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Biomedical subjects

F Shishido

Publications and source records attributed to F Shishido.

161 records · Page 9Linked to original sources

Decrease in cerebral metabolic rate of glucose after high-dose methotrexate in childhood acute lymphocytic leukemia.

We measured changes in the regional cerebral metabolic rate of glucose (rCMRGlu) using 18F-fluorodeoxyglucose and positron emission tomography for the assessment of neurotoxicity in childhood acute lymphocytic leukemia treated with high-dose methotrexate (HD-MTX) therapy. We studied 8 children with acute lymphocytic leukemia (mean age: 9.6 years) treated with HD-MTX (200 mg/kg or 2,000 mg/M2) therapy. CMRGlu after HD-MTX therapy was most reduced (40%) in the patient who had central nervous system leukemia and was treated with the largest total doses of both intrathecal MTX (IT-MTX) and HD-MTX. CMRGlu in the whole brain after HD-MTX therapy was reduced by an average of 21% (P less than 0.05). The reductions of CMRGlu in 8 patients were correlated with total doses of both IT-MTX (r = 0.717; P less than 0.05) and systemic HD-MTX (r = 0.784; P less than 0.05). CMRGlu of the cerebral cortex, especially the frontal and occipital cortex, was reduced more noticeably than that of the basal ganglia and white matter. We suggest that the measurement of changes in rCMRGlu after HD-MTX therapy is useful for detecting accumulated MTX neurotoxicity.

Adolescent↗

Intracranial plasma cell granuloma evaluated by positron emission tomography.

A 50-year-old farmer with plasma cell granuloma had PET scans showing marked accumulation of C-11 Met. The PET had superiority in imaging the existence and extent of the lesion and monitored therapeutic response as compared with CT and MR imaging. PET yields information on hemocirculatory and metabolic aspects of this rare disease.

Brain Diseases↗

Increased blood flow in human brain tumor after administration of angiotensin II: demonstration by PET.

To evaluate the changes of regional cerebral blood flow (CBF) in artificial hypertensive state, we investigated vascular responses to changes of arterial carbon dioxide tension (PCO2) and blood pressure by means of positron emission tomography (PET). The subjects were eight brain tumors which were histologically proven. We calculated CBF changes in hypercapnic and hypocapnic state, and then using those results, CBF changes in hypertensive state were corrected. Every patient represented a selective increase of tumor blood flow in hypertensive state induced by angiotensin II, demonstrating a loss of autoregulation in tumor. Our results suggested the possibility of enhancement of chemotherapy for brain tumors.

Adult↗

Changes of cerebral blood flow, and oxygen and glucose metabolism following radiochemotherapy of gliomas: a PET study.

The effects of radiochemotherapy on blood flow, blood volume, and consumption of oxygen and glucose in tumor tissue and normal brain were studied by positron emission tomography. Thirteen patients with cerebral gliomas were included, and they were examined before, during, and within approximately 1 month after the therapy. The 15O-labeled gas steady state inhalation and the 18F-fluorodeoxyglucose methods were used. After the therapy, glucose consumption and blood volume decreased (p less than 0.03) in the tumoral tissue. In the structurally (CT) normal gray matter, blood flow, blood volume, and oxygen consumption did not show any significant changes; oxygen extraction fraction, glucose consumption, and glucose extraction fraction, however, decreased significantly (p less than 0.05, less than 0.02, and less than 0.03, respectively).

Brain↗

Anatomical adjustments in brain positron emission tomography using CT images.

We have developed a method that allows us to place regions of interest on X-ray CT (XCT) images that are automatically adjusted to positron emission tomography (PET) images from the same patient. A face mask with landmarks was used during PET and XCT studies for matching slice positions between PET and XCT. Anatomical locations in different images of the same slice can be accurately adjusted using the landmarks and a video system. In our clinical experience misadjustments of the slice position are on the average less than 2 mm in axial distance and 1.0 degrees in slice angle. The method is easily applicable to any PET or XCT device.

Brain↗

Differentiation between cerebral embolism and thrombosis on sequential CT scans.

