CClinicalTrials.gg
Status unknownNCT01835028Updated Sep 21, 2021

Multicenter Prospective Study of Low-Flow Low-Gradient Aortic Stenosis (TOPAS Study)

An observational study in Aortic Valve Stenosis, sponsored by Laval University. Status unknown at 11 sites in 6 countries. Open to participants aged 21 Years to 90 Years. Per ClinicalTrials.gov, last updated 2021-09-21.

Sponsored by Laval University · Observational

The sponsor has not verified this record recently (last verified Sep 2021), so the status shown — last known as Recruiting — may be out of date.
Study type
Observational
Model
Cohort
Time perspective
Prospective
Enrollment
320
Ages
21 Years to 90 Years
Sex
All
01

Study summary

Low-flow, low-gradient (LF-LG) aortic stenosis (AS) may occur with depressed (i.e. Classical LF; CLF) or preserved (i.e. Paradoxical LF; PLF) LV ejection fraction (LVEF) and both situations are amongst the most challenging encountered in patients with valvular heart disease. Although, CLF-LG AS is recognized has an important clinical entity, current ACC/AHA-ESC guidelines however do not provide precise recommendations for clinical management of these patients . PLF-LG AS is a new entity recently described by our group, which is characterized by more pronounced LV concentric remodeling with smaller LV cavity size and a restrictive physiology leading to impaired LV filling, altered myocardial function, and a low-flow state. Up to recently, this entity was often misdiagnosed, leading to underestimation of AS severity and inappropriate delays for aortic valve replacement surgery (SAVR). The two main challenges in patients with CLF- or PLF- LG AS are to distinguish between a true-severe (TS) versus a pseudo-severe (PS) stenosis and to accurately quantify the extent of myocardial impairment. Unfortunately, the traditional resting and stress echocardiographic parameters currently used to assess the severity of valvular and myocardial dysfunction in patients with LF-LG AS are far from being optimal, and as a consequence, quantification of disease severity and therapeutic management may not be appropriate in a substantial proportion of these patients.

THE GENERAL OBJECTIVES of the TOPAS study are to develop and validate new parameters and biomarkers to improve the assessment of stenosis severity and myocardial impairment, the risk-stratification, and the clinical decision making in patients with LF-LG AS and to assess the impact of the different therapeutic strategies on patient outcomes.

Read the detailed description

Low-flow, low-gradient (LF-LG) aortic stenosis (AS) may occur with depressed (i.e. Classical LF; CLF) or preserved (i.e. Paradoxical LF; PLF) LV ejection fraction (LVEF) and both situations are amongst the most challenging encountered in patients with valvular heart disease. Although, CLF-LG AS is recognized has an important clinical entity, current ACC/AHA-ESC guidelines however do not provide precise recommendations for clinical management of these patients because there is an important lack of data on this condition. PLF-LG AS is a new entity recently described by our group, which is characterized by more pronounced LV concentric remodeling with smaller LV cavity size and a restrictive physiology leading to impaired LV filling, altered myocardial function, and a low-flow state. Up to recently, this entity was often misdiagnosed, leading to underestimation of AS severity and inappropriate delays for aortic valve replacement surgery (SAVR). The two main challenges in patients with CLF- or PLF- LG AS are to distinguish between a true-severe (TS) versus a pseudo-severe (PS) stenosis and to accurately quantify the extent of myocardial impairment. Unfortunately, the traditional resting and stress echocardiographic parameters currently used to assess the severity of valvular and myocardial dysfunction in patients with LF-LG AS are far from being optimal, and as a consequence, quantification of disease severity and therapeutic management may not be appropriate in a substantial proportion of these patients. Furthermore, it remains uncertain which is the optimal timing and mode of treatment (SAVR vs. Transcatheter Aortic Valve Implantation [TAVI] vs. Medical) for the different subsets of patients with LF-LG AS patients (CLF- vs. PLF- LG AS; TS vs. PS AS; absence vs. presence of myocardial contractile reserve etc.) THE GENERAL OBJECTIVES of the TOPAS study are to develop and validate new parameters and biomarkers to improve the assessment of stenosis severity and myocardial impairment, the risk-stratification, and the clinical decision making in patients with LF-LG AS and to assess the impact of the different therapeutic strategies on patient outcomes.

