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Stereotactic surgery in the management of brain abscess.

BACKGROUND: Bacterial brain abscesses can be diagnosed and treated with stereotactic aspiration. METHODS: From 1991 to 1997 we have used computed tomography-guided stereotactic aspiration to diagnose and treat 21 patients with a total of 58 bacterial brain abscesses. The ages of the patients ranged from 4 to 72 years (median 25 years); 11 of these 21 patients had multiple abscesses. The number of abscesses per patient with multiple abscesses ranged from 2 to 9, all located deep in subcortical white matter. RESULTS: All patients underwent stereotactic surgical drainage and an 8-week intravenous antibiotic medical treatment. Of the 58 abscesses, 23 were aspirated. Of these 23 abscesses, 19 were radiologically stage III or IV and four were stage I or II. Pathological examination confirmed radiological staging in 19 patients (83%). Except for the three patients who have mild residual hemiparesis and one patient recovering from ataxia, all patients had complete neurological recovery. CONCLUSIONS: Computed tomography-guided stereotaxy achieved all the objectives of management; namely, ascertaining the diagnosis, draining the content of the mass, and obtaining pus for accurate bacteriological diagnosis without morbidity. Stereotactic aspiration combined with an 8-week intravenous antibiotic regimen has yielded an effective therapeutic result in all of our abscesses, small or large, solitary or multiple, superficial or deep-seated. A high radiological-pathological correlation was also deduced from this study.

Adolescent↗

Brain abscess in children.

Brain abscess is a relatively uncommon but life-threatening infection in children. It can originate from contiguous site infections (eg, chronic otitis media, mastoiditis, sinusitis, meningitis), from distant pathologic states (eg, cyanotic congenital heart disease, chronic lung infections), after head trauma or neurosurgical procedures, or from cryptogenic sources. Predominant etiologic microorganisms vary depending on these predisposing factors. Computed tomography and magnetic resonance imaging are essential tools that enable the physician to make an accurate diagnosis of intracranial purulent collections. Proper selection of antimicrobial agents with good penetration of the central nervous system and with adequate coverage of both anaerobic and aerobic bacteria is critical for the medical management of brain abscess. Delay in surgical drainage can be associated with high morbidity and case-fatality rates. In the early phase of cerebritis, however, infection can respond to antibiotic therapy alone. Advances in diagnostic and therapeutic modalities during the last decade have improved the prognosis of this serious disease.

Anti-Bacterial Agents↗

Difficulties in the diagnosis of brain abscesses.

The diagnosis of brain abscesses has been improved during the last 10 years because to introduction of computerized tomography (CCT) and improved methods for the analysis of cerebrospinal fluid (CSF). Typical ring-like enhancement in the CT and an elevated CSF cell count combined with disturbances of the blood-brain barrier and elevated CSF lactate are common and confirm preliminary diagnoses. However, in spite of these procedures, brain abscess is still sometimes misdiagnosed because of the lack of pathological CT findings or a misleading case history sometimes causing cerebral affections. We present the case histories of two young patients in whom diagnosis of brain abscess was delayed. We recommend the immediate performance of contrast-enhanced CT and CSF analysis. If these procedures do not exclude a brain abscess, antibiotic treatment should be begun immediately.

Adult↗

Clinical features and predictive factors of intraventricular rupture in patients who have bacterial brain abscesses.

BACKGROUND: Intraventricular rupture of brain abscesses (IVRBA) remains a catastrophic and fatal complication of bacterial brain abscess (BBA). However, no information has been reported about the risk factors that are predictive of intraventricular rupture. METHODS: This study was undertaken to determine the potential risk factors that are predictive of intraventricular ruptures in patients with BBA but without intraventricular rupture when arriving at the hospital. A comparison is also made between patients who already have IVRBA at the time of admission (initial IVRBA) and those who have the episode during hospitalisation (subsequent IVRBA). RESULTS: 62 patients, including 45 who had initial IVRBA and 17 who had subsequent IVRBA, were examined. Stepwise logistic regression analysis showed that the adjusted risk of intraventricular rupture during hospitalisation for patients with multiloculated brain abscesses had an odds ratio (OR) of 4.2 (95% confidence interval (CI) 1.24 to 14.3; p = 0.02) compared with those without multiloculated brain abscesses (referent); a reduction of 1 mm in the distance between the ventricle and brain abscesses would increase the rupture rate by 10% (p = 0.006, OR 0.9, 95% CI 0.83 to 0.97). CONCLUSION: This study shows that if the abscess is deep seated, multiloculated and close to the ventricle wall, a reduction of 1 mm in the distance between the ventricle and brain abscesses will increase the rupture rate by 10%. Despite aggressive medical and surgical management shown in this series, many patients continue to progress poorly.

