Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Pericardiectomy”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[Pericardiectomy for post-coronary artery bypass grafting constrictive pericarditis; strategy for safe and complete pericardiectomy].

Surgery for constrictive pericarditis after coronary artery bypass grafting (CABG) needs complete pericardiectomy without injury to bypass grafts. We performed pericardiectomy for post-CABG constrictive pericarditis 15 months after the first surgery. Preoperative multislice helical 3-dimensional computed tomography (CT) clearly demonstrated the patent bypass grafts and anatomical relationship between grafts and surrounding organs. Among surgical approaches, we chose bilateral thoracotomy to avoid injury to the bypass grafts and to obtain a good surgical exposure, especially for pericardiectomy of the left side of the heart. Additionally, with the use of intraoperative doppler ultrasound blood flowmetry, we could safely achieve complete pericardiectomy. We conclude that the combined application of 3-dimensional CT, bilateral thoracotomy and doppler ultrasound blood flowmetry was a supreme strategy for the operation of constrictive pericarditis after CABG.

Coronary Artery Bypass↗

Pericardiectomy for constrictive pericarditis: a clinical, echocardiographic, and hemodynamic evaluation of two surgical techniques.

BACKGROUND: This study was designed to compare the outcomes after total versus partial pericardiectomy clinically, echocardiographically, and hemodynamically. METHODS: Three hundred ninety-five patients undergoing pericardiectomy for constrictive pericarditis between January 1985 and December 2004 were studied. Age was 10 months to 71 years (mean, 25.1 +/- 13.4 years). Three hundred thirty-eight patients (85.6%) underwent total pericardiectomy (group I), and 57 patients (14.4%) underwent partial pericardiectomy (group II). RESULTS: Operative and late mortality rates were 7.6% and 4.9%, respectively. Preoperative high right atrial pressure, hyperbilirubinemia, renal dysfunction, atrial fibrillation, pericardial calcification, thoracotomy approach, and partial pericardiectomy were significant risk factors for death. The risk of death was 4.5 times higher (95% confidence interval: 2.05 to 9.75) in patients undergoing partial pericardiectomy. At a mean follow-up of 17.9 +/- 0.3 years (95% confidence interval: 17.3 to 18.6), actuarial survival was 83.8% +/- 0.04% in group I and 73.9% +/- 0.06% in group II (p = 0.004). At their last follow-up, 96.3% survivors of group I and 79.1% survivors of group II were in New York Heart Association class I/II (p < 0.001). CONCLUSIONS: Total pericardiectomy is associated with lower perioperative and late mortality, and confers significant long-term advantage by providing superior hemodynamics that appear to be independent of the etiology of constrictive pericarditis.

Adolescent↗

Left ventricular systolic and diastolic function after pericardiectomy in patients with constrictive pericarditis: Doppler echocardiographic findings and correlation with clinical status.

OBJECTIVES: The study assessed changes in left ventricular systolic and diastolic function after pericardiectomy in patients with constrictive pericarditis and correlated postoperative Doppler echocardiographic findings with clinical status. BACKGROUND: Despite the efficacy of pericardiectomy, some patients with constrictive pericarditis fail to improve postoperatively. Data on serial evaluation of systolic and diastolic function after pericardiectomy and its relation to clinical status are not available. METHODS: From 1985 to 1995, a total of 58 patients with constrictive pericarditis underwent pericardiectomy and had at least one follow-up Doppler echocardiographic study with a respirometer: 23 patients had one examination within 3 months postoperatively, 19 had a study within 3 months and another one more than 3 months postoperatively, and 16 had one study more than 3 months postoperatively. RESULTS: In the early postoperative period, diastolic function was normal in 17 patients (40.5%), restrictive in 17 (40.5%), and constrictive in 8 (19%). Among 19 patients who had serial Doppler echocardiography, in 2 patients with restrictive physiology and 5 with constrictive physiology the results had become normal, and 1 patient who had had constrictive physiology had restrictive findings. In late follow-up, left ventricular end-diastolic diameter increased compared with preoperative measurement (p = 0.0009). Diastolic filling pattern at late follow-up was normal in 20 patients (57%), restrictive in 12 (34%) and constrictive in 3 (9%). There was a significant relationship between diastolic filling patterns and symptomatic status (chi2 = 20.9, p < 0.0001). Patients with persistent abnormal diastolic filling on Doppler echocardiography had had symptoms for a longer time preoperatively than did patients with normal diastolic physiology (p = 0.0471). CONCLUSIONS: Diastolic filling characteristics remain abnormal in a substantial number of patients with constrictive pericarditis after pericardiectomy. These abnormalities may resolve gradually but can persist. Diastolic filling abnormalities after pericardiectomy correlate well with clinical symptoms and tend to occur in patients who have had symptoms longer preoperatively. This finding supports the recommendation that pericardiectomy be performed promptly in symptomatic patients with constrictive pericarditis.

