965 resultados para 18F-FDG PET
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Introdução – A ausência de um ciclotrão para produção da 2-[18F]Flúor-2-deoxi-D-glucose (18F-FDG) é, actualmente, uma realidade para a maior parte dos centros onde se realizam exames de Tomografia por Emissão de Positrões (TEP), sendo importante garantir a qualidade deste radiofármaco desde o momento da sua síntese até à administração ao doente. O objectivo do estudo é demonstrar a influência dos parâmetros temperatura, pH, concentração radioactiva (CR) e tempo na pureza radioquímica da 18F-FDG. Metodologia – Analisou-se o pH e a pureza radioquímica [por cromatografia em camada fina (CCF)] de seis amostras de 18F-FDG com diferentes CR e em diferentes tempos e temperaturas. Resultados – Registou-se um aumento da percentagem de 18F- aquando do aumento do tempo. Contudo, os resultados não comprovam que a diluição das amostras diminui a degradação do 18F-FDG. No entanto, comparando apenas as amostras diluídas (185 e 740 MBq/ml), observa-se uma relação positiva entre a CR e a percentagem de 18F-. Verificou-se ainda um aumento da percentagem de 18F- nas temperaturas mais elevadas. Conclusão – Sugere-se a diluição das amostras de 18F-FDG e que o tempo de armazenamento não seja muito longo. As amostras devem ainda encontrar-se a temperatura e pH estáveis.
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Mestrado em Medicina Nuclear - Ramo de especialização: Tomografia por Emissão de Positrões
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A delimitação precisa é crucial na RT. TC: informação anatómica, pobre na definição do envolvimento ganglionar; alguns tumores são praticamente invisíveis (p.e., esófago, fígado, baço e glândulas salivares), mapa de densidades electrónicas essencial para o cálculo. 18F-FDG PET: 1) mapeamento metabólico que permite alterar volumes alvo: BTV, elimina incertezas no GTV; 2) vantagens: estadiamento tumoral, predição da resposta tumoral, avaliação da resposta tumoral, detecção precoce da doença recorrente. PET/TC: maior precisão, menor variabilidade inter e intra-observador, menor erro no reposicionamento, adaptação à RT, ainda em Investigação Clínica.
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Magdeburg, Univ., Med. Fak., Diss., 2013
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A 67-year-old woman was referred for staging of a mucosa-associated lymphoid tumor lymphoma involving the left conjunctiva. CT scan had shown paravertebral and pelvic masses, and a breast nodule. FDG PET/CT demonstrated moderately increased uptake in the left ocular conjunctiva and confirmed the paravertebral and pelvic masses and the breast nodule. Moreover, abnormal FDG uptake was shown in 2 breast nodules, the flank, the gluteus maximus, and the gastric cardia. The patient received 6 cycles of rituximab-bendamustine chemotherapy with a complete clinical and metabolic response at the 6-month follow-up PET/CT and remained relapse-free without visual acuity problem after a 36-month follow-up.
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Aquest estudi té com a objectiu avaluar l’impacte de la PET-TC amb 18F-FDG en la planificació radioteràpica (PRT) en pacients amb carcinoma pulmonar, per la possible modificació en l’estadificació tumoral. Es van estudiar 33 pacients amb carcinoma de pulmó als que es va practicar una TC diagnòstica i una PET-TC d’estadificació i PRT. Es va comparar l’estadificació mitjançant ambdues tècniques i es van comptabilitzar els pacients exclosos per RT curativa. Finalment, la 18F-FDG PET-TC va permetre una millor estadificació dels pacients candidats a RT, excloent aquells no candidats per metàstasis no sospitades o per disminució de l’estadiatge.
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Historically, it has been difficult to monitor the acute impact of anticancer therapies on hematopoietic organs on a whole-body scale. Deeper understanding of the effect of treatments on bone marrow would be of great potential value in the rational design of intensive treatment regimens. 3'-deoxy-3'-(18)F-fluorothymidine ((18)F-FLT) is a functional radiotracer used to study cellular proliferation. It is trapped in cells in proportion to thymidine-kinase 1 enzyme expression, which is upregulated during DNA synthesis. This study investigates the potential of (18)F-FLT to monitor acute effects of chemotherapy on cellular proliferation and its recovery in bone marrow, spleen, and liver during treatment with 2 different chemotherapy regimens.
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The application of support vector machine classification (SVM) to combined information from magnetic resonance imaging (MRI) and [F18]fluorodeoxyglucose positron emission tomography (FDG-PET) has been shown to improve detection and differentiation of Alzheimer's disease dementia (AD) and frontotemporal lobar degeneration. To validate this approach for the most frequent dementia syndrome AD, and to test its applicability to multicenter data, we randomly extracted FDG-PET and MRI data of 28 AD patients and 28 healthy control subjects from the database provided by the Alzheimer's Disease Neuroimaging Initiative (ADNI) and compared them to data of 21 patients with AD and 13 control subjects from our own Leipzig cohort. SVM classification using combined volume-of-interest information from FDG-PET and MRI based on comprehensive quantitative meta-analyses investigating dementia syndromes revealed a higher discrimination accuracy in comparison to single modality classification. For the ADNI dataset accuracy rates of up to 88% and for the Leipzig cohort of up to 100% were obtained. Classifiers trained on the ADNI data discriminated the Leipzig cohorts with an accuracy of 91%. In conclusion, our results suggest SVM classification based on quantitative meta-analyses of multicenter data as a valid method for individual AD diagnosis. Furthermore, combining imaging information from MRI and FDG-PET might substantially improve the accuracy of AD diagnosis.