THE SPECIFIC AIMS of the phase III of the TOPAS study are: (1) To obtain and analyze the parameters of stenosis severity and LV functional impairment measured by stress echocardiography (SE), the degree of valvular calcification measured by multidetector computed tomography (CT), the extent of myocardial fibrosis measured by magnetic resonance imaging (MRI), the blood levels of natriuretic peptides and markers of extracellular matrix (ECM) turn-over, and the occurrence of clinical events in a series of 310 patients with CLF-LG AS (210 in TOPAS- I and II + 100 in TOPAS-III) and in a series of 380 patients with PLF-LG AS (80 in TOPAS II + 300 in TOPAS-III). (2) To measure the weight and calcification of the valves explanted from the patients who will undergo SAVR during follow-up in order to corroborate the actual severity of the stenosis. (3) To assess the usefulness of: i) the projected aortic valve area measured by SE to separate TS from PS AS and predict outcomes in PLF-LG AS; ii) the amount of valvular calcium measured by CT to separate TS from PS AS and predict outcomes in CLF- and PLF- LG AS; iii) the myocardial contractile reserve measured by SE, the extent of myocardial fibrosis measured by MRI, and the plasma levels of BNP and ECM biomarkers to predict operative (SAVR) / procedural (TAVI) risk as well as hemodynamic (LV function), functional (DASI and 6-min walk test distance), and clinical (morbidity-mortality) outcomes in CLF- and PLF- LG AS. (4) To compare the different modes of treatment (SAVR, TAVI, Medical), with respect to hemodynamic, functional, and clinical outcomes.

RELEVANCE OF THE STUDY: There have been very few prospective studies performed until now in patients with LF-LG AS and these studies have included a relatively small number of patients, have often used only one imaging modality (Doppler-echo) and a limited number of biomarkers, and they have generally not included the patients with PLF-LG AS. Our prospective study is the first of its kind, as it will use a complementary multimodality imaging approach and it will measure prospectively conventional parameters of disease severity as well as new emerging parameters and biomarkers developed by our team in large prospective series of patients with CLF- and PLF- LG AS. This study shall contribute to improve the diagnostic evaluation and clinical conduct in patients with LF-LG AS. This new knowledge will lead to the establishment of clinical guidelines for the management of these high-risk patients.

02

Conditions studied

  • Aortic Valve Stenosis

Keywords

  • Aortic Stenosis
  • Low Flow
  • Low Gradient
  • Left Ventricle
  • Echocardiography, Doppler
03

In context

Aortic Valve Stenosis

985 studies on the registry are indexed under Aortic Valve Stenosis; 283 are open to participants now.

This study's planned enrollment of 320 is above the median of 200 across 424 observational studies indexed under Aortic Valve Stenosis.

Browse Aortic Valve Stenosis studies →

Lead sponsor

Laval University is the lead sponsor of 371 studies on the registry; 68 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
21 Years to 90 Years
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Probability sample

Study population

patients with moderate to severe aortic stenosis and Low Fow Low Gradiwnt , with Low and preserved Ejection Fraction wil be selected at primary care clinic

Inclusion criteria

  • LVEF≤ 40%
  • Indexed aortic valve area (AVA) ≤ 0.6 cm²/m²
  • Mean transvalvular gradient \< 40 mmHg

Exclusion criteria

Exclusion criteria:

  • Pregnant or lactating women
  • advanced renal failure
  • tumor with metastasis
05

Study design

Observational model
Cohort
Time perspective
Prospective
Enrollment
320 participants (estimated)
Patient registry
No
Biospecimen retention
Samples without dna