Adolescent↗

Pericardiectomy for pericardial constriction.

Constrictive pericarditis is a pathologic condition that may lead to significant morbidity. Definitive management of constrictive pericarditis requires pericardiectomy. A retrospective review of pericardiectomy for constrictive pericarditis at the Ochsner Clinic was undertaken. Twenty-one patients (17 male, four female) underwent pericardiectomy for constrictive pericarditis between January 1969 and June 1994. Ages ranged from 15 to 66 years (mean 41.5 years). Pedal edema, dyspnea, fatigue, and chest pain were the most common symptoms. Fifteen patients had important comorbidities. Preoperative New York Heart Association (NYHA) class was I (2), II (8), III (6), IV (5). Mean preoperative catheterization data, available in 17 patients (81%), demonstrated elevated intracardiac pressures (right atrial 17.4 mm Hg, right ventricular end-diastolic 22.4 mm Hg, pulmonary artery 26.2 mm Hg, pulmonary capillary wedge 20.2 mm Hg, left ventricular end-diastolic 20.1 mm Hg). A total pericardiectomy was performed in nine patients (sternotomy 8, thoracotomy 1). Pericardiectomy limited anteriorly to the phrenic nerves was performed in 11 patients (sternotomy 9, thoracotomy 2). One partial pericardiectomy was performed through a sternotomy. Cardiopulmonary bypass was used in six patients (29%). Mean hospital stay was 12 days (preoperative 4.2, postoperative 7.67). All patients achieved NYHA Class I postoperatively. Sixteen patients were discharged in sinus rhythm. No early mortality (<30 days), or major postoperative complications were observed. Pericardiectomy for pericardial constriction can be performed safely low morbidity and mortality and can favorably impact the natural history of this debilitating condition.

Adolescent↗

The effect of pericardiectomy on maximal oxygen consumption and maximal cardiac output in untrained dogs.

To test the hypothesis that the pericardium limits maximal oxygen consumption by limiting stroke volume and cardiac output, we studied 10 untrained dogs during submaximal and maximal exercise before and after pericardiectomy. Seven additional dogs were studied before and after a sham operation. All dogs were instrumented chronically with aortic and pulmonary artery catheters. Dogs were tested by running on a motor-driven treadmill, 4-6 times before and after pericardiectomy or sham operation. We measured cardiac output (dye dilution), heart rate, and arteriovenous oxygen difference. Oxygen consumption and stroke volume were calculated from these variables. After pericardiectomy, there were significant (P less than 0.01) increases in maximal oxygen consumption, maximal cardiac output, and maximal stroke volume. Maximal oxygen consumption decreased significantly in the sham group. There was no change in maximal heart rate following pericardiectomy, or in maximal cardiac output, heart rate, or stroke volume following sham operation. Both groups of dogs experienced similar significant decreases in hematocrit, arterial and venous oxygen contents, and arteriovenous oxygen difference. Neither pericardiectomy nor sham operation had any effect on oxygen consumption during submaximal exercise. However, the sham group had significant increases in cardiac output and heart rate during submaximal exercise, and the pericardiectomy group demonstrated a trend toward an increased cardiac output during submaximal exercise. These results support the hypothesis that the pericardium limits maximal oxygen consumption by limiting stroke volume and cardiac output during maximal exercise in untrained dogs. Further, these findings suggest that maximal oxygen consumption is limited by the oxygen transport capacity of the cardiovascular system, and not by the oxidative capacity of skeletal muscle in the untrained dog.

Animals↗

Futility of pericardiectomy for postirradiation constrictive pericarditis?

