Meningeal inflammation in neonatal gram-negative bacteremia.
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Biomedical subjects
Publications and source records attributed to M S Edwards.
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Ganglion cysts that compress the common peroneal nerve frequently arise from the proximal tibiofibular joint. In a 60-year-old man, the nerve was compressed by a cyst that arose from the lateral meniscus and extended around the posterolateral aspect of the fibular neck. The origin and extent of the lesion, which could not be determined by clinical examination, was seen through magnetic resonance imaging. Cysts arising from the lateral meniscus should be considered in the differential diagnosis of compression of the common peroneal nerve.
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PURPOSE: We retrospectively evaluated relapse of medulloblastoma after low- or high-dose craniospinal radiotherapy, and after conventional or hyperfractionated posterior fossa irradiation. METHODS AND MATERIALS: Ninety-two pediatric patients were treated postoperatively since 1970 at the University of California, San Francisco. Until 1989, we employed conventional fractionation with low (< or = 30 Gy) or high-dose craniospinal fields and low-dose (< or = 56 Gy) posterior fossa boosts. Recently, hyperfractionation delivered low- or high-dose to the craniospinal axis and high-dose to the posterior fossa. Most patients treated after 1979 received chemotherapy. RESULTS: Median follow-up was 70 months. Five-year disease-free survival was 36% (22% for poor-risk vs. 59% for good-risk patients). Five-year overall survival was 52% (43% for poor vs. 68% for good-risk). Neither the dose to the posterior fossa nor the craniospinal axis was statistically related to recurrence. Failure in the posterior fossa occurred despite boosts greater than 56 Gy. Females, over the age of 6 years, had significantly better relapse-free survival than males of the same age. Six of the 54 patients who relapsed were long-term survivors. CONCLUSIONS: Low-dose craniospinal radiotherapy, where the majority of patients received chemotherapy, was not associated with increased failure. High-dose posterior fossa hyperfractionation did not improve control. Long-term survival was noted in a number of patients after relapse. We recommend 60 Gy or greater with conventional fractions to the primary area, and continued study of low-dose craniospinal irradiation with adjuvant chemotherapy.
PURPOSE: To report the early results of hyperfractionated craniospinal radiation therapy with and without adjuvant chemotherapy for primitive neuroectodermal brain tumors (PNETs). METHODS AND MATERIALS: Thirty-nine patients with PNETs were classified as good-risk (23) or poor-risk (16), based on postoperative magnetic resonance imaging and a cytological examination of cerebrospinal fluid. All patients received hyperfractionated craniospinal radiation therapy; poor-risk patients subsequently received adjuvant chemotherapy with cisplatin, lomustine, and vincristine. The first six patients received 72 Gy to the primary tumor site and 24 Gy to the rest of the craniospinal axis. Subsequent patients received 30 Gy to the craniospinal axis. RESULTS: During a median of 1.9 years of follow-up (range 4 months to 3.5 years), there have been ten treatment failures in 39 patients, five in the good-risk group and five in the poor-risk group. Three failures occurred in the primary tumor site in areas that received 72 Gy; two were in poor-risk patients with residual disease after surgery; one was in a good-risk patient who had a gross total resection. Three failures occurred in the spine and craniospinal fluid of patients treated with 24 Gy. Four occurred in areas treated to 30 Gy; two of these were in areas thought to be undertreated because of treatment planning errors. Adjuvant chemotherapy was difficult to give to poor-risk patients because of poor bone marrow recovery, even with relatively low doses of lomustine (75 mg/m2). CONCLUSION: We think a dose of 24 Gy to the craniospinal axis is inappropriate because three of the six patients who received it had treatment failures outside the primary site. Whether 30 Gy is an appropriate dose for good-risk patients is still unclear. Even after a dose of 30 Gy, chemotherapy was difficult to give; this potentially limits the impact of adjuvant chemotherapy in poor-risk patients. Further follow-up is necessary to evaluate the use of hyperfractionated radiation therapy alone or with chemotherapy in patients with PNETs.
