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Eyal E Porat

Publications and source records attributed to Eyal E Porat.

At least 19 recordsLinked to original sources

Outcomes of medical management of acute type B aortic dissection.

BACKGROUND: Currently, the optimal treatment of acute type B aortic dissection remains controversial. The purpose of this study was to report early clinical outcomes of medical management for acute type B aortic dissection. METHODS AND RESULTS: Between January 2001 and March 2005, 129 consecutive patients with the confirmed diagnosis of acute type B aortic dissection were studied. Mean age was 61 years (range, 29 to 94), with 33.3% (43/129) female. Acute type B aortic dissection protocol was instituted with the intent to manage all patients medically. Indications for surgical intervention included rupture, aortic expansion, malperfusion, and intractable pain. All patients were followed-up after discharge. Hospital mortality was 10.1% (13/129), 19% (4/21) when vascular intervention was required, and 8.3% (9/108) when medical management was maintained. Early intervention was required in 21 cases (16.2%), 19 (14.7%) open vascular/aortic cases and 2 cases (1.6%) of percutaneous aortic interventions. Morbidity included rupture (4.7%), stroke (4.7%), paraplegia (8.5%), bowel ischemia (7%), acute renal failure (21%), dialysis requirement (13%), and peripheral ischemia (4.7%). Late vascular-related procedures were performed in 5.2% (6/116) of cases. Univariate risk factors for early mortality were rupture (P<0.0001), need for laparotomy (P<0.008), acute renal failure (P<0.0001), need for dialysis (P<0.0001), and lower extremity ischemia (P<0.0004). The only independent risk factors for hospital mortality by multiple logistic regression was rupture (P<0.0009), and independent risk factors for midterm death were history of chronic obstructive pulmonary disease (P<0.002) and low glomerular filtration rate (<57 mL/min; P<0.0001). CONCLUSIONS: Medical management for acute type B aortic dissection is associated acceptable outcomes. Outcomes of other management strategies, eg, endovascular stenting, for acute type B aortic dissection need to be compared with these results.

Acute Disease↗

Acute type A aortic dissection complicated by stroke: can immediate repair be performed safely?

OBJECTIVE: Emergency surgical intervention for acute type A aortic dissection complicated by stroke remains controversial. The urgency of immediate repair in this setting is tempered by the concern that cerebral reperfusion may worsen neurologic outcome. The purpose of this study was to report and analyze our results with acute type A aortic dissection complicated by stroke. METHODS: Between September 1999 and March 2005, 151 consecutive patients presented with acute type A aortic dissection. Of this group, 16 (10.6%) patients had sustained a preoperative stroke. Mean age was 56 years (range 43-73 years), with 6 (38%) women. Right hemispheric, left hemispheric, and bilateral strokes occurred in 81%, 13%, and 6%, respectively. Computed tomographic scan or transesophageal echocardiography diagnosed aortic dissection; clinical examination, computed tomographic scan, or transcranial Doppler ultrasound diagnosed stroke. Aortic repair was performed with cardiopulmonary bypass, profound hypothermic circulatory arrest, and retrograde cerebral perfusion. One patient with complete neurologic devastation (coma) was not operated on. RESULTS: Overall hospital mortality was 18.8% (3/16). Mortality in 2 patients who did not undergo surgery (1 patient who was neurologically devastated, and 1 patient whose aorta ruptured while awaiting surgery) was 100% (2/2). Operative mortality was 7% (1/14). Among patients undergoing surgery, neurologic status completely recovered in 2 (14%) patients, improved in 6 (43%) patients, remained the same in 6 (43%) patients, and worsened in none. Median time from onset of stroke to surgery was 9 hours (range 1-240 hours). Eighty percent of patients who underwent surgical repair within 10 hours had improvement in neurologic status, where as none operated on beyond 10 hours improved (P < .02). CONCLUSIONS: In our experience, surgical repair of acute type A aortic dissection can be performed in the setting of preoperative stroke with acceptable mortality. Moreover, no worsening of neurologic condition was observed after surgical repair. Immediate surgical repair is warranted even if acute type A aortic dissection is complicated by stroke.

Acute Disease↗

Correlations of cerebrospinal fluid pressure with hemodynamic parameters during thoracoabdominal aortic aneurysm repair.