Two patients underwent pericardiectomy for postirradiation constrictive pericarditis. Both had received radiotherapy (more than 6,000 rads) for treatment of Hodgkin's disease 17 (patient 2) and 20 years (patient 1) earlier. At the time of operation, the patients were in New York Heart Association functional class III-IV or IV. Preoperative catheterization showed the following pressures for patients 1 and 2, respectively: right atrial, 30 and 14 mm Hg; right ventricular end-diastolic, 28 and 14 mm Hg; wedge, 29 and 13 mm Hg; and left ventricular end-diastolic, 27 and 14 mm Hg. Complete epicardiectomy and pericardiectomy was attempted in both patients. However, hospital mortality was 100%; patient 1 died of multiorgan failure after six days, and patient 2 died of biventricular failure after 3 months. A review of the literature revealed 44 cases of pericardiectomy for postirradiation constrictive pericarditis and a late survival rate of less than 50%. The poor results in these patients compared with patients having pericardiectomy for other reasons seem to be due mainly to the various kinds of radiation-induced damage to the heart as a whole, including untimely coronary artery disease, myocardial fibrosis, atrioventricular conduction disturbances, and valve dysfunction, with the result that complete relief by epicardiectomy and pericardiectomy may not be technically feasible.

Adult↗

Constrictive pericarditis: etiology and cause-specific survival after pericardiectomy.

OBJECTIVES: We sought to determine the association of etiology of constrictive pericarditis (CP), pericardial calcification (CA), and other clinical variables with long-term survival after pericardiectomy. BACKGROUND: Constrictive pericarditis is the result of a spectrum of primary cardiac and noncardiac conditions. Few data exist on the cause-specific survival after pericardiectomy. The impact of CA on survival is unclear. METHODS: A total of 163 patients who underwent pericardiectomy for CP over a 24-year period at a single surgical center were studied. Constrictive pericarditis was confirmed by the surgical report. Vital status was obtained from the Social Security Death Index. RESULTS: Etiology of CP was idiopathic in 75 patients (46%), prior cardiac surgery in 60 patients (37%), radiation treatment in 15 patients (9%), and miscellaneous in 13 patients (8%). Median follow-up among survivors was 6.9 years (range 0.8 to 24.5 years), during which time there were 61 deaths. Perioperative mortality was 6%. Idiopathic CP had the best prognosis (7-year Kaplan-Meier survival: 88%, 95% confidence interval [CI] 76% to 94%) followed by postsurgical (66%, 95% CI 52% to 78%) and postradiation CP (27%, 95% CI 9% to 58%). In bootstrap-validated proportional hazards analyses, predictors of poor overall survival were prior radiation, worse renal function, higher pulmonary artery systolic pressure (PAP), abnormal left ventricular (LV) systolic function, lower serum sodium level, and older age. Pericardial calcification had no impact on survival. CONCLUSIONS: Long-term survival after pericardiectomy for CP is related to underlying etiology, LV systolic function, renal function, serum sodium, and PAP. The relatively good survival with idiopathic CP emphasizes the safety of pericardiectomy in this subgroup.

Adult↗

Chronic constrictive tuberculous pericarditis: risk factors and outcome of pericardiectomy.

OBJECTIVE: Data on long-term outcome of pericardiectomy are limited. This retrospective study aimed to investigate risk factors and early and late outcomes of pericardiectomy for constrictive tuberculous pericarditis. DESIGN: Seventy patients with chronic constrictive pericarditis who underwent pericardiectomy between January 1990 and August 2005 were reviewed for perioperative and long-term survival. RESULTS: Patients (49 males; median age 40 years) had a median duration of symptoms of 24 months (range 8-72) before surgery. Perioperative mortality was 8.6%. During follow-up (mean 66.4 +/- 56.4), late mortality rates at 5 and 10 years were 1.6% and 9.7%, respectively. The mean censored survival in all patients was 155.2 months (SEM 8.3, 95%CI 138.8-171.6). Readmission-free survival was 68.6% over 10 years (mean 125.4 months, SEM 10.3, 95%CI 105.2-145.6). Ascites and duration of symptoms were found to be predictors of perioperative mortality (P = 0.047 and 0.036, respectively). CONCLUSIONS: The optimal time of pericardiectomy is most important in its management. Total or near-total pericardiectomy should always be performed as early as possible.

Adolescent↗

Harmonic scalpel for pericardiectomy: novel approach to an old cardiac dilemma.