Groups and cohorts

  • Classical Low-Flow, Low-Gradient AS

    Observational study in patients with Classical Low-Flow, Low-Gradient Aortic Stenosis and Low LV Ejection Fraction undergoing surgical aortic valve replacement, transcatheter aortic valve replacement, or conservative management: I- Baseline visit: Medical history, physical / functional evaluation, blood biomarkers, resting echocardiography, stress echocardiography, aortic valve calcium scoring by computed tomography, myocardial fibrosis by magnetic resonance imaging II- Follow-up: clinical outcomes, physical / functional evaluation, echocardiography, blood biomarkers

    Other: Echocardiography · Other: Computed tomography · Other: Magnetic resonance imaging · Other: Blood biomarkers · Other: Stress echocardiography

  • Paradoxical Low-Flow, Low-Gradient AS

    Observational study in patients with Paradoxical Low-Flow, Low-Gradient Aortic Stenosis and Preserved LV Ejection Fraction undergoing surgical aortic valve replacement, transcatheter aortic valve replacement, or conservative management: I- Baseline visit: Medical history, physical / functional evaluation, blood biomarkers, resting echocardiography, stress echocardiography, aortic valve calcium scoring by computed tomography, myocardial fibrosis by magnetic resonance imaging II- Follow-up: clinical outcomes, physical / functional evaluation, echocardiography, blood biomarkers

    Other: Echocardiography · Other: Computed tomography · Other: Magnetic resonance imaging · Other: Blood biomarkers · Other: Stress echocardiography

Interventions

  • OtherEchocardiography

    Observational Study using Imaging and Biomarkers

  • OtherComputed tomography

    Observational Study using Imaging and Biomarkers

  • OtherMagnetic resonance imaging

    Observational Study using Imaging and Biomarkers

  • OtherBlood biomarkers

    Observational Study using Imaging and Biomarkers

  • OtherStress echocardiography

    Observational Study using Imaging and Biomarkers

06

What researchers measure

Primary outcomes

  1. all-cause mortality

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

Secondary outcomes

  1. 30-day mortality (for patients treated by SAVR or TAVR)

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

  2. cardiovascular mortality

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

  3. new major cardiovascular events as defined by VARC: myocardial infarction, stroke, vascular complications, and re-hospitalization for heart failure composite end-point of cardiovascular mortality and hospitalization for heart failure

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

  4. composite end-point of cardiovascular mortality and hospitalization for heart failure

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

Other outcomes

  1. (1) Stenosis severity: We will use the weight and calcification of the valve explanted at the time of SAVR as a flow-independent marker of stenosis severity

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

  2. Hemodynamic (LV function) outcome: The outcome variables will be the changes during follow-up in resting and peak stress values of stroke volume, LVEF, longitudinal strain and plasma levels of BNP; LV flow reserve; LV contractile reserve

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

  3. Functional outcome: Another important objective of treatment is to improve the patient's functional status and quality of life. The outcome variables will be the changes in Duke Activity Score Index and the 6-min walk test distance during follow-up

