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RESTORE Group

Publications and source records attributed to RESTORE Group.

28 records · Page 2Linked to original sources

Left ventricular reconstruction by endoventricular circular patch plasty repair: a 17-year experience.

The first experience with endoventricular circular patch plasty (EVCPP) was reported in 1984 as a surgical method to rebuild left ventricular (LV) geometry made more spheric after myocardial infarction. The consequence is dilated ischemic cardiomyopathy. In anterior infarction, the free LV wall and septum are scarred and become dyskinetic or akinetic. The fundamental approach excludes the noncontractile (asynergy) and nonresectable regions to restore more normal size and shape. The current experience of our group in 2001, includes 1,011 patients, and confirmation of our results by others, including an international team. The basic components are LV reconstruction, revascularization, and mitral repair (when needed), which form an integrated method of surgical management. Endocardiectomy and cryoablation are used with spontaneous and inducible ventricular arrhythmias. This article reviews these results and summarizes 10 important points concerning the surgical treatment of ischemic dilated cardiomyopathy that may provide guidelines for the future. These data indicate EVCPP, and its variations, form the central theme in surgical treatment of congestive heart failure.

Arteries↗

Optimizing ventricular shape in anterior restoration.

Ishemic dilated cardiomyopathy results from altered muscle mechanics. Ventricular restoration is aimed at altering the volume and shape changes that follow myocardial infarction. Optimal surgical methods to achieve this goal are not well defined, but it has been shown that sphericity is an important determinant of long-term outcome. We present the rationale and techniques for returning the globular remodeled ventricle to a more elliptical shape. Clinical data from our RESTORE registry does not suggest an improvement in early or late mortality with such methods but opens the way for late evaluation of functional and exercise capacity.

Cardiovascular Surgical Procedures↗

Intermediate survival and predictors of death after surgical ventricular restoration.

This study examined the effects of Dor procedure on long-term survival in patients with previous transmural anterior myocardial infarction who were referred to a single experienced center for left ventricular reconstruction by endoventricular patch-plasty repair. Our aim was to evaluate the impact of this procedure on long-term survival and to assess the ability of preoperative, perioperative, and postoperative variables to predict late survival. Major indications for surgery were left ventricular dysfunction, angina, ventricular arrhythmias, or a combination of the three; 20 patients underwent urgent cardiac surgery. The total group was 245 patients, with 8.1% hospital mortality, and 19 patients lost to follow-up [corrected]. The study group comprised 207 patients. Many pre- and postoperative clinical, hemodynamic, and functional variables, as well as operative parameters, were studied by univariate analysis. During a mean follow-up period of 39+/-19 months, 30 end points were observed, including 27 deaths and 3 heart transplants. Event-free survival was 98%+/-1% at 1 year, 95.8%+/-1.4% at 2 years, and 82.1%+/-3.3% at 5 years. Cox regression analysis showed preoperative New York Heart Association functional class, ejection fraction, end systolic volume index, and remote asynergy as independent predictors of mortality. The procedure has a favorable impact on 5-year survival. Independent predictors of late survival are the preoperative functional status and the left ventricular systolic function.

Cardiovascular Surgical Procedures↗

The role of left ventricular reconstruction for cardiogenic shock.

Left ventricular remodeling after myocardial infarction is recognized as an early adaptive mechanism that later results in adverse physiologic changes. Surgical therapy for this condition includes exclusion of nonfunctional segments of ventricular wall and restoration of more normal ventricular geometry. The Dor procedure, or endoventricular patch plasty, is recognized as an excellent means of accomplishing this goal. Most series in regard to the Dor procedure report results in patients who electively come to surgery after developing global ventricular distension after an area of akinesia or dyskinesia. We report a small series of 6 patients who presented with acute myocardial infarction and who developed cardiogenic shock after ventricular dilation. Each patient underwent emergent revascularization and left ventricular reconstruction using the Dor technique. A seventh patient with akenesia, but without preoperative shock, required the Dor procedure to wean from cardiopulmonary bypass. There were no in-hospital deaths, and follow-up showed good outcomes. In certain select acute subsets (large anterior myocardial infarction, cardiogenic shock, and ventricular dilation), immediate revascularization and restoration of left ventricular size improves outcomes by changing left ventricular shape and thereby pre-empting remodeling and restoring blood flow to ischemic myocardium.

Aged↗

Left ventriculoplasty for nonischemic dilated cardiomyopathy.

Surgical treatment of nonischemic dilated cardiomyopathy is a new field in cardiac surgery. Although current pharmacologic therapy has shown improved survival rates, many patients still need heart transplantation. To reduce the shortage of donors, there is a demanding need for effective nontransplant cardiac surgery. In the past 5 years, partial left ventriculectomy (PLV) has emerged with initial enthusiasm, but is not used because of high surgical mortality and late return of heart failure. There are several examples of improved clinical status and ventricular function with the procedure. By refining patient selection and surgical modification, ventriculoplasty will become a realistic option in the treatment of heart failure caused by nonischemic cardiomyopathy.

Cardiomyopathy, Dilated↗

Inferior wall restoration: anatomic and surgical considerations.

Congestive heart failure that results from inferior infarction is caused by a triangular change in ventricular geometry, which involves the septum, lateral wall, and base supplied by the right coronary artery. The extent of damage is determined by the anatomic distribution of coronary blood flow. Mitral insufficiency is accentuated from damage to the basal region, especially when the occluded right coronary vessel has multiple inferior branches and wraps around the apex. Three methods of repair are described, and include direct restoration without a patch, patch repair of the triangular scar, or use of a retriangulation suture in ventricles with trabecular scar to imbricate the noncontractile region to restrict patch size. This triangular reduction in size mirrors the design concept for suture described by Fontan in anterior infarction, which produces an oval apex. Early results in relation to left ventricular end systolic volume index and ejection fraction are defined.