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Objectif : Les épanchements pleuraux sont fréquents chez les patients porteurs de cancer et déterminer s'ils sont de nature tumorale ou non relève d'une grande importance clinique, particulièrement pour le groupe des carcinomes pulmonaires NON à petites cellules (NSCLC). Le PET/CT s'est montré d'une grande utilité et est actuellement indiscutablement reconnu comme outils nécessaire dans la prise en charge et notamment la stadification et le suivi des cancers, et particulièrement des cancers pulmonaires. Sa capacité à pouvoir distinguer les épanchements pleuraux malins des épanchements pleuraux non tumoraux, « bénins » n'est pas précisément connue et n'a pas jusqu'à présent été investiguée de manière approfondie. Matériel et méthodes : Nous avons examiné la captation du FDG (indice SUVmax) des épanchements pleuraux de 50 PET/CT réalisés chez 47 patients (29 hommes, 18 femmes, 60±16 ans) avec épanchements pleuraux et cancer connu (24 NSCLC, 7 lymphomes, 5 cancer du sein, 4 GIST, 3 mésothéliomes, 2 cancer ORL, 2 tératomes malins, 1 carcinome colorectal, 1 carcinome oesophagien, 1 mélanome). Ces résultats ont été corrélés aux résultats des examens cytopathologiques réalisés après ponction de ces mêmes épanchements dans un intervalle médian de 21 jours (interquartile range -3 to 23). L'examen du liquide d'épanchement comportait la mesure du pH, la distribution relative des différents éléments cellulaires (macrophages, neutrophils, éosinophiles, basophiles, lymphocytes, plasmocytes), la numération cellulaire et bien entendu présence de cellules tumorales. Résultats : Parmis les épanchements, 17 étaient malins (34%) (6 NSCLC, 5 lymphomes, 2 cancers mammaires, 2 mésothéliomes, 2 tératomes malins). Les SUV étaient plus élevés dans les épanchements malins que dans les épanchements bénins [3.7 (95%IC 1.8-5.6) vs. 1.7 g/ml (1.5-1.9), p = 0.001], avec une corrélation entre les épanchements malins et le SUV (coefficient de Spearman ρ = 0.50, p = 0.001). Il n'a pas été observé de corrélation entre aucun des autres paramètres cyptopathologiques ou radiologiques analysé (aire sous la courbe ROC 0.83 ± 0.06). En utilisant un seuil du SUV de 2.2-mg/l, 12 examens PET/CT étaient interprétés comme positifs and 38 comme négatifs avec une sensibilité et une spécificité, valeur prédictive positive et négative de 53%, 91%, 75% and 79% respectivement. Concernant le groupe des NSCLC seulement (n = 24), aire sous la courbe ROC était de 0.95 ± 0.04. Sept examens étaient considérés comme positifs et 17 comme négatifs avec une sensibilité, une spécificité, valeur prédictive positive et négative de 83%, 89%, 71 et 94% respectivement. Conclusion : Le PET/CT peut aider à différencier la nature bénigne ou maligne des épanchements avec une haute spécificité chez les patients avec tumeur connue, en particulier dans un contexte de carcinome NON à petites cellules.
Value of PET/CT versus contrast-enhanced CT in identifying chest wall invasion (T3) by NSCLC [B-671]
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Purpose: To determine the diagnostic value of 18F-FDG PET/CT versus contrastenhanced CT in identifying chest wall invasion by NSCLC. Methods and Materials: The primary selection criterion was a peripheral tumor of any size with contact to the chest wall. A total of 25 patients with pathologically proven NSCLC satisfied these criteria. Chest wall invasion was interpreted upon PET/CT when a frank costal or intercostal 18F-FDG uptake was identified with or without concomitant morphologic alterations. On the other hand, the existence of periosteal rib reaction/erosion, chest wall thickening or obliteration of the pleural fat layer either separately or combined were considered essential diagnostic criteria for disease extension into the chest wall upon contrast-enhanced CT. The results were correlated with the final histological analysis. Results: Among the studied cohort, 13/25 (52%) patients had chest wall invasion consistent with T3 disease. Both PET/CT and contrast-enhanced CT successfully identified 12/13 (92%) of these patients. The single false-negative result was due to parietal pleural invasion. On the other hand, one false-positive result was encountered by PET/CT in a dyspneic patient; whereas, CT analysis revealed false-positive results in six patients. In these patients, periosteal rib reaction (n = 2) or asymmetric enlargement of adjacent chest wall muscles (n = 1) were identified along with an obliterated pleural fat layer (n = 6). The sensitivity, specificity, and accuracy of PET/CT and contrast-enhanced CT were 92, 91 and 92% versus 92, 50 and 72%. Conclusion: 18F-FDG PET/CT is an accurate diagnostic modality in identifying.
