Amoebic liver abscesses presenting with psoas abscess.
Explore the source record for details and available documents.
SEARCH · Search PubMed
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.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Clinical suspicion of a liver abscess mandates an investigation of the liver for evidence of a liver abscess by radionuclide, ultrasound, or CT scan. Amebic abscesses have a lower mortality rate than pyogenic abscesses. Amebic and pyogenic abscesses can be distinguished on the basis of epidemiologic, clinical, and laboratory studies. The definitive studies for identifying amebic liver abscesses are hemagglutinin or gel diffusion studies. Amebic abscess of the liver may be complicated by extension to the lung, with pulmonary complications. Patients suspected to have amebic abscesses require metronidazole. Emetine or chloroquine may be added if there is no response or if the abscess recurs. Unless there is a failure of the amebic abscess to resolve or secondary infection occurs, there is seldom a need to aspirate or drain these abscesses. Pyogenic abscesses should be treated with broad-spectrum antibiotics to cover gram-negative aerobes and anaerobic organisms. All pyogenic abscesses larger than 1.5 cm in diameter should be aspirated, and the aspirate should be Gram stained and cultured. Percutaneous or surgical drainage should then be performed. Operative intervention is required in those patients with intra-abdominal pyogenic infections that are seeding the liver abscess. The marked reduction in the mortality rate of pyogenic liver abscess witnessed in this decade is multifaceted and attributable in part to earlier diagnosis, permitting definitive treatment in a timely fashion, as well as to improved intensive unit care, antibiotic management, and operative technique.
From 1973 through 1988, 518 external and internal abscesses were diagnosed in a large commercial goat herd. Of the 518 abscesses, 238 were primary and 280 were secondary abscesses in the same or other anatomic locations. During this period, the herd varied in size from 94 goats in 1973 to 431 goats in 1988. Abscesses in the jaw area were detected in 141 goats, 4 of which developed osteomyelitis of the mandible. Sternal abscesses were detected in 72 goats, with 2 also having osteomyelitis of the sternum diagnosed at necropsy. Most of the abscesses were in the jaw, sternal, facial, and cervical areas. Lung abscesses were diagnosed at necropsy in 20 goats that most recently had 1 or more superficial abscesses. Abscess incidence was 27.6% (112 of 406) in wethers and 22.9% (154 of 687) in does. Actinomyces pyogenes was isolated most frequently by bacteriologic culture of abscess specimens and about 3 times as often as was Corynebacterium pseudotuberculosis or Staphylococcus sp, usually coagulase-positive S aureus. Bacteriologic culture of blood samples, taken during abscess episodes, yielded A pyogenes (n = 3) or C pseudotuberculosis (n = 1) in 3 goats. Results of antibiotic treatment of abscesses were disappointing, with little evidence of altering the course of the disease or sterilizing the abscess, despite the fact that the bacteria were susceptible in vitro to the antibiotics used. Excision of intact abscesses was the preferred treatment for abscesses of the jaw and facial areas.(ABSTRACT TRUNCATED AT 250 WORDS)
Hepatic abscess--amebic or pyogenic--can be diagnosed with great accuracy by either ultrasonography or computed tomographic (CT) scanning. Ultrasound is the modality of choice and will detect almost 100% of abscesses. Confirmation of a diagnosis of amebic liver abscess is made by the indirect hemagglutination test that should be positive in almost 100% of cases. Cultures of pus from the abscess and from the blood must be obtained in cases of pyogenic liver abscess. A positive culture of pus from the abscess has been achieved in 90% of cases. Ultrasound or CT guidance is utilized in aspiration of a hepatic abscess. In the treatment of an amebic liver abscess, metronidazole is the amebicide of choice. Open drainage is contraindicated. For cases that fail to respond to therapy with amebicides, closed drainage guided by CT or ultrasound is performed. Secondary bacterial infection of an amebic liver abscess is an extremely rare event. The identification and determination of the antibiotic sensitivity of organisms responsible for pyogenic liver abscess is a crucially important step. Unless a celiotomy is necessary to correct an intraabdominal process or the abscess is extremely large, the initial treatment of pyogenic liver abscess is a 2 week course of appropriate antibiotics followed by a 1 month course of oral antibiotics. The majority of pyogenic liver abscesses will respond to such treatment. If drainage of a pyogenic abscess is required, the preferable technique is with a percutaneous CT- or ultrasound-directed catheter.(ABSTRACT TRUNCATED AT 250 WORDS)
An 11-year retrospective review of women with breast abscesses presenting to a district general hospital was performed. A total of 122 women were identified with a breast abscess: 85 (70 per cent) with non-lactational abscesses and 37 (30 per cent) with an abscess in the puerperium. Six of 37 lactational and 24 of 85 non-lactational abscesses recurred. Sixteen mammillary fistulae developed, all following incision and drainage of non-lactational breast abscesses. Women with non-lactational breast abscesses were more likely to smoke cigarettes (P less than 0.005). Breast abscesses containing anaerobic bacteria were significantly more likely to occur in current cigarette smokers (P less than 0.05). Women with non-lactational breast abscesses who were heavy cigarette smokers were more likely to suffer recurrent abscesses (P less than 0.01). There was histological evidence of duct ectasia on biopsy in 25 women with non-lactational abscesses and 21 of 25 were current smokers. Mammillary fistulae developed more frequently in current smokers (P less than 0.03). Cigarette smoking is important in the natural history of non-lactational breast abscesses and may predispose to anaerobic breast infections and the development of mammillary fistulae.