    Time frame: Patients will be followed for 5 years, with an average of 3.5 years

07

Study locations

5 of 11 sites recruiting
08

References and documents

Publications

  • Blais C, Dumesnil JG, Baillot R, Simard S, Doyle D, Pibarot P. Impact of valve prosthesis-patient mismatch on short-term mortality after aortic valve replacement. Circulation. 2003 Aug 26;108(8):983-8. doi: 10.1161/01.CIR.0000085167.67105.32. Epub 2003 Aug 11. PubMed 12912812 ↗
  • Mohty D, Dumesnil JG, Echahidi N, Mathieu P, Dagenais F, Voisine P, Pibarot P. Impact of prosthesis-patient mismatch on long-term survival after aortic valve replacement: influence of age, obesity, and left ventricular dysfunction. J Am Coll Cardiol. 2009 Jan 6;53(1):39-47. doi: 10.1016/j.jacc.2008.09.022. PubMed 19118723 ↗
  • Hachicha Z, Dumesnil JG, Bogaty P, Pibarot P. Paradoxical low-flow, low-gradient severe aortic stenosis despite preserved ejection fraction is associated with higher afterload and reduced survival. Circulation. 2007 Jun 5;115(22):2856-64. doi: 10.1161/CIRCULATIONAHA.106.668681. Epub 2007 May 28. PubMed 17533183 ↗
  • Hachicha Z, Dumesnil JG, Pibarot P. Usefulness of the valvuloarterial impedance to predict adverse outcome in asymptomatic aortic stenosis. J Am Coll Cardiol. 2009 Sep 8;54(11):1003-11. doi: 10.1016/j.jacc.2009.04.079. PubMed 19729117 ↗
  • Pibarot P, Dumesnil JG. Low-flow, low-gradient aortic stenosis with normal and depressed left ventricular ejection fraction. J Am Coll Cardiol. 2012 Nov 6;60(19):1845-53. doi: 10.1016/j.jacc.2012.06.051. Epub 2012 Oct 10. PubMed 23062546 ↗
  • Dumesnil JG, Pibarot P, Carabello B. Paradoxical low flow and/or low gradient severe aortic stenosis despite preserved left ventricular ejection fraction: implications for diagnosis and treatment. Eur Heart J. 2010 Feb;31(3):281-9. doi: 10.1093/eurheartj/ehp361. Epub 2009 Sep 8. PubMed 19737801 ↗
  • Dumesnil JG, Pibarot P. Evaluation of aortic stenosis severity: new challenges, new solutions. J Am Soc Echocardiogr. 2011 Sep;24(9):992-4. doi: 10.1016/j.echo.2011.07.011. No abstract available. PubMed 21867870 ↗
  • Pibarot P, Dumesnil JG. Assessment of aortic stenosis severity: when the gradient does not fit with the valve area. Heart. 2010 Sep;96(18):1431-3. doi: 10.1136/hrt.2010.195149. No abstract available. PubMed 20813724 ↗
  • Pibarot P, Dumesnil JG. Paradoxical low-flow, low-gradient aortic stenosis adding new pieces to the puzzle. J Am Coll Cardiol. 2011 Jul 19;58(4):413-5. doi: 10.1016/j.jacc.2011.01.057. No abstract available. PubMed 21757119 ↗
  • Pibarot P, Dumesnil JG. Improving assessment of aortic stenosis. J Am Coll Cardiol. 2012 Jul 17;60(3):169-80. doi: 10.1016/j.jacc.2011.11.078. PubMed 22789881 ↗
  • Picano E, Pibarot P, Lancellotti P, Monin JL, Bonow RO. The emerging role of exercise testing and stress echocardiography in valvular heart disease. J Am Coll Cardiol. 2009 Dec 8;54(24):2251-60. doi: 10.1016/j.jacc.2009.07.046. PubMed 19958961 ↗
  • Rodriguez-Gabella T, Nombela-Franco L, Auffret V, Asmarats L, Islas F, Maes F, Ferreira-Neto AN, Paradis JM, Dumont E, Cote M, Jimenez-Quevedo P, Macaya C, Pibarot P, Rodes-Cabau J. Transcatheter Aortic Valve Implantation in Patients With Paradoxical Low-Flow, Low-Gradient Aortic Stenosis. Am J Cardiol. 2018 Aug 15;122(4):625-632. doi: 10.1016/j.amjcard.2018.04.044. Epub 2018 May 17. PubMed 30064863 ↗
