minute Walking Test (6MWT)
2.3.2. One-Minute Sit-to-Stand Test (1STST)
2.4. Statistical Analysis
3. Results
3.1. Participants
3.2. Comparison of Exercise Capacity and Cardiorespiratory Parameters between the 1STST and the 6MWT
3.3. Comparison of Oxygen Desaturation between the 1STST and 6MWT
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Acknowledgments
Conflicts of Interest
References
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Variable | M/n | SD/% | Minimum | Maximum |
---|---|---|---|---|
Male gender | 26 | 86.7 | -- | -- |
Smoking status Former smoker | smoker | non-smoker | 15|13|2 | 50.0|43.3|6.7 | -- | -- |
Age (years) | 67.57 | 9.10 | 48 | 83 |
Body mass index (BMI) (kg/m2) | 25.17 | 4.98 | 15.05 | 36.05 |
mMRC dyspnea scale | 1.60 | 0.81 | 0 | 3 |
BODE index | 2.70 | 1.75 | 0 | 6 |
Forced vital capacity (FVC) (liters (L)) | 2.51 | 0.76 | 1.42 | 4.56 |
Forced vital capacity (% predicted) | 73.05 | 15.31 | 48.00 | 107.00 |
Forced expiratory volume in 1st second (FEV1) (L) | 1.41 | 0.52 | 0.60 | 2.78 |
Forced expiratory volume in 1st second (% predicted) | 50.83 | 14.49 | 24.70 | 78.00 |
Residual volume (RV) (L) | 4.47 | 1.43 | 2.66 | 9.31 |
Residual volume (% predicted) | 191.87 | 58.32 | 106.00 | 354.00 |
Total lung capacity (TLC) (L) | 7.09 | 1.77 | 4.87 | 12.59 |
Total lung capacity (% predicted) | 116.37 | 19.97 | 78.90 | 172.00 |
Diffusing capacity for carbon monoxide (DLCO) (% predicted) | 45.14 | 20.47 | 15.00 | 100.00 |
Arterial partial pressure of oxygen (PaO2) (mmHg) | 69.80 | 13.80 | 34.00 | 91.00 |
Arterial partial pressure of carbon dioxide (PaCO2) (mmHg) | 44.36 | 7.47 | 33.00 | 64.00 |
6-minute walking distance (6MWD) (meters) | 409.37 | 103.23 | 240.00 | 630.00 |
Percentage of 6MWD (%) Baseline SpO2 6MWT (%) Minimum SpO2 6MWT (%) | 84.23 94.47 86.47 | 20.65 2.60 6.55 | 52.00 88.00 68.00 | 134.00 99.00 96.00 |
Number of repetitions during 1STST (1STSTr) Baseline SpO2 1STST (%) SpO2 minimum 1STST (%) | 18.13 94.67 89.73 | 5.46 2.58 5.01 | 9.00 89.00 77.00 | 34.00 99.00 98.00 |
Variable | Test | Baseline | Maximum Minimum | End | After 3 min | Variance Analysis | ||
---|---|---|---|---|---|---|---|---|
Evolution | Test | Interaction | ||||||
sBP & | 6MWT | 129.93 (13.38) | -- | 160.17 (21.93) | 136.20 (17.72) | p < 0.001 * | p = 0.179 | p = 0.005 * |
STST | 130.17 (17.38) | -- | 154.17 (23.77) | 136.33 (20.16) | ||||
dBP & | 6MWT | 71.87 (9.70) | -- | 79.67 (10.68) | 76.27 (10.64) | p < 0.001 * | p = 0.941 | p = 0.182 |
STST | 74.87 (11.80) | -- | 78.37 (10.68) | 74.83 (10.54) | ||||
HR & | 6MWT | 81.03 (14.24) | 109.80 (14.24) | 104.03 (16.04) | 87.00 (12.66) | p < 0.001 * | p = 0.007 * | p = 0.126 |
STST | 80.87 (13.69) | 105.60 (15.09) | 96.13 (14.36) | 82.60 (12.60) | ||||
SpO2 & | 6MWT | 94.47 (2.60) | 86.47 (6.55) | 90.00 (6.80) | 94.03 (2.91) | p < 0.001 * | p = 0.020 * | p = 0.148 |
STST | 94.67 (2.58) | 89.73 (5.01) | 90.10 (5.42) | 95.03 (2.81) | ||||
Borg Dyspnea # | 6MWT | 1.27 (0.91) | -- | 3.33 (2.06) | -- | p < 0.001 * | p = 0.095 | p = 0.103 |
STST | 1.23 (0.97) | -- | 2.90 (1.77) | -- | ||||
Borg Limbs # | 6MWT | 1.27 (0.87) | -- | 3.23 (1.89) | -- | p < 0.001 * | p = 0.668 | p = 0.238 |
STST | 1.00 (0.83) | -- | 3.30 (1.64) | -- |
Variable | Baseline | Minimum | Maximum | End | After 3 min |
---|---|---|---|---|---|
sBP | 0.780 | - | - | 0.870 | 0.866 |
dBP | 0.739 | - | - | 0.754 | 0.340 |
HR | 0.891 | - | 0.665 | 0.484 | 0.789 |
SpO2 | 0.833 | 0.810 | - | 0.506 | 0.764 |
Borg dyspnea | 0.942 | - | - | 0.750 | - |
Borg limbs | 0.669 | - | - | 0.555 | - |
Variables | ∆SpO2 ≥ 4% (1STST) | Agreement Analysis | |
---|---|---|---|
∆SpO2 ≥ 4% (6MWT) | No | Yes | % total agreement = 73.3% (p = 0.018) Cohen’s kappa = 0.38 |
No | 4 (13.3%) | 0 (0%) | |
Yes | 8 (26.7%) | 18 (60.0%) |
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Fernandes, A.L.; Neves, I.; Luís, G.; Camilo, Z.; Cabrita, B.; Dias, S.; Ferreira, J.; Simão, P. Is the 1-Minute Sit-To-Stand Test a Good Tool to Evaluate Exertional Oxygen Desaturation in Chronic Obstructive Pulmonary Disease? Diagnostics 2021, 11, 159. https://doi.org/10.3390/diagnostics11020159
Fernandes AL, Neves I, Luís G, Camilo Z, Cabrita B, Dias S, Ferreira J, Simão P. Is the 1-Minute Sit-To-Stand Test a Good Tool to Evaluate Exertional Oxygen Desaturation in Chronic Obstructive Pulmonary Disease? Diagnostics. 2021; 11(2):159. https://doi.org/10.3390/diagnostics11020159
Chicago/Turabian StyleFernandes, Ana L., Inês Neves, Graciete Luís, Zita Camilo, Bruno Cabrita, Sara Dias, Jorge Ferreira, and Paula Simão. 2021. "Is the 1-Minute Sit-To-Stand Test a Good Tool to Evaluate Exertional Oxygen Desaturation in Chronic Obstructive Pulmonary Disease?" Diagnostics 11, no. 2: 159. https://doi.org/10.3390/diagnostics11020159
APA StyleFernandes, A. L., Neves, I., Luís, G., Camilo, Z., Cabrita, B., Dias, S., Ferreira, J., & Simão, P. (2021). Is the 1-Minute Sit-To-Stand Test a Good Tool to Evaluate Exertional Oxygen Desaturation in Chronic Obstructive Pulmonary Disease? Diagnostics, 11(2), 159. https://doi.org/10.3390/diagnostics11020159