Adolescent↗

[Brain abscess in children].

INTRODUCTION: Brain abscess is a rare infection in infants. Morbidity and mortality are high but have decreased due to advances in neuroimaging studies and the use of new antibiotics. We describe six cases of brain abscess diagnosed at the Gregorio Marañón Children's Hospital between January 1996 and September 2003. METHODS: We performed a retrospective chart review of patients with brain abscess. The variables analyzed were age, sex, clinical symptoms and signs, radiological studies, etiology, therapy, and clinical outcome. RESULTS: Age ranged from 8 to 15 years (mean age: 11 years). There were three girls and three boys. The most frequent symptoms were neurological with associated sinusitis in four patients, congenital cyanogenic cardiopathy in one patient and meningitis in one patient. Diagnosis was established through computed tomography (CT) of the brain in five patients and through magnetic resonance imaging (MRI) in one patient. In five patients the abscess was located in the frontal lobe. All patients received broad-spectrum antibiotics and five underwent surgical drainage. Two patients had neurological sequelae. CONCLUSIONS: Although rare, brain abscess should be considered in patients with neurological manifestations associated with otorhinolaryngological infections or congenital cyanotic cardiopathy. When suspected, a CT or MRI must be performed to rule out this diagnosis and, if confirmed, prompt therapy with broad-spectrum antibiotics should be started. Surgical drainage may be needed.

Adolescent↗

Postneurosurgical nosocomial bacterial brain abscess in adults.

BACKGROUND: Bacterial brain abscess after a neurosurgical procedure has become an important occurrence in the hospital setting. However, no information about the frequency, clinical relevance, and the outcome has been reported. PATIENTS AND METHODS: Over a period of 19 years (1986- 2004), a total of 31 patients were retrospectively identified as having brain abscesses after neurosurgical procedures and were enrolled in this study. RESULTS: Those included in this study accounted for 0.17% (31/18600) of all neurosurgical procedures in the same period. There was an increased percentage of adult postneurological nosocomial brain abscess compared to all adult bacterial brain abscesses in recent years. The majority of cases were due to Gram-negative bacilli and polymicrobial infections, including both Gram-negative bacilli and Staphylococcus species. Furthermore, the appearance of multi-antibiotic resistant strains was also noted during the study period. The overall fatality rate was 16%. CONCLUSION: Post-neurosurgical states have become important predisposing factor for bacterial brain abscess. In patients that undergo neurosurgical procedures and develop smoldering fever, progressively disturbed consciousness, headache, and new onset focal neurologic signs, immediate neuro-imaging studies should be undertaken to determine whether bacterial brain abscess is present. Although mortality may be related to the primary brain pathology, early diagnosis and timely use of appropriate antibiotics based on antimicrobial susceptibility testing are also essential for survival.

Adolescent↗

[CT-guided stereotactic surgery of brain abscess].

Seven patients with brain abscess underwent CT-guided stereotactic aspiration using Iseki's stereotactic apparatus. Three of them were under the age of fifteen and four were older than thirty. The lesions were single and round in four cases, multilobular in two and multiple in one patient. Operations were performed after systemic administration of antibiotics for more than two weeks and after capsule formation was confirmed on CTs. Preoperative volume of the abscesses was estimated from CTs. The target point chosen was the center of the ring of the largest diameter in the enhanced lesion. Abscess was aspirated under monitoring with intraoperative CT scan. No continuous drainage was performed and no antibiotics were given directly into the abscess cavity. In all cases the center of the abscess was punctured with a single trial. Average volume of the preoperative brain abscesses was 18.8ml. Aspirated volume at the time of the operation averaged 16.9ml and all the abscesses decreased to unmeasurable size on CTs. In five of seven patients abscesses were cured after a single aspiration, and in one case after the second operation. One case required extirpation of the lesion. During the follow-up period of four months to five and a half years six patients showed no recurrence. One patient died of unrelated cause four and a half years after the operation. No operative complication was noted. There was no operative morbidity or mortality. Using a CT guided stereotactic method, brain abscess is punctured so accurately, regardless of its location and size, that damage to the surrounding brain during operation can be minimized. Therefore it is highly possible to aspirate abscesses completely.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[Complex MR-diagnosis of brain abscesses].