Central venous pressure (CVP) has long been thought to correlate with cerebrospinal fluid (CSF) pressure during thoracoabdominal aortic aneurysm repair. We examined hemodynamic factors during thoracoabdominal aortic aneurysm surgery to determine their relationship with CSF pressure and aortic cross-clamping. Hemodynamic parameters and CSF pressure were measured in 124 patients at six different stages during repair of descending thoracic or thoracoabdominal aortic aneurysms: skin incision, left lung collapse, pump on, aortic clamp on, aortic clamp off, and pump off. Stepwise multiple regression analysis was used for statistical analysis. CVP was a weak predictor for CSF pressure at the beginning of surgery and when the pump was initiated. At the onset of left lung collapse, cardiac output correlated with CSF pressure. There were no predictors during aortic cross-clamping. Model r2 values were low, ranging 0.03-0.15. We found no hemodynamic predictors of CSF pressure throughout the period of aortic cross-clamping during descending thoracic or thoracoabdominal aortic aneurysm surgery. Model r2 values were low, indicating generally poor prediction of CSF pressure.

Aged↗

Descending thoracic aortic aneurysm repair: 12-year experience using distal aortic perfusion and cerebrospinal fluid drainage.

BACKGROUND: The benefit of distal aortic perfusion and cerebrospinal fluid drainage over the "clamp and sew" technique during repairs of the descending thoracic aorta is still being debated. The purpose of this report is to analyze our experience with regard to neurologic deficit (paraplegia and paraparesis) and mortality using the adjuncts of distal aortic perfusion and cerebrospinal fluid drainage. METHODS: Between February 1991 and September 2004, we repaired 355 descending thoracic aortic aneurysms. Excluded from analysis were 29 patients who required profound hypothermic circulatory arrest as a result of transverse arch involvement and 26 patients with aortic rupture, leaving a group of 300 patients for which outcomes were analyzed. Mean patient age was 67 years, and 102 (34%) of the patients were women. The adjunct group of distal aortic perfusion and cerebrospinal fluid drainage used in 238 (79.3%) patients was compared with a group of 62 patients who underwent simple cross-clamp with or without the addition of a single adjunct. Multivariable data were analyzed by Cox regression. RESULTS: The incidence of neurologic deficit after all repairs was 2.3% (7 of 300 patients). The incidence of neurologic deficit (immediate and delayed) in the adjunct group was 1.3% (3 of 238 patients), and in the nonadjunct group was 6.5% (4 of 62 patients; p < 0.02). One case of delayed paraplegia occurred in each group. All neurologic deficits occurred in patients with aneurysmal involvement of the entire descending thoracic aorta (extent C; p < 0.02). Statistically significant predictors for neurologic deficit were the use of the adjunct (odds ratio [OR], 0.19; p = 0.02), previous repaired abdominal aortic aneurysm (OR, 7.0; p = 0.005), type C aneurysm (OR, 13.73; p = 0.02), and cerebrovascular disease history (OR, 4.7; p < 0.03). Thirty-day mortality was 8% (24 of 300 patients). Significant multivariate predictors of 30-day mortality were preoperative renal dysfunction (OR, 4.6; p < 0.01) and female sex (OR, 2.9; p < 0.03). CONCLUSIONS: Repairs of the descending thoracic aorta using the adjunct of distal aortic perfusion and cerebrospinal fluid drainage can be performed with a low incidence of neurologic deficit and an acceptable mortality. The use of the adjuncts should be considered during elective repairs of the descending thoracic aorta.

Adolescent↗

Evolution of risk for neurologic deficit after descending and thoracoabdominal aortic repair.

BACKGROUND: Cross-clamp time has been reported to correlate with risk of neurologic deficit after thoracoabdominal aortic aneurysm repair. Introduction of cerebrospinal fluid drainage and distal aortic perfusion (adjunct) has greatly reduced the incidence of neurologic deficit. We reevaluated the effect of cross-clamp time before and after introduction of adjunct during a 13-year period. METHODS: Between 1991 and 2004, we repaired 1,106 thoracic and thoracoabdominal aortic aneurysms. Four hundred one patients were female and 705 were male (median age, 67 years). Selective use of adjunct was begun in late 1992, with its routine use by 1993. RESULTS: Aortic cross-clamp times have increased significantly (34 seconds/year; p < 0.0001) since 1991. Despite this increase in cross-clamp time, neurologic deficit rates have declined from the first to the fourth quartile (p < 0.02). This decrease in neurologic deficit is most pronounced with the extent II thoracoabdominal aortic aneurysms (21.1% to 3.3%). The use of the adjunct increased the cross-clamp time by a mean of 12 minutes (p < 0.0001), but was associated with a significant protective effect against neurologic deficit (odds ratio = 0.4; p < 0.0002). Although other previously established risk factors remained significantly associated with neurologic deficit, cross-clamp time is no longer significant. CONCLUSIONS: Adjunct significantly reduced the risk of neurologic deficit, despite increasing cross-clamp time. The use of the adjunct appears to blunt the effect of the cross-clamp time and may provide the surgeon the ability to operate without being hurried. Because cross-clamp time has been effectively eliminated as a risk factor with the use of the adjunct, using this variable to construct risk models becomes irrelevant in our experience.

