233
Views
9
CrossRef citations to date
0
Altmetric
Original Research

Ultrasound Evaluation of the Quadriceps Muscle Contractile Index in Patients with Stable Chronic Obstructive Pulmonary Disease: Relationships with Clinical Symptoms, Disease Severity and Diaphragm Contractility

, , ORCID Icon & ORCID Icon
Pages 79-88 | Published online: 09 Jan 2020

References

  • SinghD, AgustiA, AnzuetoA, et al. Global Strategy for the Diagnosis, Management, and Prevention of Chronic Obstructive Lung Disease: the GOLD science committee report 2019. Eur Respir J. 2019;53(5):1900164. doi:10.1183/13993003.00164-201930846476
  • BarrRG, CelliBR, ManninoDM, et al. Comorbidities, patient knowledge, and disease management in a national sample of patients with COPD. Am J Med. 2009;122(4):348–355. doi:10.1016/j.amjmed.2008.09.04219332230
  • DivoM, CoteC, de TorresJP, et al. Comorbidities and risk of mortality in patients with chronic obstructive pulmonary disease. Am J Respir Crit Care Med. 2012;186(2):155–161. doi:10.1164/rccm.201201-0034OC22561964
  • PatelAR, HurstJR. Extrapulmonary comorbidities in chronic obstructive pulmonary disease: state of the art. Expert Rev Respir Med. 2011;5(5):647–662. doi:10.1586/ers.11.6221955235
  • DecramerM, GosselinkR, TroostersT, VerschuerenM, EversG. Muscle weakness is related to utilization of health care resources in COPD patients. Eur Respir J. 1997;10(2):417–423. doi:10.1183/09031936.97.100204179042643
  • GosselinkR, TroostersT, DecramerM. Peripheral muscle weakness contributes to exercise limitation in COPD. Am J Respir Crit Care Med. 1996;153(3):976–980. doi:10.1164/ajrccm.153.3.86305828630582
  • GosselinkR, TroostersT, DecramerM. Distribution of muscle weakness in patients with stable chronic obstructive pulmonary disease. J Cardiopulm Rehabil. 2000;20(6):353–360. doi:10.1097/00008483-200011000-0000411144041
  • RemelsAH, GoskerHR, LangenRC, ScholsAM. The mechanisms of cachexia underlying muscle dysfunction in COPD. J Appl Physiol (1985). 2013;114(9):1253–1262. doi:10.1152/japplphysiol.00790.201223019314
  • WustRC, DegensH. Factors contributing to muscle wasting and dysfunction in COPD patients. Int J Chron Obstruct Pulmon Dis. 2007;2(3):289–300.18229567
  • YinHL, YinSQ, LinQY, XuY, XuHW, LiuT. Prevalence of comorbidities in chronic obstructive pulmonary disease patients: a meta-analysis. Medicine (Baltimore). 2017;96(19):e6836. doi:10.1097/MD.000000000000683628489768
  • MaltaisF, DecramerM, CasaburiR, et al. An official American Thoracic Society/European Respiratory Society statement: update on limb muscle dysfunction in chronic obstructive pulmonary disease. Am J Respir Crit Care Med. 2014;189(9):e15–62. doi:10.1164/rccm.201402-0373ST24787074
  • MarquisK, DebigareR, LacasseY, et al. Midthigh muscle cross-sectional area is a better predictor of mortality than body mass index in patients with chronic obstructive pulmonary disease. Am J Respir Crit Care Med. 2002;166(6):809–813. doi:10.1164/rccm.210703112231489
  • SeymourJM, SpruitMA, HopkinsonNS, et al. The prevalence of quadriceps weakness in COPD and the relationship with disease severity. Eur Respir J. 2010;36(1):81–88. doi:10.1183/09031936.0010490919897554
