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Intra-operative arteriography in arterial embolectomy.

In a retrospective study, 154 embolectomies in 135 patients with acute arterial occlusion were reviewed and the value of intraoperative arteriography studied. Included in the study were 69 embolectomies of the femoro-popliteal artery in 64 patients, and in 40 (58%) intra-operative arteriography was performed. Of these, 20 were done because of difficulty in passing the Fogarty catheter and/or absent backflow and 20 as a routine procedure where there was easy passage of the catheter and good backflow. In 29 embolectomies (42%) intra-operative arteriography was not performed because some surgeons, doubting the benefit of routine arteriography, did not use it. In 23 cases (58%) intra-operative arteriography led to an extension of the operation. Six out of 20 routine arteriograms (30%) showed incomplete clearance of the arterial tree, resulting in further embolectomy. The amputation rate was 17%, however in the group where routine arteriography was performed it was zero and significantly less than in the non-arteriogram group (23%). The use of intra-operative arteriography in arterial embolectomy surgery is recommended.

Acute Disease↗

Mechanisms and prevention of arterial injuries caused by balloon embolectomy.

In summary, this article reviews the spectrum of clinical injuries produced by balloon embolectomy The concepts of lateral wall pressure and balloon-artery shear force are presented, and the histologic reactions to passage of embolectomy catheters are described. On the basis of the results of experimental investigations, technical recommendations are made regarding the performance of embolectomy in patients. Attention to these technical details will prevent excessive shear forces and should decrease the incidence of catheter-induced vascular injuries. The following are recommended for performance of balloon embolectomy in patients: 1. Select smallest-sized catheter that will be effective. 2. Use small-bore, long-stroke syringe, such as tuberculin syringe. 3. Whenever possible, fill embolectomy balloons with fluid; air may be preferable in 2F catheters. 4. Before insertion into vessel, fill balloon to check for leaks and for eccentricity. 5. Reject balloons that leak or are markedly eccentric. 6. Insert catheter into vessel, taking care to enter true lumen; do not create false passage. 7. Do not force catheter against resistance: this may cause arterial perforation. 8. Begin to withdraw catheter before balloon is inflated; within first centimeter of motion, inflate balloon. 9. Withdraw catheter slowly and, if possible, continuously. 10. Repeat until lumen is clear, but do not pass catheter excessive number of times. 11. Obtain intraoperative completion arteriogram.

Arteries↗

Embolectomy for acute embolic occlusion of the internal carotid artery bifurcation.

BACKGROUND: Acute occlusion of the distal intracranial segment of the internal carotid artery (ICA) causes sudden severe hemispheric ischemia. A low rate of recanalization and a high mortality rate for this condition have been noted, even with endovascular treatment. METHODS: We report the results of emergency embolectomy in six patients with acute embolic occlusion of the internal carotid artery (ICA) bifurcation. All six patients were admitted to our institute within 2 h of the onset of symptoms. Computed tomography (CT) scans on admission revealed no low-density or high-density regions in any patients. The time between onset of symptoms and completion of angiography ranged from 2 to 4 h (2.8 +/- 0.7 h). RESULTS: Emergency embolectomy was performed for each patient. Recanalization was confirmed angiographically in four of the patients. In the remaining two patients, massive infarction in the territory of the ICA was detected on the CT scans obtained the day of the operation, and postoperative angiography was not performed in these two cases. These two patients died of uncal herniation 6 days after onset. Two of the six patients were able to walk with a cane 2 months after surgery. The remaining two patients were unable to walk or attend to their own bodily needs without assistance. The time elapsed between onset of symptoms to reopening of the occluded vessel was within 6 h in the four surviving patients. The recanalization rate was 66.7% (4/6) for the embolectomy procedure, significantly higher than that (12.5%) of the thrombolytic therapy reported in a previous study. CONCLUSIONS: In summary, open embolectomy can be performed when the time after onset of symptoms is less than 6 h.

Acute Disease↗

Acute pulmonary embolectomy: a contemporary approach.