A differentiation between embolic versus thrombotic infarction has been attempted on the basis of sequential CT of 32 patients fulfilling our clinical and angiographic criteria for embolic or thrombotic cerebral infarction of the middle cerebral arterial distribution. In the 20 patients of the embolic group, a large homogeneous low attenuation area was seen in every case. In 18 of these 20 patients, the low attenuation area extended from the deep brain to the cortex. In the 12 patients of the thrombotic group, 10 had an inhomogeneous low attenuation area that did not involve the cortices in 8 cases. The frequency of hemorrhagic transformation in the embolic group was higher than in the thrombotic group. Computed tomography showed discrete areas of increased attenuation corresponding to an angiographically occluded artery in 7 of the 20 patients in the embolic group. Sequential CT can assist in differentiating between embolic and thrombotic infarction.

Aged↗

PET evaluation of spinal cord tumor using 11C-methionine.

A cervical cord tumor was examined with positron emission tomography using L-methyl-[11C]methionine. The radioactive tracer accumulated in the solid parts (but not in the associated cysts) of the neoplasm, which at histology was found to be an ependymoma.

Carbon Radioisotopes↗

Positron emission tomographic evaluations in the diagnosis and therapy of multifocal glioblastoma. Report of a pediatric case.

A pediatric case of multifocal glioblastoma is reported with special reference to positron emission tomography (PET) evaluations in the diagnosis and therapy. A PET scan employing 15O and 18F positron tracers disclosed a right thalamic lesion high in regional cerebral blood flow, cerebral blood volume and metabolic glucose rate, suggesting a malignant tumor. In contrast, a left frontal lesion with low regional cerebral blood flow, cerebral blood volume and metabolic glucose rate was presumed to be rather hypodynamic and hypometabolic. Histological examination of these isolated masses showed both to be glioblastomas, and, as predicted by the PET findings, there were minor histological distinctions. In repeated PET scans following postoperative combined radiochemotherapy, metabolic glucose rate values at the thalamic tumor decreased to about 50% the levels before therapy, although there was no distinguishable change in tumor size on the concurrent computerized tomography scans. This therapeutic efficacy on tumor metabolism was highly consistent with the period of clinical relief.

Brain Neoplasms↗

Demonstration of cerebral radiation injury with metabolic positron emission tomography images.

A 2-year-old girl with medulloblastoma who had postoperative radiotherapy and intrathecal administration of methotrexate is reported. Five months after radiation and chemotherapy, she developed involuntary movement. Positron emission tomography (PET) demonstrated that the metabolic rate of glucose was depressed markedly in the temporal and occipital lobes, indicative of metabolic depression induced by radiation. Prompt initiation of steroid therapy ameliorated the patient's neurological symptoms. Follow-up PET revealed an increase in 18F-fluorodeoxyglucose uptake in the entire brain, including temporal and occipital lesions. No areas with high accumulation of (11C-methyl)-L-methionine were detectable. We concluded that PET may be useful in establishing an early diagnosis of radiation injury of the brain and in monitoring metabolic changes following radiation in brain tumor patients.

Blood Glucose↗

Reduction in regional cerebral metabolic rate of oxygen during human aging.

To investigate changes in cerebral circulation and oxygen metabolism during aging, regional cerebral blood flow (rCBF), regional oxygen extraction fraction (rOEF), regional cerebral metabolic rate of oxygen (rCMRO2) and regional cerebral blood volume (rCBV) were measured using the 15O labelled gas inhalation technique and a multi-slice positron emission tomograph (PET) in 22 healthy volunteers, aged from 26 to 64 years old. The measurements were performed with subjects at rest, without sensory deprivation. The values of rCBF, rOEF, rCMRO2 and rCBV in more than 40 anatomical structures of the brain were evaluated by studying a large series of scans in each region of interest after the functional PET image had been anatomically identified using x-ray computed tomographic images corresponding to the PET. In mean gray values, only CMRO2 showed significant reduction with age. rCMRO2 significantly decreased with age only in the supratentrium, and much more in the left hemisphere. Especially remarkable was rCMRO2 reduction in the left caudate region. Both CBF and OEF were variable and less age-dependent. It was concluded that CMRO2 could be reflecting healthy brain aging most properly.