BACKGROUND: Pericardiectomy for constrictive or calcific pericarditis is a technical challenge because of dense adhesions to the epicardial surface of the heart. The procedure is fraught with the possibility of urgent cardiopulmonary bypass from excessive bleeding or cardiac laceration. We propose the use of a harmonic scalpel to perform adhesiolysis with less bleeding and cardiac trauma. METHODS AND MATERIALS: A retrospective review of 7 pericardiectomies performed with a handheld harmonic scalpel over the past 2 years was performed. Requirements for blood products, the need for cardiopulmonary bypass, and mortality were examined. RESULTS: Four of the patients underwent pericardiectomy alone, and 3 patients underwent pericardiectomy with additional cardiac procedures. The 30-day mortality was zero. No patient needed blood transfusions or urgent cardiopulmonary bypass for bleeding. No patient developed malignant arrhythmias. CONCLUSIONS: Use of a harmonic scalpel is a safe and efficient technique for pericardiectomy. Adhesiolysis is less treacherous because of the bloodless operative field; moreover, the harmonic scalpel is not arrhythmogenic.

Adult↗

Constrictive epicarditis as a cause of delayed or absent response to pericardiectomy: a clinicopathological study.

It is widely held that constrictive pericarditis is curable by pericardiectomy, and failure to respond reflects an underlying myocardial disease. Fibrous epicarditis could account for residual cardiac constriction, and delayed hemodynamic response in some patients is an alternative explanation. To examine this, we studied the 12 consecutive patients with otherwise normal hearts treated with extensive pericardiectomy for constrictive pericarditis over the past 7 years. Three hemodynamic responses to pericardiectomy were observed: (1) rapid response, where central venous pressure (CVP) fell below 10 cm H2O by 24 hours in two patients; (2) delayed response, where CVP fell below 10 cm H2O by 48 hours in six patients; and (3) no response of CVP in four patients. The CVPs remained critically elevated (greater than 25 cm H2O) in three patients with delayed response until a sclerotic epicardial peel was resected. Another patient whose CVP of 30 cm H2O showed no change after parietal pericardiectomy was thought to have amyloid cardiomyopathy but instead at autopsy had constrictive epicardial sclerosis not recognized at parietal pericardiectomy. Histologic features of parietal pericardium had no correlation with hemodynamic response, whereas epicardial histology did correlate with hemodynamic response in four patients. The data showed a spectrum of postpericardiectomy delayed hemodynamic responses, which in some patients may be due to a slowly resolving or fixed component of fibrous epicarditis that may be clinically misconstrued as a cardiomyopathy. Interruption of visceral pericardial tissue may be as important as resection of the parietal pericardium in patients with epicardial sclerosis.

Adolescent↗

Current indications, risks, and outcome after pericardiectomy.

A retrospective analysis of the records of 60 patients who underwent pericardiectomy over a 10-year period (1980 to 1990) at The Johns Hopkins Hospital was performed. Indications for operation were effusive disease in 24 patients and constriction in 36 patients. Six patients (10%) with pericardial effusion had pain as the primary symptom necessitating intervention. The operative approach for pericardiectomy was median sternotomy in 52 patients (4 patients required cardiopulmonary bypass) and left anterior thoracotomy in 8 patients. Nine patients (5 with constriction and 4 with effusion) with a prior limited pericardial procedure required formal pericardiectomy. The operative mortality rate for pericardial effusion and constriction was 4.2% and 5.6%, respectively. Follow-up (median follow-up, 56.9 +/- 38.2 months) was obtained on 56 patients (93.3%). Actuarial survival at 1 year, 5 years, and 10 years for all patients was 82.1% +/- 5.1%, 71.7% +/- 6.7%, and 59.8% +/- 12.2%, respectively. A Cox proportional hazards regression analysis was performed using 20 clinical variables. A history of malignancy, previous pericardial procedure, and preoperative New York Heart Association class IV were found to be predictors of poor survival. All patients who underwent operation primarily for effusion with associated pain are alive and have improved functional capacity without steroid use. We conclude that pericardiectomy can be performed with low mortality and can result in good long-term survival and improved functional capacity. Patients who are seen primarily with pain refractory to steroid therapy can be relieved of symptoms with operation.

Actuarial Analysis↗

Successful use of thoracoscopic pericardiectomy in elderly patients with massive pericardial effusion caused by uremic pericarditis.