BACKGROUND: Acute pulmonary embolism confers a high mortality rate despite advances in diagnosis and therapy. Thrombolysis is often effective but has a high frequency of major bleeding complications, especially intracranial hemorrhage. Therefore, we liberalized our criteria for acute pulmonary embolectomy and considered operating on patients with anatomically extensive pulmonary embolism and concomitant moderate to severe right ventricular dysfunction despite preserved systemic arterial pressure. METHODS AND RESULTS: We report 29 (17 men and 12 women) consecutive patients who underwent embolectomy from October 1999 through October 2001. Twenty-six patients (89%) survived surgery and were alive more than 1 month postoperatively. Median follow-up is 10 months. CONCLUSION: The high survival rate of 89% can be attributed to improved surgical technique, rapid diagnosis and triage, and careful patient selection. We hope that other tertiary centers will evaluate pulmonary embolism patients with an algorithm that includes surgical embolectomy as one of several therapeutic options. Our contemporary approach to pulmonary embolectomy no longer confines this operation to a treatment of last resort reserved for clinically desperate circumstances.

Acute Disease↗

[Pulmonary embolectomy for massive pulmonary embolism].

Surgical cases of massive pulmonary embolism remain rare in Japan. To discuss the surgical problems, clinical courses of 4 patients who underwent pulmonary embolectomy under cardiopulmonary bypass at our hospital for the last six years were reviewed. There were 2 men and 2 women; ranging from 41 to 72 years (mean age, 63 years), 1 of whom had deep venous thrombosis of the lower extremity as a predisposing factor. The initial disease recurred in 2 patients. Shock occurred in 3 patients preoperatively, 2 of whom had sudden syncope. Cardiac arrest occurred before and during pulmonary arteriography (PAG) in 1 patient. The systolic pulmonary arterial pressure rose to between 60 and 80 mmHg in all patients except for 1 of whom it was not measured. The diagnosis was established in 3 patients by PAG and clinically in the remaining recurrent patient. Thrombolysis was not effective in all patients, then pulmonary embolectomy was performed between four hours and five days after the onset of the disease. One patient with preoperative cardiac arrest died of low output syndrome and severe respiratory failure, but 3 survived with clinical improvement. Development of the prompt and noninvasive diagnostic procedure, rapid cardiopulmonary support in severe cases and an early decision to operate are required to improve the operative results. Partial resection of the lung was obliged due to massive endobronchial hemorrhage after embolectomy in 1 recurred patient. Compression of the lungs and embolectomy using a balloon catheter should be performed carefully to prevent injuring pulmonary arteries. Implantation of an inferior vena cava filter may be beneficial for the selected patient to prevent recurrence of the disease.

Adult↗

Embolectomy, catheter extraction, or disruption of pulmonary emboli: editorial review.

Hippocrates said, "For extreme illness, extreme measures are warranted." Massive pulmonary embolism is an uncommon clinical problem for which extreme measures, such as surgical embolectomy, appear warranted. Since the application of cardiopulmonary bypass to surgical embolectomy in 1961, a number of uncontrolled retrospective case series suggest that nearly one half of patients survive when they undergo emergent embolectomy, in spite of preoperative cardiac arrest. Transvenous catheter embolectomy or catheter disruption of thrombi offers alternatives for hypotensive patients who do not require cardiopulmonary resuscitation. In addition, pulmonary artery stent placement can improve pulmonary artery flow for selected patients who have massive pulmonary embolism.

Embolectomy↗

Delayed arterial embolectomy: a plea for a more active surgical approach.

In a series of 18 patients delayed embolectomy of the limb was performed 8-63 days after embolism had occurred. Three patients died (2 of them after amputation), and 7 limbs were amputated after surgery. In 10 instances blood flow was fully restored by the operation. Analysis of the 18 cases leads to the conclusion that the success of delayed embolectomy where neuromuscular function is intact depends primarily on surgical technique. Direct embolectomy by local or regional exposure of the obstructed arterial level is shown to produce better results than conventional (distant) balloon catheter embolectomy by proximal incision. This is thought to be due to increased mural adherence of the embolus, with secondary thrombus formation after a delay of 8 days or more. A plea is therefore made for a more aggressive surgical attitude to delayed arterial embolization. Provided that preoperative arteriography has localized the obstructive level and that the patient's general condition allows major vascular surgery, direct removal of the embolus and secondary thrombi by open exposure of the obstructed artery is recommended.

Aged↗

Arterial embolectomy in the leg. Results in a referral hospital.

The clinical characteristics and course of 90 patients in whom 121 arterial emboli occurred from 1968 to 1978 were reviewed. The factor that correlated most significantly with a favorable outcome was the interval from onset of symptoms until arterial embolectomy was performed. The results of embolectomy were excellent in the patients operated on within 6 hours of symptoms (amputation rate 4 percent, mortality rate 15 percent), but less favorable in the patients operated on within 6 to 12 hours of onset of symptoms (amputation rate 27 percent, mortality 40 percent). Mortality (48 percent) and amputation (52 percent) rates in the patients operated on 12 to 48 hours after onset of symptoms were excessive. It is recommended that immediate embolectomy be performed in all potentially viable extremities in patients who present within 12 hours of symptoms, but that after 12 hours only those limbs with obvious viability (not paralyzed or anesthetic) should be operated on. Alternatives for the remainder are high dose intravenous heparinization or expedient amputation. In patients who present greater than 60 hours after the onset of symptoms, embolectomy can be performed with low morbidity and mortality.