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RATIONALE AND OBJECTIVES: To systematically review and meta-analyze published data about the diagnostic accuracy of fluorine-18-fluorodeoxyglucose ((18)F-FDG) positron emission tomography (PET) and PET/computed tomography (CT) in the differential diagnosis between malignant and benign pleural lesions. METHODS AND MATERIALS: A comprehensive literature search of studies published through June 2013 regarding the diagnostic performance of (18)F-FDG-PET and PET/CT in the differential diagnosis of pleural lesions was carried out. All retrieved studies were reviewed and qualitatively analyzed. Pooled sensitivity, specificity, positive and negative likelihood ratio (LR+ and LR-) and diagnostic odds ratio (DOR) of (18)F-FDG-PET or PET/CT in the differential diagnosis of pleural lesions on a per-patient-based analysis were calculated. The area under the summary receiver operating characteristic curve (AUC) was calculated to measure the accuracy of these methods. Subanalyses considering device used (PET or PET/CT) were performed. RESULTS: Sixteen studies including 745 patients were included in the systematic review. The meta-analysis of 11 selected studies provided the following results: sensitivity 95% (95% confidence interval [95%CI]: 92-97%), specificity 82% (95%CI: 76-88%), LR+ 5.3 (95%CI: 2.4-11.8), LR- 0.09 (95%CI: 0.05-0.14), DOR 74 (95%CI: 34-161). The AUC was 0.95. No significant improvement of the diagnostic accuracy considering PET/CT studies only was found. CONCLUSIONS: (18)F-FDG-PET and PET/CT demonstrated to be accurate diagnostic imaging methods in the differential diagnosis between malignant and benign pleural lesions; nevertheless, possible sources of false-negative and false-positive results should be kept in mind.
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AIM: Contribution of 3-phase 18F-fluorocholine PET/CT in suspected prostate cancer recurrence at early rise of PSA. PATIENTS, METHODS: Retrospective analysis was performed in 47 patients after initial treatment with radiotherapy (n=30) or surgery (n=17). Following CT, 10 minutes list-mode PET acquisition was done over the prostate bed after injection of 300 MBq of 18F-fluorocholine. Three timeframes of 3 minutes each were reconstructed for analysis. All patients underwent subsequent whole body PET/CT. Delayed pelvic PET/CT was obtained in 36 patients. PET/CT was interpreted visually by two observers and SUVmax determined for suspicious lesions. Biopsies were obtained from 13 patients. RESULTS: Biopsies confirmed the presence of cancer in 11 of 13 patients with positive PET for a total of 15 local recurrences in which average SUVmax increased during 14 minutes post injection and marginally decreased in delayed scanning. Conversely inguinal lymph nodes with mild to moderate metabolic activity on PET showed a clearly different pattern with decreasing SUVmax on dynamic images. Three-phase PET/CT contributed to the diagnostic assessment of 10 of 47 patients with biological evidence of recurrence of cancer. It notably allowed the discrimination of confounding blood pool or urinary activity from suspicious hyperactivities. PET/CT was positive in all patients with PSA>or=2 ng/ml (n=34) and in 4/13 patients presenting PSA values<2 ng/ml. CONCLUSION: 18F-fluorocholine 3-phase PET/CT showed a progressively increasing SUVmax in biopsy confirmed cancer lesions up to 14 minutes post injection while decreasing in inguinal lymph nodes interpreted as benign. Furthermore, it was very useful in differentiating local recurrences from confounding blood pool and urinary activity.
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BACKGROUND: Posttransplant lymphoproliferative disease (PTLD) is, aside skin cancer, the most common malignancy occurring after solid organ transplant in adults. Fluorodeoxyglucose (FDG) positron emission tomography (PET) has proved useful in the management of lymphomas. METHODS: We report our experience with the use of FDG-PET inline with computed tomography (CT) scanning in the management of four transplant recipients with histologically confirmed PTLD, including three monomorphic PTLDs and one polymorphic PTLD. RESULTS: FDG-PET/CT scan at diagnosis showed increased FDG uptake in all examined PTLD lesions, and the disease was upstaged on the basis of FDG-PET/CT scan results over conventional CT scanning in one patient. At the end of treatment, PET/CT scans no longer demonstrated FDG uptake in the original PTLD lesions in all patients. Complete remission of disease persisted for at least 1 year after diagnosis in all. CONCLUSIONS: Our results strongly support that FDG-PET scanning is highly specific for diagnosis and follow-up of PTLD. The clinical relevance of including FDG-PET/CT scanning in the management of PTLD should be evaluated in a larger prospective cohort study.