Adolescent↗

Cerebral monitoring with transcranial Doppler ultrasonography improves neurologic outcome during repairs of acute type A aortic dissection.

OBJECTIVE: Neurologic complications after repair of acute type A aortic dissection remain significant. The use of power M-mode transcranial Doppler monitoring to verify cerebral blood flow during these repairs might decrease cerebral ischemia by correcting malperfusion. The purpose of this study was to analyze the use of power M-mode transcranial Doppler monitoring during repairs of acute type A dissection with regard to neurologic outcome. METHODS: We performed a prospective study of patients undergoing repairs of acute type A aortic dissection. Repairs included profound hypothermic circulatory arrest and retrograde cerebral perfusion. Patients in whom transcranial Doppler monitoring was used to monitor cerebral blood flow and modify operative technique during repair (study group) were compared with those without monitoring and modification (control group). RESULTS: Between September 2001 and October 2003, we repaired 56 cases of acute type A dissection. Power M-mode transcranial Doppler monitoring was used in 50% (28/56) of cases. Power M-mode transcranial Doppler monitoring altered operative cannulation and guided retrograde cerebral perfusion flow in 28.5% (8/28) and 78.6% (22/28) of cases, respectively. Two patients presented with preoperative stroke, one in each group. One operative death occurred in each group. In-hospital mortality and the occurrence of new stroke were not significantly different between the 2 groups. Temporary neurologic dysfunction occurred less often in the study group (14.8% [4/27] vs 51.8% [14/27], P = .008). CONCLUSIONS: Identification of cerebral malperfusion requires cerebral monitoring. By ensuring cerebral blood flow by using power M-mode transcranial Doppler monitoring and correcting cerebral malperfusion by modifying operative technique, neurologic outcome was improved during repairs of acute type A aortic dissection.

Acute Disease↗

Glomerular filtration rate is superior to serum creatinine for prediction of mortality after thoracoabdominal aortic surgery.

BACKGROUND: Clinically evident renal disease (dialysis, history of renal insufficiency, or serum creatinine >2.0 mg/dL) is a known risk factor for mortality after thoracoabdominal aortic aneurysm repair. We extended this concept to the questions of whether subclinical renal disease is also a risk factor and how best to identify subclinical disease. We hypothesized that the glomerular filtration rate (GFR) would be a more sensitive determinant of renal function than serum creatinine alone. METHODS: Between 1991 and 2004, we repaired 1106 thoracoabdominal aortic aneurysms and descending thoracic aortic aneurysms. The median age was 67 years. There were 400 (36%) women and 706 (64%) men. We estimated GFR by using the Cockcroft-Gault equation. We divided baseline serum creatinine and baseline GFR into quartiles and estimated the association of the quartiles with 30-day postoperative mortality by chi2 testing. We further subdivided the population into patients with and without clinically evident renal disease and repeated the analysis in the patients without clinically apparent disease (n = 869). RESULTS: Clinically apparent renal disease was highly associated with 30-day mortality (odds ratio, 3.2; P < .0001). In all patients, serum creatinine quartile and GFR quartile were also both highly significantly associated with 30-day mortality (P < .0001). In patients without clinically apparent renal disease, both creatinine and GFR predicted additional mortality, but GFR was a much stronger predictor (P < .02 for creatinine vs < .0001 for GFR). In these patients, mortality ranged from 5% in the best GFR quartile to 27% in the worst. Taken as continuous variables in logistic regression equations, serum creatinine had no discrimination in patients without clinical disease (P = .73), whereas GFR remained strong (P < .0001). CONCLUSIONS: Preoperative renal function is an important determinant of early mortality even in patients without clinically evident disease. Estimated GFR is a much more powerful determinant of mortality risk than serum creatinine alone.

Adolescent↗

Surgical repair of extensive aortic aneurysms.

We present our 14-year experience in the management of extensive aortic aneurysms. Significant progress has been made in reducing the morbidity and mortality associated with these procedures. Our strategies for organ protection, operative techniques, including the elephant trunk technique, and surgical results are discussed.