  • Annabi MS, Clisson M, Clavel MA, Pibarot P. Workup and Management of Patients With Paradoxical Low-Flow, Low-Gradient Aortic Stenosis. Curr Treat Options Cardiovasc Med. 2018 May 2;20(6):49. doi: 10.1007/s11936-018-0642-y. PubMed 29721704 ↗
  • Ribeiro HB, Lerakis S, Gilard M, Cavalcante JL, Makkar R, Herrmann HC, Windecker S, Enriquez-Sarano M, Cheema AN, Nombela-Franco L, Amat-Santos I, Munoz-Garcia AJ, Garcia Del Blanco B, Zajarias A, Lisko JC, Hayek S, Babaliaros V, Le Ven F, Gleason TG, Chakravarty T, Szeto WY, Clavel MA, de Agustin A, Serra V, Schindler JT, Dahou A, Puri R, Pelletier-Beaumont E, Cote M, Pibarot P, Rodes-Cabau J. Transcatheter Aortic Valve Replacement in Patients With Low-Flow, Low-Gradient Aortic Stenosis: The TOPAS-TAVI Registry. J Am Coll Cardiol. 2018 Mar 27;71(12):1297-1308. doi: 10.1016/j.jacc.2018.01.054. PubMed 29566812 ↗
  • Annabi MS, Touboul E, Dahou A, Burwash IG, Bergler-Klein J, Enriquez-Sarano M, Orwat S, Baumgartner H, Mascherbauer J, Mundigler G, Cavalcante JL, Larose E, Pibarot P, Clavel MA. Dobutamine Stress Echocardiography for Management of Low-Flow, Low-Gradient Aortic Stenosis. J Am Coll Cardiol. 2018 Feb 6;71(5):475-485. doi: 10.1016/j.jacc.2017.11.052. PubMed 29406851 ↗
  • Dahou A, Clavel MA, Dumesnil JG, Capoulade R, Ribeiro HB, O'Connor K, Mathieu P, Beaudoin J, Larose E, Rodes-Cabau J, Pibarot P. Impact of AVR on LV Remodeling and Function in Paradoxical Low-Flow, Low-Gradient Aortic Stenosis With Preserved LVEF. JACC Cardiovasc Imaging. 2017 Jan;10(1):88-89. doi: 10.1016/j.jcmg.2016.07.009. Epub 2016 Nov 9. No abstract available. PubMed 27838305 ↗
  • Dahou A, Toubal O, Clavel MA, Beaudoin J, Magne J, Mathieu P, Philippon F, Dumesnil JG, Puri R, Ribeiro HB, Larose E, Rodes-Cabau J, Pibarot P. Relationship Between QT Interval and Outcome in Low-Flow Low-Gradient Aortic Stenosis With Low Left Ventricular Ejection Fraction. J Am Heart Assoc. 2016 Oct 20;5(10):e003980. doi: 10.1161/JAHA.116.003980. PubMed 27792655 ↗
  • Dahou A, Clavel MA, Capoulade R, Bartko PE, Magne J, Mundigler G, Bergler-Klein J, Burwash I, Mascherbauer J, Ribeiro HB, O'Connor K, Baumgartner H, Senechal M, Dumesnil JG, Rosenhek R, Mathieu P, Larose E, Rodes-Cabau J, Pibarot P. Right ventricular longitudinal strain for risk stratification in low-flow, low-gradient aortic stenosis with low ejection fraction. Heart. 2016 Apr;102(7):548-54. doi: 10.1136/heartjnl-2015-308309. Epub 2016 Jan 13. PubMed 26762240 ↗
  • Dayan V, Vignolo G, Magne J, Clavel MA, Mohty D, Pibarot P. Outcome and Impact of Aortic Valve Replacement in Patients With Preserved LVEF and Low-Gradient Aortic Stenosis. J Am Coll Cardiol. 2015 Dec 15;66(23):2594-2603. doi: 10.1016/j.jacc.2015.09.076. PubMed 26670058 ↗
  • Le Ven F, Thebault C, Dahou A, Ribeiro HB, Capoulade R, Mahjoub H, Urena M, Nombela-Franco L, Allende Carrera R, Clavel MA, Dumont E, Dumesnil J, De Larochelliere R, Rodes-Cabau J, Pibarot P. Evolution and prognostic impact of low flow after transcatheter aortic valve replacement. Heart. 2015 Aug;101(15):1196-203. doi: 10.1136/heartjnl-2014-307067. Epub 2015 May 21. PubMed 25999587 ↗