Early diagnosis of brain inflammatory lesion is a basic factor in choosing treatment policy. The paper investigates the use and informative value of diffuse-weighed magnetic resonance imaging in the differential diagnosis of brain abscesses and processes of another origin. It also considers the application of MR spectroscopy and perfusion MRI to obtain additional information on an inflammatory processes. A series of observations covered 10 patients with brain abscesses at different sites. Diffusion-weighed image (DWI) revealed a drastic increase in a MR signal from the central abscess portions (a pyonecrotic area), which is suggestive of decreased diffusion of water molecules. The measured diffusion ratios (MDRs) were significantly lower in the central abscess area (p < 0.005) than those in the capsule and white matter of the brain at all values of the diffuse factor b (500, 1000 sec/mm2); the capsule was better visualized at the DWI at b = 500 sec/mm2. In addition, MDRs were significantly different within the annular contrasting area of abscesses and glioblastomas, in the abscess/tissue capsule, and edema (p < 0.01). Proton spectroscopy of the central abscess area (pus) revealed succinate, acetate, alanine, peaks of lactate and amino acid. Perfusion MR study (bolus contrasting and estimation of the tissue parameters rCBV and MTT) has indicated that the central abscess in relation to the medulla is a decreased perfusion area; perfusion in the abscess capsule is close to that in the medulla in its characteristics, but medullary time in this area is shorter than that in brain tissues; perifocal edema is also characterized by hypoperfusion. The analysis of complex MRI study in patients with brain abscesses has demonstrated that diffuse-weighed MRI enhances diagnostic specificity, diagnoses the development of a pyonecrotic abscess center at early stages of capsule formation; MR spectroscopy is an additional method of differential diagnosis of brain abscess and processes of another nature whereas perfusion MRI provides additional information on medullary hemodynamic changes.

Adult↗

Eikenella corrodens as a cause of brain abscess.

A case of brain abscess due to Eikenella corrodens in a 67-year-old woman is reported. To our knowledge, this is the first case in which the causative organism has been isolated from the occipital lobe. E. corrodens may be the cause of apparently sterile brain abscesses encountered in neurosurgery and should be considered in the differential etiology of brain abscess.

Aged↗

Biological correlates of diffusivity in brain abscess.

Restricted diffusion in brain abscess is assumed to be due to a combination of inflammatory cells, necrotic debris, viscosity, and macromolecules present in the pus. We performed diffusion-weighted imaging (DWI) on 41 patients with proven brain abscesses (36 pyogenic and five tuberculous), and correlated the apparent diffusion coefficient (ADC) from the abscess cavity with viable cell density, viscosity, and extracellular-protein content quantified from the pus. On the basis of the correlation between cell density and ADC in animal tumor models and human tumors in the literature, we assumed that the restricted ADC represents the cellular portion in the abscess cavity. We calculated restricted and unrestricted lesion volumes, and modeled cell density over the restricted area with viable cell density per mm(3) obtained from the pus. The mean restricted ADC in the cavity (0.65 +/- 0.01 x 10(-3) mm(2)/s) correlated inversely with restricted cell density in both the pyogenic (r = -0.90, P = <0.05) and tuberculous (0.60 +/- 0.04 x 10(-3) mm(2)/s, r = -0.94, P = <0.05) abscesses. We conclude that viable cell density is the main biological parameter responsible for restricted diffusion in brain abscess, and it is not influenced by the etiological agents responsible for its causation.

Adolescent↗

Otogenic brain abscess--a case report.