Cardiovascular Surgical Procedures↗

Left ventricular remodeling and functional mitral regurgitation: mechanisms and therapy.

Myocardial damage that results in dysfunction and remodeling changes left ventricular shape and size. Mitral competence requires the functional integrity of all components of the mitral apparatus. Progressive remodeling ultimately leads to geometric distortion of multiple elements of the mitral apparatus, resulting in functional mitral regurgitation (MR). In this article, we examine the mechanisms of functional MR in the remodeled ventricle. Surgical treatment should aim to correct all abnormalities of the mitral apparatus. These include (1) revascularization of viable myocardium, (2) reduction of ventricular volume and restoration of shape, (3) realignment of papillary muscles, and (4) reduction of annular orifice size.

Humans↗

Surgical ventricular reconstruction and mitral regurgitation: what have we learned from 10 years of experience?

Ischemic mitral regurgitation is functional, and caused predominantly by ventricular dilatation, with secondary functional changes related to annular dilatation, tethering of leaflets from distension, and intraventricular widening between papillary muscles, in the absence of chordal rupture. The treatment includes dealing with the mitral-ventricular interaction by combining surgical ventricular restoration and coronary bypass grafts (CABGs) to alter fiber orientation and muscle nourishment, with annuloplasty, decreasing left ventricle (LV) cavitary volume to reduce abnormal lengthening for tethering, and narrowing the distance between papillary muscles to restore a more normal transverse diameter. These interventions are performed during surgical ventricular restoration (SVR), and the annuloplasty is performed within the ventricle. The cavitary size after SVR must not be restrictive, and methods of patch angulation to restore an elliptic chamber, and interventions to avoid too small a LV cavity are discussed as we summarize 10 years of experience with SVR in 924 patients, and analyze interventions for mitral insufficiency in a recent 3-year subset of 363 patients. The integrated response to the vessel, ventricle, and valve are the central themes of management.

Aged↗

Surgical ventricular restoration in patients with postinfarction coronary artery disease: effectiveness on spontaneous and inducible ventricular tachycardia.

Surgical ventricular reconstruction (SVR) involves resection of scar, septal exclusion, cavity reduction by endoventricular patch, and complete coronary grafting. At the Cardiothoracic Centre of Monaco, ventricular stimulation (PVS) is performed before SVR, unless contraindicated. In patients with spontaneous and/or inducible ventricular arrhythmias, nonguided endocardiectomy and cryosurgery are added. We report clinical and hemodynamic results after SVR in postinfarction patients, to compare management of patients with spontaneous and/or inducible ventricular tachycardia, with those without arrhythmias. The 3 subsets were: Group A, 87 patients with clinical documented ventricular arrhythmias and inducible or not inducible ventricular tachycardia (Spontaneous); Group B, 105 patients without clinical ventricular arrhythmias but with inducible ventricular tachycardia at PVS (Inducible); and Group C, 190 patients without spontaneous arrhythmias and not inducible ventricular tachycardia at PVS (No arrhythmias). Overall surgical mortality rate was 7.6% (29 of 382). Sudden death mortality was only 18.7% of all deaths. Surgical management caused marked reduction of inducible ventricular tachycardia, from 144 of 352 inducible ventricular tachycardia before surgery (41%), to 26 of 307 (8%) at early study, and 14 of 177 (8%) one year later. Cardiac mortality was low at 5 years, and not different among groups; this indicates that the surgical procedure limits the ventricular arrhythmias that normally impair prognosis in postinfarction dilated cardiomyopathy. We believe the favorable electrical success rate and low mortality are not linked to one aspect of the surgical procedure, but to an integrated approach that relieves ischemia (coronary bypass graft), and reduces left ventricular volumes (SVR) to improve pump function, and nonguided endocardiectomy plus cryoablation, to interrupt functional reentry circuits.

Cardiovascular Surgical Procedures↗

Surgical anterior ventricular endocardial restoration (SAVER) for dilated ischemic cardiomyopathy.

Anterior infarction changes ventricular shape and volume. Akinesia is most commonly observed after early reperfusion. Dyskinesia develops in the absence of reperfusion. Both produce heart failure by dysfunction of the remote muscle. Traditional surgery deals with dyskinesia. This study evaluates surgical anterior ventricular endocardial restoration (SAVER), an operation that excludes the apical and septal scar in both akinesia and dyskinesia. A new international group of cardiologists and surgeons from 13 centers, the RESTORE Group) investigated SAVER in ischemic cardiomyopathy following anterior infarction. From January 1998 to July 2000, 662 patients underwent surgery. Early and 3-year outcomes were investigated. Concomitant procedures included coronary artery bypass grafting (CABG) in 92%, mitral repair in 22%, and mitral replacement in 3%. Hospital mortality was 7.7%. Mortality among 606 patients with SAVER and CABG alone was 4.9%. It was 8.1% among 147 patients who underwent concomitant mitral valve repair. Few patients required IABPs (8.4%), LVADs (0.4%), or ECMO (0.6%). Postoperatively, ejection fraction increased from 29.7% +/- 11.3% to 40.0% +/- 12.3% and left ventricular end systolic volume decreased from 96 +/- 63 to 62 +/- 39 mL/m(2) (P <. 05). At 3 years, the survival rate was 89.4% +/- 1.3%. Survival was lower among those with preoperative volume >80 mL/m(2) compared with volume < or = 80 mL/m(2) (83.5% +/- 3.3% v 94.5% +/- 2.0%). Freedom from readmission to hospital for heart failure was at 88.7% at 3 years and was not related to preoperative volume. SAVER is a safe and effective procedure for treating the remodeled dilated anterior ventricle following anterior myocardial infarction.

Adult↗