  • Dahou A, Magne J, Clavel MA, Capoulade R, Bartko PE, Bergler-Klein J, Senechal M, Mundigler G, Burwash I, Ribeiro HB, O'Connor K, Mathieu P, Baumgartner H, Dumesnil JG, Rosenhek R, Larose E, Rodes-Cabau J, Pibarot P. Tricuspid Regurgitation Is Associated With Increased Risk of Mortality in Patients With Low-Flow Low-Gradient Aortic Stenosis and Reduced Ejection Fraction: Results of the Multicenter TOPAS Study (True or Pseudo-Severe Aortic Stenosis). JACC Cardiovasc Interv. 2015 Apr 20;8(4):588-96. doi: 10.1016/j.jcin.2014.08.019. Epub 2015 Mar 26. PubMed 25819185 ↗
  • Dahou A, Bartko PE, Capoulade R, Clavel MA, Mundigler G, Grondin SL, Bergler-Klein J, Burwash I, Dumesnil JG, Senechal M, O'Connor K, Baumgartner H, Pibarot P. Usefulness of global left ventricular longitudinal strain for risk stratification in low ejection fraction, low-gradient aortic stenosis: results from the multicenter True or Pseudo-Severe Aortic Stenosis study. Circ Cardiovasc Imaging. 2015 Mar;8(3):e002117. doi: 10.1161/CIRCIMAGING.114.002117. PubMed 25681417 ↗
  • Clavel MA, Berthelot-Richer M, Le Ven F, Capoulade R, Dahou A, Dumesnil JG, Mathieu P, Pibarot P. Impact of classic and paradoxical low flow on survival after aortic valve replacement for severe aortic stenosis. J Am Coll Cardiol. 2015 Feb 24;65(7):645-53. doi: 10.1016/j.jacc.2014.11.047. PubMed 25677424 ↗
  • Mohty D, Boulogne C, Magne J, Pibarot P, Echahidi N, Cornu E, Dumesnil J, Laskar M, Virot P, Aboyans V. Prevalence and long-term outcome of aortic prosthesis-patient mismatch in patients with paradoxical low-flow severe aortic stenosis. Circulation. 2014 Sep 9;130(11 Suppl 1):S25-31. doi: 10.1161/CIRCULATIONAHA.113.007819. PubMed 25200051 ↗
  • Clavel MA, Cote N, Mathieu P, Dumesnil JG, Audet A, Pepin A, Couture C, Fournier D, Trahan S, Page S, Pibarot P. Paradoxical low-flow, low-gradient aortic stenosis despite preserved left ventricular ejection fraction: new insights from weights of operatively excised aortic valves. Eur Heart J. 2014 Oct 7;35(38):2655-62. doi: 10.1093/eurheartj/ehu152. Epub 2014 Apr 21. PubMed 24755006 ↗
  • Mohty D, Magne J, Deltreuil M, Aboyans V, Echahidi N, Cassat C, Pibarot P, Laskar M, Virot P. Outcome and impact of surgery in paradoxical low-flow, low-gradient severe aortic stenosis and preserved left ventricular ejection fraction: a cardiac catheterization study. Circulation. 2013 Sep 10;128(11 Suppl 1):S235-42. doi: 10.1161/CIRCULATIONAHA.112.000031. PubMed 24030412 ↗
  • Le Ven F, Freeman M, Webb J, Clavel MA, Wheeler M, Dumont E, Thompson C, De Larochelliere R, Moss R, Doyle D, Ribeiro HB, Urena M, Nombela-Franco L, Rodes-Cabau J, Pibarot P. Impact of low flow on the outcome of high-risk patients undergoing transcatheter aortic valve replacement. J Am Coll Cardiol. 2013 Aug 27;62(9):782-8. doi: 10.1016/j.jacc.2013.05.044. Epub 2013 Jun 12. PubMed 23770162 ↗
  • Clavel MA, Ennezat PV, Marechaux S, Dumesnil JG, Capoulade R, Hachicha Z, Mathieu P, Bellouin A, Bergeron S, Meimoun P, Arsenault M, Le Tourneau T, Pasquet A, Couture C, Pibarot P. Stress echocardiography to assess stenosis severity and predict outcome in patients with paradoxical low-flow, low-gradient aortic stenosis and preserved LVEF. JACC Cardiovasc Imaging. 2013 Feb;6(2):175-83. doi: 10.1016/j.jcmg.2012.10.015. PubMed 23489531 ↗