Brain abscess is one of the life-threatening complications of otitis media. Mortality and morbidity have decreased with the advent of antibiotic therapy. More frequently encountered in cases of acute otitis media in the preantibiotic era, in recent years otogenic brain abscess was noticed almost only in patients of chronic otitis media with cholesteatoma. A case of brain abscess in a 49-year-old female was initially diagnosed as a headache. A high resolution computed tomography (HRCT) scan of the temporal bones later revealed that there were two abscesses over the right side temporal lobe. A modified radical mastoidectomy was performed. Cultures of the middle ear cholesteatoma later grew Pseudomonas aeruginosa and Strenotrophomonas maltophilia. Antibiotic therapy was carried on for three months postoperatively. The patient improved but retained a conductive hearing loss.

Brain Abscess↗

Brain abscess.

The epidemiology of brain abscess has changed with the increasing incidence of this infection in immunocompromised patients, particularly solid organ and bone marrow transplant recipients, and the decreasing incidence of brain abscess related to sinusitis and otitis. A number of new neuroimaging modalities, including single photon emission computed tomography, positron emission tomography, perfusion magnetic resonance imaging, and magnetic resonance spectroscopy, provide an initial noninvasive approach to diagnosis. The recommendations for the management of intracranial mass lesions in human immunodeficiency virus-infected individuals has changed as the incidence of toxoplasmic encephalitis has decreased with the use of trimethoprim-sulfamethoxazole prophylaxis. The epidemiology, pathogenesis, microbiology, clinical presentation, diagnosis, treatment and prognosis of brain abscess in the beginning of the 21 st century are provided in this review.

Brain↗

Brain abscess in children.

OBJECTIVES: Brain abscess is a serious life-threatening complication of several diseases. The objective of this study was to look at the clinical profile of patients, predisposing conditions, microbiology and outcome of children suffering from brain abscess. METHODS: Thirty children aged less than 15 years were reviewed. There were 15 males and 15 females. The mean age of presentation was 5.6+/-4.4 years. RESULTS: The duration of illness at the time of admission was 17.6+/-24.6 days. Typically patients presented with fever, vomiting, headache and seizures. The predisposing conditions found were cyanotic congenital heart disease in 11 (37%) of children, meningitis in 6 (20%), septicemia in 7 (23%) and no underlying cause was found in 5 (17%) children. The most common microbe in children with cyanotic congenital heart disease was of the Streptococcus milleri group (52%). Computerized tomography confirmed the diagnosis and the most common location of the abscess was the parietal lobe of the cerebral hemisphere. All abscesses were large, more than 2 cm in diameter and were aspirated surgically. Excision was performed in 6 children. Five children expired, one due to a intracranial bleeding and the others due to severe cerebral edema and tentorial herniation. Complications were seen in 20 children and 16 had sequelae, hemiparesis in 11 and seizure disorder in 5. CONCLUSION: Brain abscess is a serious infection with poor outcome if diagnosed late. Delayed surgical drainage has high morbidity and mortality. The threshold for diagnosis should be low, particularly in children with a predisposing condition like cyanotic congenital heart disease.

Adolescent↗

A rapidly enlarging nocardial brain abscess mimicking malignant glioma.

Nocardial brain abscesses are uncommon and are not preceded by clear infectious symptoms in most cases. Delayed identification of the bacteria is responsible for a high mortality rate. A 58-year-old afebrile woman was admitted to our hospital because of progressive right hemiparesis and aphasia. Magnetic resonance imaging (MRI) showed a single ring-enhanced lesion in the left frontal lobe. It was extremely difficult to establish the diagnosis of brain abscess, because the laboratory data provided little evidence of bacterial infection, (201)TlCl-scintigraphy revealed definite accumulation of thallium in the lesion, and follow-up MRI demonstrated rapid enlargement of the lesion. Total resection was performed because of the possibility of a malignant brain tumor, but brain abscess was finally diagnosed with histological examination. A nocardial species was detected through microscopic examination of the pus obtained at surgery, and this precise diagnosis of nocardial brain abscess in the early stage enabled the administration of appropriate antibiotics and the patient's quick recovery. Nocardial brain abscesses are often misdiagnosed as malignant brain tumors, and a definitive diagnosis may not be possible without detecting bacteria from the lesion. Total excision of the abscess can produce good results when the abscess is large and located superficially, but incomplete aspiration and drainage of a lesion is associated with a high chance of relapse.

Brain Abscess↗