  • MatamisD, SoilemeziE, TsagouriasM, et al. Sonographic evaluation of the diaphragm in critically ill patients. Technique and clinical applications. Intensive Care Med. 2013;39(5):801–810. doi:10.1007/s00134-013-2823-123344830
  • DubeBP, DresM, MayauxJ, DemiriS, SimilowskiT, DemouleA. Ultrasound evaluation of diaphragm function in mechanically ventilated patients: comparison to phrenic stimulation and prognostic implications. Thorax. 2017;72:811–818. doi:10.1136/thoraxjnl-2016-20945928360224
  • BariaMR, ShahgholiL, SorensonEJ, et al. B-mode ultrasound assessment of diaphragm structure and function in patients with COPD. Chest. 2014;146(3):680–685. doi:10.1378/chest.13-230624700122
  • MourtzakisM, ParryS, ConnollyB, PuthuchearyZ. Skeletal muscle ultrasound in critical care: a tool in need of translation. Ann Am Thorac Soc. 2017;14(10):1495–1503. doi:10.1513/AnnalsATS.201612-967PS28820608
  • SeymourJM, WardK, SidhuPS, et al. Ultrasound measurement of rectus femoris cross-sectional area and the relationship with quadriceps strength in COPD. Thorax. 2009;64(5):418–423. doi:10.1136/thx.2008.10398619158125
  • Agyapong-BaduS, WarnerM, SamuelD, NariciM, CooperC, StokesM. Anterior thigh composition measured using ultrasound imaging to quantify relative thickness of muscle and non-contractile tissue: a potential biomarker for musculoskeletal health. Physiol Meas. 2014;35(10):2165–2176. doi:10.1088/0967-3334/35/10/216525243984
  • GuerreiroAC, TonelliAC, OrzechowskiR, Dalla CorteRR, MoriguchiEH, de MelloRB. Bedside ultrasound of quadriceps to predict rehospitalization and functional decline in hospitalized elders. Front Med (Lausanne). 2017;4:122. doi:10.3389/fmed.2017.0012228824911
  • MahlerDA, WellsCK. Evaluation of clinical methods for rating dyspnea. Chest. 1988;93(3):580–586. doi:10.1378/chest.93.3.5803342669
  • VogelmeierCF, CrinerGJ, MartinezFJ, et al. Global Strategy for the Diagnosis, Management, and Prevention of Chronic Obstructive Lung Disease 2017 Report. GOLD Executive Summary. Am J Respir Crit Care Med. 2017;195(5):557–582. doi:10.1164/rccm.201701-0218PP28128970
  • MillerMR, BrusascoV, BurgosF, et al. Standardisation of spirometry. Eur Respir J. 2005;296:319–338. doi:10.1183/09031936.05.00034805
  • WangerJ, ClausenJL, CoatesA, et al. Standardisation of the measurement of lung volumes. Eur Respir J. 2005;26:511–522. doi:10.1183/09031936.05.0003500516135736
  • MacintyreN, CrapoRO, ViegiG, et al. Standardisation of the single-breath determination of carbon monoxide uptake in the lung. Eur Respir J. 2005;26(4):720–735. doi:10.1183/09031936.05.0003490516204605
  • CicchettiDV.Guidelines, criteria, and rules of thumb for evaluating normed and standardized assessment instruments in psychology. Psychol Assess. 1994;6:284–290. doi:10.1037/1040-3590.6.4.284
  • MenonMK, HouchenL, HarrisonS, SinghSJ, MorganMD, SteinerMC. Ultrasound assessment of lower limb muscle mass in response to resistance training in COPD. Respir Res. 2012;13:119. doi:10.1186/1465-9921-13-11923273255
  • HammondK, MampillyJ, LaghiFA, et al. Validity and reliability of rectus femoris ultrasound measurements: comparison of curved-array and linear-array transducers. J Rehabil Res Dev. 2014;51(7):1155–1164. doi:10.1682/JRRD.2013.08.018725437305