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Serious infections caused by type V group B streptococci (GBS) are increasing. The requirements for antibody, complement, and neutrophil receptors in the killing of 12 clinical type V GBS isolates were investigated. When tested at concentrations of 33%, 5% and 1%, a human serum pool promoted neutrophil-mediated killing of the 12 isolates at a mean of 83% +/- 9%, 77% +/- 17%, and 14% +/- 28%, respectively. Addition of heated immune rabbit serum to the 5% or 1% pool increased killing significantly (97% +/- 2% or 80% +/- 15%, respectively, P < .01). With hypogammaglobulinemic serum, complement-mediated killing ranged from 74% +/- 2% for a strain designated resistant to 98% +/- 1% for a strain designated sensitive. Neutrophil-mediated killing was not altered by use of human sera deficient in C4 or C7 but was reduced significantly with C3-deficient serum (P < .05). Maximal inhibition of neutrophil-mediated killing was observed by monoclonal antibody blockade of complement receptor (CR) 3 alone or in combination with CR1 or Fc receptor III. Thus, C3 is required and specific antibody promotes neutrophil-mediated killing of type V GBS. Neutrophil CR3 and either CR1 or Fc receptor III optimize phagocytosis. A number of host responses function in concert to effect optimal neutrophil-mediated killing of clinical isolates of type V GBS.
Antibody and complement are essential to host defense against infection with coagulase-negative staphylococci in the neonate. To evaluate the influence of antibody on C3 deposition, we compared the C3 fragments deposited on coagulase-negative staphylococci after opsonization with normal human serum or with hypogammaglobulinemic serum. Using sodium dodecyl sulfate-polyacrylamide gel electrophoresis and Western blot (immunoblot) analysis, the degradation products of C3 were less apparent at 1 and 2 min after opsonization with hypo- and agammaglobulinemic serum than those from normal human serum. This finding suggested that antibody contained in normal human serum contributes to efficient C3 deposition in the early phases of opsonization. There was no clear difference in C3 deposition when slime-producing strains were compared with non-slime-producing strains. The addition of intravenous immunoglobulin to hypogammaglobulinemic serum and serum from premature neonates rendered C3 deposition comparable to that seen with normal human serum. The data from these experiments suggest that the addition of immunoglobulin G may improve host defense against coagulase-negative staphylococci in the hypogammaglobulinemic premature neonate by enhancing C3 deposition, thus promoting opsonophagocytosis of these bacteria.
Group B streptococci are the major cause of sepsis and fatal shock in neonates in the United States. Although a number of clinical features have been associated with enhanced severity of disease, the role of soluble immune complex formation in group B streptococcal infection has not been evaluated. We determined the frequency with which circulating immune complexes occurred in 16 infants with nonfatal type III, group B streptococcal meningitis, using an immunoglobulin-specific C1q enzyme immunoassay. Ten healthy, age-matched infants served as a control group. Elevated levels of immunoglobulin M (IgM)-containing immune complexes were present in the sera of four (25%) patients with group B streptococcal meningitis. Group B antigen was detected in precipitated IgM immune complexes from each of these four infants by competitive enzyme-linked immunosorbent assay. In addition, IgG-containing immune complexes were present in 56% of sick and 60% of control infants. Group B antigen was demonstrated in the serum of a sick neonate containing only IgG immune complexes but not in controls. Our findings indicate that a subset of infants with type III, group B streptococcal meningitis develop IgM immune complexes containing group B-specific antigen, and these may persist for up to 3 months in some patients.
PURPOSE: To analyze the magnetic resonance (MR) imaging, clinical, and pathologic features of radiation-induced telangiectasia of the brain. MATERIALS AND METHODS: The clinical and radiation therapy records were reviewed of 20 patients who developed focal hypointense lesions on T2-weighted MR images obtained after radiation therapy of the central nervous system. Pathologic material was reviewed in six patients. RESULTS: Eleven patients had solitary lesions, and nine had multiple foci on MR images. Fourteen of the 20 patients were less than 20 years old. The appearance ranged from small hypointense foci to larger regions of acute hemorrhage. Hematomas occurred at the site of a previously identified focus of T2 shortening in five patients. Pathologic findings included ectatic thin-walled vessels surrounded by hemosiderin and gliosis, with minimal evidence of necrosis. CONCLUSION: Radiation-induced telangiectasia in the brain results in varying amounts of hemorrhage and, occasionally, parenchymal hematomas, and may appear similar to cryptic vascular malformations on T2-weighted MR images.