  • Williams TE, O'Day DM, Head WS, Robinson RD. Measurements of antifungal levels in corneal tissue: a simplified bioassay for amphotericin B. Graefes Arch Clin Exp Ophthalmol. 1990;228(6):538-40. doi: 10.1007/BF00918487. PubMed 2265769 ↗
  • Clavel MA, Burwash IG, Mundigler G, Dumesnil JG, Baumgartner H, Bergler-Klein J, Senechal M, Mathieu P, Couture C, Beanlands R, Pibarot P. Validation of conventional and simplified methods to calculate projected valve area at normal flow rate in patients with low flow, low gradient aortic stenosis: the multicenter TOPAS (True or Pseudo Severe Aortic Stenosis) study. J Am Soc Echocardiogr. 2010 Apr;23(4):380-6. doi: 10.1016/j.echo.2010.02.002. PubMed 20362927 ↗
  • Blais C, Burwash IG, Mundigler G, Dumesnil JG, Loho N, Rader F, Baumgartner H, Beanlands RS, Chayer B, Kadem L, Garcia D, Durand LG, Pibarot P. Projected valve area at normal flow rate improves the assessment of stenosis severity in patients with low-flow, low-gradient aortic stenosis: the multicenter TOPAS (Truly or Pseudo-Severe Aortic Stenosis) study. Circulation. 2006 Feb 7;113(5):711-21. doi: 10.1161/CIRCULATIONAHA.105.557678. PubMed 16461844 ↗
  • Clavel MA, Webb JG, Rodes-Cabau J, Masson JB, Dumont E, De Larochelliere R, Doyle D, Bergeron S, Baumgartner H, Burwash IG, Dumesnil JG, Mundigler G, Moss R, Kempny A, Bagur R, Bergler-Klein J, Gurvitch R, Mathieu P, Pibarot P. Comparison between transcatheter and surgical prosthetic valve implantation in patients with severe aortic stenosis and reduced left ventricular ejection fraction. Circulation. 2010 Nov 9;122(19):1928-36. doi: 10.1161/CIRCULATIONAHA.109.929893. Epub 2010 Oct 25. PubMed 20975002 ↗
  • Clavel MA, Fuchs C, Burwash IG, Mundigler G, Dumesnil JG, Baumgartner H, Bergler-Klein J, Beanlands RS, Mathieu P, Magne J, Pibarot P. Predictors of outcomes in low-flow, low-gradient aortic stenosis: results of the multicenter TOPAS Study. Circulation. 2008 Sep 30;118(14 Suppl):S234-42. doi: 10.1161/CIRCULATIONAHA.107.757427. PubMed 18824760 ↗
  • Bergler-Klein J, Mundigler G, Pibarot P, Burwash IG, Dumesnil JG, Blais C, Fuchs C, Mohty D, Beanlands RS, Hachicha Z, Walter-Publig N, Rader F, Baumgartner H. B-type natriuretic peptide in low-flow, low-gradient aortic stenosis: relationship to hemodynamics and clinical outcome: results from the Multicenter Truly or Pseudo-Severe Aortic Stenosis (TOPAS) study. Circulation. 2007 Jun 5;115(22):2848-55. doi: 10.1161/CIRCULATIONAHA.106.654210. Epub 2007 May 21. PubMed 17515464 ↗
  • Burwash IG, Lortie M, Pibarot P, de Kemp RA, Graf S, Mundigler G, Khorsand A, Blais C, Baumgartner H, Dumesnil JG, Hachicha Z, DaSilva J, Beanlands RS. Myocardial blood flow in patients with low-flow, low-gradient aortic stenosis: differences between true and pseudo-severe aortic stenosis. Results from the multicentre TOPAS (Truly or Pseudo-Severe Aortic Stenosis) study. Heart. 2008 Dec;94(12):1627-33. doi: 10.1136/hrt.2007.135475. Epub 2008 Apr 1. PubMed 18381378 ↗
  • Clavel MA, Webb JG, Pibarot P, Altwegg L, Dumont E, Thompson C, De Larochelliere R, Doyle D, Masson JB, Bergeron S, Bertrand OF, Rodes-Cabau J. Comparison of the hemodynamic performance of percutaneous and surgical bioprostheses for the treatment of severe aortic stenosis. J Am Coll Cardiol. 2009 May 19;53(20):1883-91. doi: 10.1016/j.jacc.2009.01.060. PubMed 19442889 ↗
