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Advances in PET imaging of brain tumors: a referring physician's perspective.

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OBJECTIVE To highlight the most recent advances in PET imaging of brain tumors, aiming at expanding the referring physician's knowledge in the field, the sine qua non for translating PET into the practice of neuro-oncology. RESULTS The role of PET with amino acid tracers in the setting of brain

Pharmacokinetic studies of amino acid analogues of 2-nitroimidazole, new hypoxic cell radiosensitizers.

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A series of new analogues of 2-nitroimidazole has been synthesized by inserting various amino acids at 1-position through an amide bond. The ethyl esters of N-alpha-[(2-nitro-1-imidazolyl)acetyl]-L-phenylalanine and N-alpha-[2-nitro-1-imidazolyl)acetyl]-L-tyrosine were found to be the most effective

PET with radiolabeled aminoacid.

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Since the clinical introduction of FDG, neuroimaging has been the first area of PET application in oncology. Later, while FDG-PET became progressively a key imaging modality in the management of the majority of malignancies outside the brain, its neuro-oncologic indications faced some limitations

New PET radiopharmaceuticals beyond FDG for brain tumor imaging.

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Brain tumors have a relatively high incidence (>14/100000 people/year) and represent a major cause of death in the population. The direct and indirect costs of brain tumors are high in the developed countries (5.2 bn EUR/year in the EU; 4.46 bn USD/year in the US). A combination of recent

European research trends in nuclear medicine.

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Written by associate editors of the Annals of Nuclear Medicine, this invited review article is intended to offer our readers a condensed global view on the high-quality research work that has been published in Europe last year. We have divided this article into five sections. The first three

Effects of physical activity and other types of stress on catecholamine metabolism in various animal species.

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The investigation of catecholamine (CA) metabolism in animals subjected to various types of stress (different pain syndromes; cranial trauma; immobilization; cooling) and physical exercise shows considerable similarity among species in the sequence of changes, leading from the activation to the

Neuroprotection Targeting Protein Misfolding on Chronic Cerebral Hypoperfusion in the Context of Metabolic Syndrome.

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Metabolic syndrome (MetS) is a cluster of risk factors that lead to microvascular dysfunction and chronic cerebral hypoperfusion (CCH). Long-standing reduction in oxygen and energy supply leads to brain hypoxia and protein misfolding, thereby linking CCH to Alzheimer's disease. Protein misfolding

Approaches to PET Imaging of Glioblastoma.

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Glioblastoma multiforme (GBM) is the deadliest type of brain tumor, affecting approximately three in 100,000 adults annually. Positron emission tomography (PET) imaging provides an important non-invasive method of measuring biochemically specific targets at GBM lesions. These powerful data can

Applications of positron emission tomography in neuro-oncology: a clinical approach.

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The field of neuro-oncology is concerned with some of the most challenging and difficult to treat conditions in medicine. Despite modern therapies patients diagnosed with primary brain tumours often have a poor prognosis. Imaging can play an important role in evaluating the disease status of such
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