The purpose of this study was to investigate the efficacy and practicality of magnetic resonance angiography (MRA) in evaluating pediatric cerebrovascular disorders. A retrospective evaluation was performed of MR angiograms in 20 pediatric patients with cerebrovascular pathology. When appropriate, comparisons were made with duplex ultrasonography or conventional catheter angiography. MRA accurately assessed the patency of carotid reanastomoses in 8 babies who had previously undergone extracorporeal membrane oxygenation (ECMO). In 6 patients with moyamoya syndrome, MRA accurately evaluated stenotic intracranial carotid and circle of Willis arteries and progressive enlargement of the superficial temporal and middle cerebral arteries after revascularization procedures, and thus obviated the need for sequential angiograms. Thrombi and emboli were identified in 4 of 5 patients with symptoms and imaging evidence of an acute stroke. Two-dimensional time-of-flight MR venograms, acquired in both axial and coronal planes, were useful for preoperative venous mapping in a patient with an occipital encephalocele and detecting venoocclusive disease. MRA provided diagnostically useful information in a spectrum of pediatric cerebrovascular disorders. It can be used as the initial vascular imaging modality for patients with imaging evidence of acute cerebrovascular event, to evaluate progression of chronic vasoocclusive disease, to evaluate vessel patency following intracranial revascularization surgery, and for visualization of the venous circulation.
Since the advent of magnetic resonance (MR) imaging, angiographically occult or 'cryptic' vascular malformations (CVMs) have been detected with increasing frequency in the pediatric population. The natural history of these lesions is uncertain and treatment remains controversial. We respectively reviewed the presentation, radiology, treatment and outcome of 37 pediatric patients with CVMs seen at our institution between 1982 and 1992. MR imaging was diagnostic in all patients studied. Angiography was negative in 20 of 21 patients studied, while 1 teenage girl was found to have a venous malformation. Total surgical excision was the treatment goal in all patients presenting with symptomatic CVMs. There has been no surgical mortality. Perioperative complications occurred in one third of the patients but quickly resolved in most cases. Only 2 patients with multiple CVMs, including brainstem lesions, who presented with progressive neurologic deficits were clearly worse following surgery. Six of seven patients with radiation-induced CVMs have remained asymptomatic with close radiographic follow-up, while 1 patient with a hemorrhage has required surgical evacuation. We conclude that CVMs occur more commonly in the pediatric population than previously assumed. Patients presenting with seizures or hemorrhage should undergo craniotomy with the goal of complete excision. Radiation therapy plays no role in the treatment of these lesions and may actually result in their formation. Careful clinical and radiological follow-up is critical to assess the completeness of surgical removal and to evaluate progression of lesions in patients with multiple or radiation-induced CVMs treated conservatively.
Six children with a history of isolated facial nerve dysfunction or dizziness and nausea were treated for brain-stem glioma between 1984 and 1992. Computerized tomography and/or magnetic resonance (MR) imaging showed a focal, uniformly enhancing mass involving the facial nerve nucleus of the pons. All patients underwent biopsy; the histological diagnosis was juvenile pilocytic astrocytoma in five cases. In the remaining case the biopsy was nondiagnostic, although the surgeon believed that the lesion was a glioma. Postoperatively, five patients underwent conventional focal megavoltage radiation therapy (180 to 200 cGy/day) over a period of 5 1/2 weeks to a total dose of approximately 5400 cGy. One child's family refused radiation therapy; she remained well and stable for 4 years, despite persistent facial weakness, and was eventually lost to follow-up review. Four irradiation-treated patients had complete resolution of their tumors on MR images and have had no evidence of neuropsychological or neuroendocrinological deficits during 4 1/2 to 8 years of follow-up evaluation. Patients whose neuroradiological studies show a lesion resembling those in this series should undergo biopsy and, if the histology of a low-grade tumor (in particular, a juvenile pilocytic astrocytoma) is confirmed, should then receive focal radiation therapy with conventional megavoltage dosages.