  • Clavel MA, Rodes-Cabau J, Dumont E, Bagur R, Bergeron S, De Larochelliere R, Doyle D, Larose E, Dumesnil JG, Pibarot P. Validation and characterization of transcatheter aortic valve effective orifice area measured by Doppler echocardiography. JACC Cardiovasc Imaging. 2011 Oct;4(10):1053-62. doi: 10.1016/j.jcmg.2011.06.021. PubMed 21999863 ↗
  • Clavel MA, Dumesnil JG, Capoulade R, Mathieu P, Senechal M, Pibarot P. Outcome of patients with aortic stenosis, small valve area, and low-flow, low-gradient despite preserved left ventricular ejection fraction. J Am Coll Cardiol. 2012 Oct 2;60(14):1259-67. doi: 10.1016/j.jacc.2011.12.054. Epub 2012 May 30. PubMed 22657269 ↗
  • Annabi MS, Cote N, Dahou A, Bartko PE, Bergler-Klein J, Burwash IG, Orwat S, Baumgartner H, Mascherbauer J, Mundigler G, Fukui M, Cavalcante J, Ribeiro HB, Rodes-Cabau J, Clavel MA, Pibarot P. Comparison of Early Surgical or Transcatheter Aortic Valve Replacement Versus Conservative Management in Low-Flow, Low-Gradient Aortic Stenosis Using Inverse Probability of Treatment Weighting: Results From the TOPAS Prospective Observational Cohort Study. J Am Heart Assoc. 2020 Dec 15;9(24):e017870. doi: 10.1161/JAHA.120.017870. Epub 2020 Dec 8. PubMed 33289422 ↗
  • Dahou A, Clavel MA, Capoulade R, O'Connor K, Ribeiro HB, Cote N, Le Ven F, Rodes-Cabau J, Dumesnil JG, Mathieu P, Pibarot P. B-Type Natriuretic Peptide and High-Sensitivity Cardiac Troponin for Risk Stratification in Low-Flow, Low-Gradient Aortic Stenosis: A Substudy of the TOPAS Study. JACC Cardiovasc Imaging. 2018 Jul;11(7):939-947. doi: 10.1016/j.jcmg.2017.06.018. Epub 2017 Oct 5. PubMed 28917673 ↗
09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Sep 21, 2021, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT01835028
Lead sponsor
Laval University
Collaborators
University Hospital, Brest
Responsible party
Philippe Pibarot (Doctor, Laval University) — Principal investigator
First posted
Apr 18, 2013
Start date
Jun 2002
Primary completion
Jan 2024 (estimated)
Completion
Jan 2024 (estimated)
Last update
Sep 21, 2021

Study contacts

Philippe Pibarot, DVM, PHD
Contact
Philippe.Pibarot@med.ulaval.ca
418-656-8711 ext. 5938
Abdellaziz Dahou, MD
Contact
abdellaziz.dahou@criucpq.ulaval.ca
418-656-8711 ext. 3239

Oversight

Data monitoring committee
No
View the source record on ClinicalTrials.gov ↗

Not currently enrolling

This study is status unknown, as verified in Sep 2021. You cannot join it, but the record below documents what was studied.

Follow this study

Get an email when the registry record changes — status, dates, results — or when someone posts here.

Sign in to follow

Discussion

Questions and observations about this study, from anyone following it. Not medical advice, and not a channel to the study team — their contact details are on the registry record.

Sign in to join the discussion. Reading takes no account; posting does. You choose a display name, and a pseudonym is the default.

Nothing here yet. If you are running this trial, taking part in it, or weighing whether to, this is the place to say so.

Start the discussion