Aortic Aneurysm↗

Superior vena caval bypass using the superficial femoral vein for treatment of superior vena cava syndrome.

We present the case of a 71-year-old woman who had benign, symptomatic, superior vena cava syndrome that was treated with open surgical bypass using the superficial femoral vein. The patient had an uneventful hospital course and experienced relief of her symptoms. We conclude that the superficial femoral vein is an acceptable bypass conduit for open surgical management of superior vena cava syndrome.

Aged↗

Staged repair of extensive aortic aneurysms: long-term experience with the elephant trunk technique.

OBJECTIVE: This paper reports our experience of a large series of elephant trunk patients accumulated over 12 years. SUMMARY BACKGROUND DATA: Extensive aneurysms of the ascending/arch and descending thoracic or thoracoabdominal aorta are significant surgical problems that have potential for great morbidity. We adopted a staged approach known as the elephant trunk procedure in 1991, and we have used it with some modifications since that time. METHODS: Between February 1991 and December 2003, we performed 1660 operations for ascending/arch or descending thoracic/thoracoabdominal aortic aneurysms. Of these, 321 operations were performed in 218 patients for extensive aneurysms with the elephant trunk technique. We performed 218 ascending/arch repairs and 103 descending thoracic or thoracoabdominal aortic replacements. RESULTS: In 218 ascending/arch repairs, strokes occurred in 3 of 218 (2.7%) patients, with 1 of 187 (0.5%) in the retrograde cerebral perfusion group and 2 of 31 (6.5%) in the no-retrograde cerebral perfusion group (odds ratio 0.08, P < 0.009). Thirty-day mortality for this group was 19 of 218 (8.7%). Among 199 recovering patients after stage 1 repair, 4 of 199 (2%) died during the 30-day to 6-week interval between stages. After stage 2 repair, 0 of 103 patients experienced immediate neurologic deficit, and 10 of 103 (9.7%) died within 30 days of surgery. Actuarial survival after completed stage 2 was 71% at 5 years. CONCLUSION: Despite extreme underlying disease, long-term survival is excellent in patients with extensive aneurysms when both stages of repair are completed. To prevent rupture, the second stage should be completed as soon as the patient's condition permits, preferably within 6 weeks.

Actuarial Analysis↗

Determination of cerebral blood flow dynamics during retrograde cerebral perfusion using power M-mode transcranial Doppler.

BACKGROUND: Retrograde cerebral perfusion (RCP) during profound hypothermic circulatory arrest has been used as an adjunct for cerebral protection for repairs of the ascending and transverse aortic arch. Transcranial Doppler ultrasound has been used to monitor cerebral blood flow during RCP with varying success. The purpose of this study was to characterize cerebral blood flow dynamics during RCP using a new mode of monitoring known as transcranial power motion-mode (M-mode) Doppler ultrasound. METHODS: Data on pump-flow characteristics and patient outcomes were collected prospectively for patients undergoing ascending and transverse aortic arch repair. Retrograde cerebral perfusion during profound hypothermic circulatory arrest was used for all operations. Intraoperative cerebral blood flow dynamics were monitored and recorded using transcranial power M-mode Doppler ultrasound. RESULTS: Between August 2001 and March 2002, we used transcranial power M-mode Doppler ultrasound monitoring for 40 ascending and transverse aortic arch repairs during RCP. Mean RCP time was 32.2 +/- 13.8 minutes. Mean RCP pump flow and RCP peak pressure for identification of cerebral blood flow were 0.66 +/- 0.11 L/min and 31.8 +/- 9.7 mm Hg, respectively. Retrograde cerebral blood flow during RCP was detected in 97.5% of cases (39 of 40 patients) with a mean transcranial power M-mode Doppler ultrasound flow velocity of 15.5 +/- 12.3 cm/s. In the study group, 30-day mortality was 10.0% (4 of 40 patients). The incidence of stroke was 7.6% (3 of 40 patients); the incidence of temporary neurologic deficit was 35.0% (14 of 40 patients). CONCLUSIONS: Transcranial power M-mode Doppler ultrasound consistently demonstrated retrograde middle cerebral artery blood flow during RCP. Transcranial power M-mode Doppler ultrasound can provide optimal RCP with individualized settings of pump flow.

Adult↗

Preoperative and operative predictors of delayed neurologic deficit following repair of thoracoabdominal aortic aneurysm.