An unexplained increase in the frequency of pyogenic liver abscesses of unknown etiology has, fourtunately, been paralleled by significant advances in diagnostic and therapeutic methods. This report reviews experience with 14 patients operated upon at NYU Medical Center since 1971. Eight cases (57%) were cryptogenic. Other abscesses were associated with biliary disease (3); abdominal sepsis (2); and trauma (1). Abscesses were present on hospitalization in 12 patients. Clinical findings included fever (101-108 F); 100%; leucocytosis, 71%; anorexia and vomiting, 50%; localized tenderness and hepatomegaly, 50%; hypoalbuminemia, 86%; hypocholesterolemia, 78%; elevated SGOT, 71%; and elevated aikaline phosphatase, 43%. Technetium hepatic scintiscans showed focal defects in 10 of 12 patients (83%), but did not detect multiple abscesses in 2 of these. Hepatic arteriography performed in 10 patients was highly accurate, outlining single abscesses in 6 and multiple abscesses in 4. Furthermore, in one patient a false positive scintiscan was demonstrated by negative arteriography, confirmed by autopsy. In 4 patients, arteriography indicated an abscess in the posterior-superior area of the right hepatic lobe. With precise anatomical localization, a trans-thoracic approach permitted uncomplicated drainage in each case. This approach provides excellent exposure and direct drainage for abscesses in this area. An additional therapeutic adjunct in two patients, with 4 and 11 abscesses each, was postoperative intraportal infusion of antibiotics through the umbilical vein. Thirteen patients (83%) recovered, one dying from pulmonary embolism. Primary hepatic abscesses occur with increasing frequency. Primary hepatic abscesses occur with increasing frequency. Primary hepatic abscesses occur with increasing frequency. The methods described allow more precise preoperative diagnosis and direct surgical drainage.
Fifteen patients with amoebic liver abscesses underwent percutaneous catheter drainage under ultrasonographic guidance. Thirteen patients had solitary abscesses (right lobe 12, left lobe 1), two had associated subdiaphragmatic collections, while two patients had multiple abscesses. The indications for the drainage included lack of response to medical therapy: imminent rupture in five cases; ruptured liver abscesses in three; enlarging abscesses after hospitalization in three; persistent symptoms in two; and large left lobe abscesses in two. The volume of the abscesses before drainage was 102-1008 ml (mean 432 ml). Pigtail catheters (8 F) were used in nine of the patients and 12 F sump catheters in six. When multiple abscesses and associated subdiaphragmatic collection were present, each was drained separately. The catheters were removed (mean 7 days, range 3-20 days) when patients became apyrexial, catheter drainage was less than 10 ml in 24 h and cavitogram showed a negligible cavity (mean residual volume 5.5 ml, range 3-15 ml). Complications included minor blood loss through the catheter for 12 h in one patient and reappearance of the abscess in another requiring further drainage. Our experience suggests that catheter drainage of amoebic liver abscesses in selected cases is safe and effective, and results in prompt and early resolution of the abscess cavity with restoration of normal parenchyma.
BACKGROUND: Echocardiography is recognized as the method of choice for the noninvasive detection of valvular vegetations in patients with infective endocarditis, with transesophageal echocardiography being more accurate than transthoracic echocardiography. The diagnosis of associated abscesses by transthoracic echocardiography is difficult or even impossible in many cases, however, and it is not known whether transesophageal echocardiography is any better. METHODS: To determine the value of transesophageal echocardiography in the detection of abscesses associated with endocarditis, we studied prospectively by two-dimensional transthoracic and transesophageal echocardiography 118 consecutive patients with infective endocarditis of 137 native or prosthetic valves that was documented during surgery or at autopsy. RESULTS: During surgery or at autopsy, 44 patients (37.3 percent) had a total of 46 definite regions of abscess. Abscesses were more frequent in aortic-valve endocarditis than in infections of other valves, and the infecting organism was more often staphylococcus (52.3 percent of cases) in patients with abscesses than in those without abscesses (16.2 percent). The hospital mortality rate was 22.7 percent in patients with abscesses, as compared with 13.5 percent in patients without abscesses. Whereas transthoracic echocardiography identified only 13 of the 46 areas of abscess, the transesophageal approach allowed the detection of 40 regions (P less than 0.001). Sensitivity and specificity for the detection of abscesses associated with endocarditis were 28.3 and 98.6 percent, respectively, for transthoracic echocardiography and 87.0 and 94.6 percent for transesophageal echocardiography; positive and negative predictive values were 92.9 and 68.9 percent, respectively, for the transthoracic approach and 90.9 and 92.1 percent for the transesophageal approach. Variation between observers was 3.4 percent for transthoracic and 4.2 percent for transesophageal echocardiography. CONCLUSIONS: The data indicate that transesophageal echocardiography leads to a significant improvement in the diagnosis of abscesses associated with endocarditis. The technique facilitates the identification of patients with endocarditis who have an increased risk of death and permits earlier treatment.