Amputation, Surgical↗

Pulmonary embolectomy.

During the past 10 years, 20 patients at St. Thomas Hospital had pulmonary embolectomy; there were 12 survivors. Ten patients had a pulmonary arteriogram prior to operation and, of these, there were 7 survivors. The remaining 10 patients were seen with circulatory collapse and were taken immediately to the operating room without definitive diagnostic studies. Ten patients were undergoing cardiopulmonary resuscitation at the time of the embolectomy and, of these, there were 5 long-term survivors. This review indicates that immediate diagnostic studies, such as lung scan or pulmonary arteriogram, should be undertaken as soon as the diagnosis of pulmonary embolus is entertained. Patients with sudden collapse, in the appropriate clinical setting, should be transported to the operating room as soon as possible. It would also appear that patients who are unresponsive to the usual measures of cardiopulmonary resuscitation are still reasonable candidates for pulmonary embolectomy, and this may represent their only change for survival. Patients in whom massive pulmonary embolus is confirmed by angiography should be considered for early pulmonary embolectomy despite a relatively stable hemodynamic and clinical picture.

Adult↗

Arterial embolectomy: a 34-year experience with 400 cases.

A series of 400 peripheral arterial embolectomies performed in 326 patients over a 34-year period is presented. Operative mortality was 11.0 per cent overall and 10.0 per cent in patients after the introduction and use of Fogarty catheters. The plateau in mortality is related to the association with serious underlying cardiac disease. The amputation rate was 9.5 per cent, with a corresponding 90.5 per cent limb salvage rate. Cardiac disease was the most common cause of emboli and was responsible for the majority of deaths. Mortality was considerably higher in patients with aortic and iliac emboli and in patients with recent myocardial infarcts. Amputation rates were higher with femoral and popliteal emboli and correlated directly with the time delay from onset of symptoms to performance of embolectomy. Higher amputation rates in the second half of the series are related to liberalization of the indications for embolectomy. Prompt operative management of patients with peripheral arterial emboli remains the treatment of choice. Low mortality and amputation rates can be achieved with early embolectomy and routine use of heparin.

Adolescent↗

Diffuse arterial narrowing as a result of intimal proliferation: a delayed complication of embolectomy with the Fogarty balloon catheter.

Most complications of embolectomy with the Fogarty balloon catheter are recognized early and have received ample attention in the surgical and radiologic literature. However, the delayed complication of diffuse arterial narrowing causing severe ischemia has received little emphasis, perhaps because follow-up arteriography is not always performed. This report describes five patients--women 43 to 62 years of age--with progressive leg ischemia discovered 2 to 4 months after embolectomy with the balloon catheter. Angiography showed a characteristic pattern of severe, smooth narrowing of that portion of the artery in which balloon embolectomy was performed. Pathologic examination of arterial specimens, available in two of the five patients, revealed marked intimal cellular proliferation, which narrowed the arteries severely without evidence of thrombosis, significant atheromatosis, or active arteritis. The cause appears to be intimal damage by the balloon. Embolectomy with the balloon catheter should be done especially carefully in relatively young women.

Adult↗

Early myointimal hyperplasia after balloon catheter embolectomy: effect of shear forces and multiple withdrawals.

Arterial stenosis occurring after balloon catheter embolectomy may be caused by myointimal hyperplasia (MIH). This study investigated the effects of shear force and repeated catheter withdrawals on the development of MIH after embolectomy. The procedures were performed in the common carotid and common femoral arteries of 18 anesthetized dogs. During catheter withdrawal, the balloons were filled gradually to produce shear forces rising smoothly from 50 to 200 gm. Four weeks after embolectomy, the vessels were perfusion-fixed in situ with 2% glutaraldehyde and were excised. The thickness and circumferential extent of MIH were measured in cross sections from segments of the vessels exposed to shear forces of 50, 100, and 200 gm. Sixty-nine of 72 arteries remained patent. Low shear force (50 gm) consistently elicited less MIH than did higher shear forces (p less than 0.05). At each level of shear force, repeated withdrawals resulted in greater circumferential extent of MIH than did single withdrawals (p less than 0.005). Although clinically it usually is necessary to perform multiple passes during balloon embolectomy, these data suggest that, in humans, attempts should be made to perform a minimal number of catheter withdrawals at low shear force to minimize the subsequent development of MIH.