Adult↗

Analysis of bone scintigram data using a speech recognition reporting system.

A total of 649 bone scintigram reports were stored using a voice pattern recognition system in a general-purpose medium-sized computer ACOS-650, and bone scintigraphy carried out in this institute was examined by analysing these data. The results showed that the introduction of the system made it possible to analyse all the data quickly, whereas previously the amount of information that could be analysed was restricted because of the complexity of the data. The results also showed that the system would be useful for understanding the examinations carried out in the whole hospital as well as for analysing metastatic tumours and the numbers of patients receiving examinations. Furthermore, it would be helpful in the logical analysis of reports prepared by doctors.

Adolescent↗

Dynamic human glycogen and glucose metabolism detection utilizing in vivo 13C NMR.

The dynamic detection studies of glucose-glycogen metabolism of the human liver were performed with normal volunteers. A single tuned surface coil of 20-cm diameter was used for 13C (at 16.04 MHz). Natural glucose 100 g was administered for the natural abundance 13C MR dynamic study and 13C enriched (99%) 1-13C-D-glucose 1 g mixed 75 g glucose was administered to study the 13C enrichment effect. The total scan time of this dynamic study was 1 hr and each single scan time was 20 min. We did not use proton decoupling for the human 13C MR study. Localized (PRIME) proton shimming was performed and the shim value was less than 20 Hz. Glucose and glycogen spectra were clearly visible at 120 to 80 ppm and about 3 hr later both peaks almost disappeared. These data demonstrate that dynamic hepatic glucose-glycogen metabolism should be possible to detect which should allow for the direct diagnosis of hepatic glucose-glycogen metabolic disorders.

Carbon Isotopes↗

Analysis of bone scintigram data using speech recognition reporting system--data analysis with speech recognition system.

Five hundred eighty bone scintigram reports were stored using a voice pattern recognition system in a general-purpose, middle-sized computer (ACOS-650). Bone scintigraphy carried out in our institute was examined by analyzing these data. The results of the examination showed that the introduction of this system made it possible to analyze all the data quickly. Before the introduction of this system, the data able to be analyzed had been restricted because of their complexity. The results also showed that this system would be useful for understanding the examinations carried out in the whole hospital as well as for analyzing metastatic tumors and the number of patients receiving examinations. Furthermore, this system would be helpful in the logical analysis of reports prepared by doctors.

Bone and Bones↗

Remote effects in MCA territory ischemic infarction: a study of regional cerebral blood flow and oxygen metabolism using positron computed tomography and 15O labeled gases.

Using positron computed tomography (PCT) and the 15O labeled gas steady-state inhalation technique, regional cerebral blood flow (rCBF), cerebral oxygen consumption (rCMRO2), and oxygen extraction fraction (rOEF) can be measured quantitatively in humans. We quantitatively examined the relationship between focal ischemic lesions and intact regions as detected by X-ray CT in such areas as the territory of the contralateral middle cerebral artery (MCA), thalami, pons, and cerebellar hemispheres. Twenty-three PCT measurements in 13 patients with unilateral ischemic infarction in the MCA territory as detected by X-ray CT were performed. Remote effects from cerebral infarction of the MCA territory were observed in the contralateral MCA territory, ipsilateral thalamus, brainstem, and contralateral cerebellar hemisphere. Slight depression of rCBF and rCMRO2 was also observed in the contralateral thalamus and ipsilateral cerebral hemisphere; rOEF was normal in these areas. Though the depression of rCBF and rCMRO2 due to remote effects was detected in all periods, it was mildly observed 0 to 6 days after onset. The reduction of rCBF and rCMRO2 due to remote effects was less than the morphological as well as the functional threshold. The phenomenon is probably caused by neuronal deactivation, and the regions with depressed blood flow and metabolism may be in a "resting" state.

Adult↗