  • Cruz-MontecinosC, Guajardo-RojasC, MonttE, et al. Sonographic measurement of the quadriceps muscle in patients with chronic obstructive pulmonary disease: functional and clinical implications. J Ultrasound Med. 2016;35(11):2405–2412. doi:10.7863/ultra.15.1103227698182
  • GreeningNJ, Harvey-DunstanTC, ChaplinEJ, et al. Bedside assessment of quadriceps muscle by ultrasound after admission for acute exacerbations of chronic respiratory disease. Am J Respir Crit Care Med. 2015;192(7):810–816. doi:10.1164/rccm.201503-0535OC26068143
  • MandalS, SuhE, ThompsonA, et al. Comparative study of linear and curvilinear ultrasound probes to assess quadriceps rectus femoris muscle mass in healthy subjects and in patients with chronic respiratory disease. BMJ Open Respir Res. 2016;3(1):e000103. doi:10.1136/bmjresp-2015-000103
  • ButterySC, MohanD, FiskM, et al. Longitudinal follow-up of quadriceps strength and function in a COPD cohort after 3 years. Eur Respir J. 2017;50(2):1700707. doi:10.1183/13993003.00707-201728798091
  • SeymourJM, WardK, RaffiqueA, et al. Quadriceps and ankle dorsiflexor strength in chronic obstructive pulmonary disease. Muscle Nerve. 2012;46(4):548–554. doi:10.1002/mus.v46.422987696
  • ShrikrishnaD, PatelM, TannerRJ, et al. Quadriceps wasting and physical inactivity in patients with COPD. Eur Respir J. 2012;40(5):1115–1122. doi:10.1183/09031936.0017011122362854
  • ParryS, BurtinC, DenehyL, PuthuchearyZ, BearD. Ultrasound evaluation of quadriceps muscle dysfunction in respiratory disease. Cardiopulm Phys Ther J. 2019;30(1):15–23. doi:10.1097/CPT.0000000000000102
  • SmithBM, HoffmanEA, BasnerRC, KawutSM, KalhanR, BarrRG. Not all measures of hyperinflation are created equal: lung structure and clinical correlates of gas trapping and hyperexpansion in COPD: the Multi-Ethnic Study of Atherosclerosis (MESA) COPD study. Chest. 2014;145(6):1305–1315. doi:10.1378/chest.13-188424481056
  • DubéB-P, GuerderA, Morelot-PanziniC, LavenezianaP. The clinical relevance of the emphysema-hyperinflated phenotype in COPD. COPD Res Pract. 2016;2(1):1–11.
  • BernardS, BlancPLE, WhittomF, et al. Peripheral muscle weakness in patients with chronic obstructive pulmonary disease. Am J Respir Crit Care Med. 1998;158:629–634. doi:10.1164/ajrccm.158.2.97110239700144
  • JonesSE, MaddocksM, KonSS, et al. Sarcopenia in COPD: prevalence, clinical correlates and response to pulmonary rehabilitation. Thorax. 2015;70(3):213–218. doi:10.1136/thoraxjnl-2014-20644025561517
  • BarreiroE, GeaJ. Respiratory and limb muscle dysfunction in COPD. COPD. 2015;12(4):413–426. doi:10.3109/15412555.2014.97473725438125
  • PoberezhetsV, MostovoyY, DemchukH. Exacerbation of chronic obstructive pulmonary diseases as a risk factor of the skeletal muscle dysfunction. Lung India. 2019;36(3):188–192. doi:10.4103/lungindia.lungindia_185_1831031336
  • SpruitMA, GosselinkR, TroostersT, et al. Muscle force during an acute exacerbation in hospitalised patients with COPD and its relationship with CXCL8 and IGF-I. Thorax. 2003;58(9):752–756. doi:10.1136/thorax.58.9.75212947130
  • ZaidmanCM, WuJS, WilderS, DarrasBT, RutkoveSB. Minimal training is required to reliably perform quantitative ultrasound of muscle. Muscle Nerve. 2014;50(1):124–128. doi:10.1002/mus.v50.124218288