We report the use of thoracoscopic pericardiectomy to treat two elderly patients with massive pericardial effusion caused by uremic pericarditis. A 79-year-old man, admitted to our hospital complaining of dyspnea, was diagnosed with end-stage renal failure and began maintenance hemodialysis. Although intensive hemodialysis was performed, the patient could not remain on hemodialysis because of severe hypotension during the procedure. Echocardiography revealed massive pericardial effusion and severe hypokinesis of the left ventricular wall. Pericardiocentesis was performed first, without success, followed by thoracoscopic pericardiectomy under general anesthesia. One month after the pericardiectomy, episodes of hypotension during hemodialysis improved, and dyspnea diminished. Echocardiography showed no pericardial effusion and improvement of left ventricular wall motion. Pericarditis is a fatal complication in patients with end-stage renal failure and patients on maintenance hemodialysis. The second patient received the same procedure with a similar improvement of clinical symptoms. These cases suggest that thoracoscopic pericardiectomy is a safe and effective treatment of pericardial effusion caused by uremic pericarditis in elderly patients on hemodialysis.

Aged↗

Thoracoscopic pericardiectomy for purulent pericarditis: experience with 21 cases.

PURPOSE: We present our experience in performing thoracoscopic pericardiectomy for purulent pericarditis in 21 children. MATERIALS AND METHODS: Pericardiectomy was carried out using one optical trocar and two operating trocars. Pleural insufflation with carbon dioxide was maintained at 2-4 mm Hg. Anterior pericardiectomy was performed from the left phrenic nerve to the right border of the sternum to free the anterior part of the heart, notably the cardiac apex and the original area of the great vessels. Purulent debris was removed prior to detaching the epicardial peel. RESULTS: This study included 21 patients. Their mean age was 8 years. The time from onset of the disease to surgery ranged from 4 to 34 days (average, 15.2 days). Operative times ranged from 50 to 180 minutes (average, 100 minutes). There were no intraoperative or postoperative complications. All symptoms of cardiac tamponade disappeared immediately postoperatively. Follow-up ranged from 4 to 15 months and showed normal clinical manifestations, echocardiographs, and chest x-rays in all children. CONCLUSION: Thoracoscopic pericardiectomy with removal of a generous amount of the pericardium is feasible and safe for purulent pericarditis.

Adolescent↗

Echocardiography in patients with constrictive pericarditis before and after pericardiectomy: Are there predictors of surgical outcome?

Fifteen patients with constrictive pericarditis were prospectively evaluated with echocardiography and Doppler recordings during respiratory monitoring. Eleven who agreed to surgery also underwent right heart catheterization and a repeat echocardiography with Doppler 10 days after pericardiectomy. Preoperatively, there was a significant inspiratory decrease in the mitral E wave (P < 0.05) and increase in the tricuspid E wave velocities (P < 0.05), which both normalized after pericardiectomy. The mitral deceleration times increased from 110 +/- 40 to 149 +/- 46 msec (P < 0.05) postoperatively. The preoperative hepatic vein velocities showed an accentuated systolic flow pattern. The systolic to diastolic ratio of the hepatic vein velocities was higher in patients who improved with surgery (1.42 +/- 0.31 vs 0.65 +/- 0.13) (P < 0.05). Postoperatively the diastolic flow became more pronounced. There was a 100% expiratory diastolic flow reversal in eight patients preoperatively, which normalized after pericardiectomy. Clinically these patients improved significantly postoperatively. Left atrial size, ejection fraction, and mitral and tricuspid filling velocities during respiratory monitoring could not predict surgical outcome. Pericardiectomy improved Doppler filling dynamics in all patients although this was not parallel to clinical improvement.

Adult↗

Early and late results of pericardiectomy in 118 cases of constrictive pericarditis.

The medical records of 118 patients (86 male, 32 female, age 10-50 (mean 27) years) who underwent pericardiectomy for constrictive pericarditis at the Christian Medical College Hospital, Vellore, from 1954 to 1985 were reviewed. All had appreciable pericardial constriction. Preoperatively 97 of the 118 were in class III or IV of the New York Heart Association classification and 100 had peripheral oedema or ascites. Tuberculosis was proved as the cause in 72 patients. Pericardiectomy was accomplished through a standard anterolateral thoracotomy (107 cases), median sternotomy (3 cases), or bilateral thoracotomy (8 cases). Postoperatively an apparent low cardiac output state was seen in 34 patients, 12 of whom died. Hospital mortality in the last 12 years was 11%. Mortality was higher in NYHA class III and IV patients. The improved surgical results recently may be related to increased use of inotropic support and prolonged ventilation. At follow up there were 72 patients in whom functional capacity could be assessed; 63 were in class I or II. The poor results of pericardiectomy in some patients are likely to be related to advanced preoperative disability and early pericardiectomy is therefore recommended.