Meningiomas arising in the first two decades of life are uncommon and their characteristics are controversial. Some authors believe meningiomas in younger patients occur in different locations, have more malignant histological features, and have a worse prognosis than those in adults. To address this controversy, the authors retrospectively reviewed 23 cases of meningiomas in patients under 21 years of age at diagnosis who were operated on at the University of Turin (1948 to 1990) or at the University of California, San Francisco (1970 to 1989). These tumors represented 2.9% of all tumors in this age group and 1.8% of all meningiomas during the study period at the two institutions. There were 14 males and nine females. The mean age at surgery was 13.3 +/- 5.6 years; nine cases occurred in the first decade and 14 in the second. The most common neurological symptoms were a focal neurological deficit (33%) and seizures (25%). Seventy percent of the tumors were supratentorial. A gross total resection was performed in 60% of the cases. Histologically, the majority (74%) of the tumors were meningothelial or mixed. An increased number of mitoses was observed in 33% of the tumors, focal necrosis in 29%, and invasion of adjacent brain in 14%; however, none of the tumors was classified as a Grade III (anaplastic) meningioma. All patients are alive without evidence of recurrent disease 3 to 22 years (mean +/- standard deviation: 10 +/- 7.3 years) after surgery. This study confirms the rarity of meningiomas of the first two decades of life and the absence of the female predominance associated with meningiomas in adults. The location and histological features of these tumors are similar to those in adults; they have a low recurrence rate, and the outcome and survival rate are excellent.
Little is known about the risk of developing multicentric disease in patients with juvenile pilocytic astrocytoma (JPA), and even less about its prognosis. Only five cases have been reported. Between 1986 and 1992, the authors treated 90 patients with either primary or recurrent JPA, 11 of whom developed multicentric spread. Ten patients had primary tumors in the hypothalamic region, eight were under 4 years of age at initial diagnosis, all had initially undergone a subtotal resection or biopsy, and 10 received postoperative multiagent chemotherapy or irradiation for residual disease. Multicentric spread was discovered immediately to 108 months after initial diagnosis; nine patients were asymptomatic at the time. Most patients received chemotherapy for the multicentric disease, which was found throughout the craniospinal axis. During 21 to 148 months of follow-up monitoring, seven patients had stabilization or regression of multicentric disease and four died. Patients with hypothalamic region tumors were 23 times more likely to develop multicentric spread than were those with primary tumors located elsewhere (p < 0.001). Based on this review, it is concluded that multicentric spread of JPA occurs more frequently than was previously recognized. In patients with subtotally resected JPA and several years of follow-up review via magnetic resonance imaging, the incidence of recurrence in a site different from the original was 12%. Patients with subtotally resected JPA in the hypothalamic region should be considered to be at high risk for developing multicentric spread. Chemotherapy appears useful in stabilizing multicentric disease. Earlier detection and intervention may result in longer disease-free survival in patients with multicentric spread of JPA.
The case of a young girl with a pericallosal venous malformation associated with multiple cryptic vascular malformations (CVM's) is described. The presenting cryptic malformation, which hemorrhaged, was completely excised, but the venous malformation was not. Routine follow-up magnetic resonance images obtained over the past 9 years have documented the development of multiple new cryptic malformations along the radicles of the venous malformation. Magnetic resonance imaging and cerebral angiography revealed venous outflow obstruction at the junction of the venous malformation with the straight sinus. The association of CVM's with anomalous venous drainage patterns and the role of venous hypertension in the pathogenesis of cryptic malformations are discussed. This case suggests that CVM's associated with a venous malformation may recur and new ones may develop if the venous malformation is not excised, particularly if venous hypertension is also present. The likelihood of a surgical cure in these patients may depend on complete excision of both anomalies, which is rarely feasible because of the potentially devastating results of resecting a venous malformation. Alternative treatments for patients with both types of lesions are discussed.