Animals↗

Pulmonary embolism: long-term follow-up after treatment with full-dose heparin, streptokinase or embolectomy.

The study comprises 74 patients alive 30 days after the start of treatment of pulmonary embolism with heparin (n = 32), streptokinase (n = 22) or embolectomy (n = 20). The cumulative 5-year survival was 100% in the embolectomy group, compared to 75 +/- 7% (SE) in the medically treated patients (p less than 0.05). Cancer caused 78% of the late deaths. At follow-up 0.5-8.7 years after treatment the treatment groups were indistinguishable as regards right-sided heart catheterization data, pulmonary artery rest-obstruction, right ventricular diameter and wall thickness, ventilatory function and ECG changes. The embolectomized patients were in a more favourable NYHA classification level than the medically treated. Chronic pulmonary artery hypertension was found in 75% of patients with greater than or equal to 3 anamnestic recurrent embolic episodes before diagnosis compared to 8% of patients with less than or equal to 2 recurrent episodes (p less than 0.001). Patients with irreversible cardiocirculatory shock before embolectomy all had abnormal pulmonary vascular resistance (greater than 1.5 mmHg/l/min), depressed ventilatory function and more than 25% reduced pulmonary perfusion at follow-up. The major prognostic factors thus were cancer, the number of recurrent episodes and the degree of cardiocirculatory affection in the acute event. Although the embolectomized patients were the most affected initially, they had a good prognosis. This led us to extend our indications for embolectomy to include all patients with central emboli, irrespective of the degree of cardiocirculatory impairment.

Adolescent↗

[Hemodynamics and differentiated CO transfer following fulminant lung embolism and pulmonary artery embolectomy and following recurrent lung embolism].

Pulmonary embolectomy as an emergent surgical treatment after massive pulmonary embolism often is necessary in cardiogenic shock (CS) and even without previous diagnostic. If complete dissolution of the thromboembolus is possible or spreading of microemboli may occur is unknown. Therefore we studied 21 patients surgically treated by embolectomy, ten of these with consecutive cardiogenic shock (CS) and twelve patients after repetitive microembolism and cava-blocking. Besides lung-functional parameters for special CO-diffusion capacity (DLCO), differentiated in membrane (DM) and vascular (VC) component (Roughton and Forster), we measured mean pulmonary artery pressure (PAP) at rest and at exercise. Patients after repetitive embolism showed considerably more diminution of DLCO (-31%) than those after single massive embolic event (-15%) even concomitant by CS (-10%). Repetitive microembolism lowered VC by 21%. Slight decrease of DM was found after CS. Mean pulmonary artery pressure was elevated at rest (26 mm Hg) and exercise (33 mm Hg) after repetitive microembolism and normal after massive embolism or CS. Pulmonary embolectomy may prevent disturbances of DLCO or PAP even after CS. Damage of vascular integrity (VC) was found after microembolism. Pulmonary embolectomy seems to remove total embolic material and therefore seems to be optimal.

Adult↗

[Embolectomy in massive lung embolism].

Pulmonary embolism was first described by Laennec in 1819. After introduction of the Trendelenburg surgical technique, Kirschner, in 1925, performed the first successful embolectomy. In a review of the literature, in 42 patients, survival rate was 45% on use of a modified Trendelenburg method employing cross-clamping of the vena cava. The use of this intervention can still be considered justified if extracorporeal circulation is not available. Establishment of the indication and anatomical fundamentals The indication for surgical embolectomy is considered established in the presence of massive pulmonary arterial obstruction with pending death of the patient. The difficulty lies in identification of the patient with massive pulmonary embolism who will succumb and in defining the extent of pulmonary arterial obstruction which will lead to death. Limitation of the indication to only those patients in shock led to mortality rates up to 93%. Immediate death after pulmonary embolism is not the rule. Of 52 patients with massive pulmonary embolism, 50% survived more than two hours; in those with no preexistent cardiopulmonary disease up to eight hours. Surgical intervention can be considered accordingly. Anatomically, massive pulmonary embolism implies at least 60 to 70% obstruction of the pulmonary arterial bed. In 85 of 100 patients who died of pulmonary embolism, voluminous emboli were found in both pulmonary arteries. In the presence of preexistent cardiopulmonary disease, lesser degrees of obstruction can lead to a critical condition. In consideration of the indication as above, the following comments are considered appropriate: 1. Quantification of the obstruction: Pulmonary angiography remains the most appropriate diagnostic examination. The degree of obstruction can be quantified according to a number of indices. As of 60%-obstruction, surgical intervention can be considered. 2. Justification of embolectomy: The classical indication can be established in 2 to 6% of the patients based on treatment-refractory hypotension. In Table 1, the classical stages of massive pulmonary embolism are shown with the indication for embolectomy being considered as of stage IV but these characteristics are unreliable in everyday practice. If surgery is delayed until vasoactive drugs are no longer effective, an irreversible condition is frequently incurred in spite of operative removal of the obstruction. More favorable results can be achieved when the indication for surgery is based only on the degree of obstruction since, in this case, the condition of shock will not be prolonged and a hemodynamically-stable patient can be subjected to surgery. 3. Thrombolytic treatment