PURPOSE: Delayed neurologic deficit has been recognized in recent years as a source of morbidity following thoracic and thoracoabdominal aortic repair. We wanted to find risk factors specifically significant for delayed neurologic deficit. In this initial study we looked at preoperative and operative risk factors. METHODS: We performed 854 thoracoabdominal aortic repairs between February 1991 and May 2001. For this study we excluded 26 patients who died before postoperative neurologic status could be evaluated and 38 who had immediate neurologic deficit on initial postoperative evaluation, leaving 790 consecutive patients. We evaluated a wide range of demographic, preoperative physiological and intraoperative data, using univariate and multivariable statistical analyses. RESULTS: Twenty-one of 790 (2.7%) patients had delayed neurologic deficit. Significant univariate predictors included preoperative renal dysfunction (odds ratio 5.9; P <.006), acute dissection (odds ratio 3.9; P <.05), extent II thoracoabdominal aorta (odds ratio 3.0; P <.03), and use of adjuncts (cerebrospinal fluid drainage and distal aortic perfusion; odds ratio 7.7; P <.03). The use of the adjuncts dropped from the multivariable model but all other factors remained. No other significant risk factors were identified. Twelve of 21 (57%) patients recovered neurologic function with optimization of blood pressure and cerebrospinal fluid drainage. CONCLUSION: Preoperative renal dysfunction, acute dissection, and extent II thoracoabdominal aorta are significant predictors of delayed neurologic deficit. Previous studies have demonstrated that the use of adjuncts protects against immediate neurologic deficit. The findings of this study are consistent with the hypothesis that adjuncts reduce ischemic insult enough to prevent immediate neurologic deficit but that a period of increased spinal cord vulnerability persists several days postoperatively.

Adolescent↗

Analysis of short-term multivariate competing risks data following thoracic and thoracoabdominal aortic repair.

OBJECTIVE: Estimating the overall successfulness of a treatment can be difficult when success is defined by freedom from multiple endpoints that are each subject to competing risks. We describe a method for modeling short-term competing outcomes. METHODS: We used polytomous categorical variable modeling to describe the 30-day onset of renal failure, neurologic deficit, stroke or death (events) following repair of 841 thoracoabdominal aortic aneurysms. This was to determine whether common risk factors had a multivariate association with these outcomes, and whether predictor variables might be positively associated with some outcomes and negatively associated with others. The goal was to determine whether a single aggregate-endpoint logistic model could accurately predict the probability of good outcome 30 days following surgery. RESULTS: When more than one event occurred in a single patient, the first (or most severe simultaneous) event was used for censoring. Five hundred and ninety-three out of 841 (70.5%) patients had no postoperative events. The most common event was renal failure. We detected five predictors that were significant for at least one of the four outcomes. These were age, poor preoperative renal function (RENAL), acute dissection, extent II aneurysm, and use of cerebrospinal fluid drainage and distal aortic perfusion (ADJUNCT). Only RENAL was significant for all outcomes. ADJUNCT was highly significant only for neurologic deficit in the polytomous analysis and dropped out of the aggregate-endpoint multiple logistic model. CONCLUSION: Polytomous-outcome multivariate categorical modeling can detect effects missed by aggregate models, and is a valuable and statistically powerful method for evaluating risk factor effects on multiple competing endpoints.

Adolescent↗

Cardiac function predicts mortality following thoracoabdominal and descending thoracic aortic aneurysm repair.

OBJECTIVE: Previous studies have identified age, renal failure and aneurysm extent as predictors of mortality following thoracoabdominal and descending thoracic aortic aneurysm (TAA) repair. We studied the impact of coronary artery disease (CAD) and cardiac function on 30-day mortality following TAA repair. METHODS: Between February 1991 and May 2001, we performed 854 TAA repairs. Two hundred ninety-one patients (34%) had a history of coronary artery disease. One hundred forty-one/291 (49%) had undergone coronary artery bypass surgery (CAB) prior to TAA repair. We conducted multivariable analyses of known risk factors along with the left ventricular ejection fraction (EF) and prior CAB to determine the adjusted effect of CAD on outcome. RESULTS: Mortality in patients with CAD was 54/291 (18%) compared to 75/563 (13%) without CAD (P<0.05). In patients who had prior CAB, mortality was 31/141 (22%) compared to 98/713 (14%) patients without prior CAB, (P<0.02). In multivariable analysis, the effects of CAD and CAB on mortality were eliminated by consideration of a low EF (defined as less than 50%). CONCLUSION: Impaired left ventricular function appears to be the strongest cardiac predictor of mortality for TAA repair, independent of the presence of coronary artery disease or coronary artery bypass revascularization.

Adolescent↗