Adolescent↗

Pericardiectomy in dogs: 22 cases (1978-1994).

OBJECTIVE: To determine long-term outcome of dogs with neoplastic and nonneoplastic pericardial disease that undergo pericardiectomy. DESIGN: Retrospective study. ANIMALS: 22 dogs. PROCEDURE: Dogs that underwent pericardiectomy and in which the diagnosis had been confirmed histologically were included. Data collected from each record included signalment, history, clinical signs, results of diagnostic evaluations, operative management, postoperative complications, histologic diagnosis, and outcome. Dogs were grouped on the basis of underlying cause of pericardial disease (neoplastic vs nonneoplastic), and survival times were determined by means of Kaplan-Meier analyses. RESULTS: 9 dogs had neoplastic pericardial disease (chemodectoma, 4; hemangiosarcoma, 2; malignant mesothelioma, 2; lymphoblastic lymphoma, 1). Thirteen dogs had nonneoplastic pericardial disease (benign idiopathic pericarditis, 10; lymphocytic plasmacytic pericarditis, 2; osseous metaplasia of unknown cause, 1). Thoracic radiography and echocardiography were the most specific methods for diagnosis of pericardial effusion. Pleural effusion was the most common postoperative complication (8/22 dogs). Prevalence of postoperative complications was not associated with underlying cause of pericardial disease, surgical approach, or surgical procedure (subtotal vs total pericardiectomy). Median survival time of dogs with neoplastic disease (52 days) was significantly shorter than median survival time of dogs with nonneoplastic disease (792 days). Dogs that developed pleural effusion > 30 days after pericardiectomy had a poor prognosis for survival. CLINICAL IMPLICATIONS: Radiography and echocardiography are useful for diagnosis of pericardial effusion in dogs. Dogs with neoplastic pericardial disease have a significantly shorter survival time than do dogs with nonneoplastic pericardial disease.

Animals↗

Effects of pericardiectomy on canine pulmonary blood volume during hypervolaemia.

STUDY OBJECTIVE: The aim was to determine the effect of the pericardium on the pulmonary blood volume response to intravascular volume loading. DESIGN: Changes in pulmonary lung volume were measured from radioactive counts over the lung during radionuclide ventriculography. Baseline measurements, and repeat measurements after infusion of 21 ml.kg-1 of the dog's own blood, were made both before and after a pericardiectomy. SUBJECTS: Ten closed chest, anaesthetised dogs were studied. MEASUREMENTS AND MAIN RESULTS: Prior to and following pericardiectomy, volume loading produced equivalent and significant increases in left atrial, mean pulmonary artery, and right atrial pressures (all p less than 0.05). Before pericardiectomy, radionuclide lung counts increased from 1606(SEM 348) to 1870(402) with volume loading, corresponding to a 16% rise in lung counts from baseline (p less than 0.05). Following pericardiectomy, a similar volume load did not result in a significant rise in lung counts [1588(245) to 1697(255), 9%, p = 0.16], but was accompanied by an increase in left ventricular diastolic volume, from 39.7(6.6) to 58.7(6.4) ml, p less than 0.05, and a decrease in systemic vascular resistance index, from 122,600(14,600) to 86,600(10,000) dynes.s.cm-5 x kg, p less than 0.05. CONCLUSIONS: These data support the concept that removal of the pericardium is accompanied by reduced pulmonary blood volume overload in response to intravascular volume loading. The mechanism appears to be related to improved left ventricular diastolic filling, perhaps the result of diminished ventricular interaction, and to redistribution of excess intravascular volume from the pulmonary to the systemic circuit.

Animals↗

Doppler sonographic diagnosis of severe portal vein pulsatility in constrictive pericarditis: flow normalization after pericardiectomy.

This case report describes the noninvasive assessment of hepatic and portal vein hemodynamics in a patient with constrictive pericarditis before and after pericardiectomy. Doppler sonography of the hepatic veins demonstrated a typical W-shaped pattern with pronounced late diastolic flow reversal that disappeared after surgery. Preoperatively, we observed severe pulsatility of the portal vein with flow reversal in systole; after pericardiectomy, portal venous flow was normal. We concluded that the high right atrial pressure in this patient might have led to increased hepatic venous outflow resistance, with subsequent trans-sinusoidal shunting between the hepatic artery and portal vein causing severe portal vein pulsatility. After pericardiectomy and a decrease in right atrial pressure, portal vein flow normalized.

Adolescent↗