Angiography↗

[Emergency embolectomy in embolic occlusion of the middle cerebral artery].

UNLABELLED: The natural course of embolic occlusion of the middle cerebral artery (MCA) has many variations, which include the frequent appearance of hemorrhagic infarction. There are also fatal cases among which severe ischemic edema is found. There haven's been many cases reported of MCA embolectomy in the acute stage, and findings concerning them have been very complicated and hard to analyze. Nevertheless there certainly exist cases where remarkable improvement of neurological signs is shown soon after the procedure. Five cases of emergency embolectomy have been undergone in our hospital in the past 2 years. The results were better than results obtained in cases where embolectomy was not performed. Three male and two female cases are the objectives, whose average age was 61 +/- 6 years (ranging from 54 to 67 years). The left side of the MC was involved in three cases and the right in two, and all cases had past history of heart diseases which may have been the embolic source. Each case had undergone CT scan soon after admission to make sure not to be the other type of intracranial lesion. Cerebral angiography was performed next, to discover the site of the occlusion and the degree of collateral circulation. Emergency embolectomy was performed as soon as possible in every case. The functional outcome was estimated from the ADL three months later using the international fifth degree grading. RESULTS: The period from onset to recanalization ranges between 4.5 to 11 hours (average 6.9 +/- 2.5 hours). Good MC recanalization was demonstrated in each case angiographically within a week after the operation.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Late results after femoral artery embolectomy.

A review of 100 femoral artery embolectomies performed on 88 consecutive patients during a 10-year period was conducted to establish immediate and long-term results. There were 48 (55%) male and 40 (45%) female patients. Ages ranged from 33 to 97 years (mean, 73 years). Local anesthesia was used in 84 (84%) cases. Fifteen (17%) patients died within 30 days of the procedure. Major limb amputation was required within 30 days of operation in 16 (16%) patients. Mortality rate in the group of patients needing early amputation was 50% compared with 11% for those who underwent successful embolectomy procedures (p less than 0.001). Current follow-up was established for all patients. Five-year and 10-year survival rates for the entire group were 40% and 35%, respectively. The most frequent causes of late death after femoral artery embolectomy were arteriosclerotic heart disease (26%), cerebrovascular accident (26%), and advanced carcinoma (21%). All 39 remaining survivors were located 8 to 126 months (mean, 48 months) after discharge to complete a questionnaire designed to assess quality of life and symptoms of vascular insufficiency. Thirty-five (90%) survivors were fully ambulatory and 27 (70%) lived in their own homes. Although early survival is decreased after femoral embolectomy, long-term survivors can be expected to live independently with excellent limb salvage and function.

Adult↗

The role of pulmonary embolectomy in venous thromboembolism.

Embolectomy was performed by the Trendelenburg method on one patient and with cardiopulmonary bypass on 10 patients during the period 1961 to 1975. The use of cardiopulmonary bypass permitted preoperative resuscitation, cardiorespiratory support during the operation, complete embolectomies to be performed and resulted in the survival of 4 of the 10 patients. There were 5 patients who suffered cardiac arrest prior to embolectomy. Three died intraoperatively, of which two died of left ventricular failure, and two others died postoperatively of brain damage indicating the need to proceed rapidly with the accurate diagnosis and treatment of massive pulmonary embolism. Following embolectomy, partial interruption of the inferior vena cava was performed and prevented recurrent pulmonary emboli and significant post-thrombotic sequelae in four patients. Another patient underwent caval ligation with significant sequelae.

Cardiopulmonary Bypass↗