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Biomedical subjects

V J Lowe

Publications and source records attributed to V J Lowe.

At least 19 recordsLinked to original sources

Biodistribution and dosimetry of [(18)F]fluorodeoxyglucose labelled leukocytes in normal human subjects.

SUMMARY: This study was performed in order to assess [(18)F]fluorodeoxyglucose white blood cell ((18)F-FDG WBC) dosimetry in normal human subjects. Using previously reported methods, mixed cell suspensions of autologous leukocytes were prepared from four normal volunteers. Leukocytes were labelled in heparin-saline by incubation with (18)F-FDG at 37 degrees C for 20 min. After washing and resuspension, (18)F-FDG WBCs (225-315 MBq) were administered by intravenous injection. Whole-body imaging was performed at 0.5, 1, 2, 4 and 6 h using a GE Varicam with 511 keV collimation. Blood samples were obtained at corresponding times as well as fractionated urinary collection. Whole-body anterior and posterior images were used for calculation of organ dosimetry. Uptake of (18)F-FDG WBCs occurred predominantly within the reticulo-endothelial system. Plasma activity, urinary excretion (9.9+/-2.3% at 6 h), and brain uptake (1.7+/-0.4%) were consistent with partial elution of (18)F-FDG. Positron emission tomography imaging performed at 5-6 h after injection yielded good quality images of reticulo-endothelial uptake. Whole-body and organ dosimetry for (18)F-FDG WBCs in doses of 225-250 MBq are comparable with reported results for conventional doses of (111)In oxine labelled leukocytes. Further studies of (18)F-FDG WBC as an agent for positron emission tomography imaging of inflammatory disease appear warranted.

Fluorodeoxyglucose F18↗

The cost-effectiveness of fluorodeoxyglucose 18-F positron emission tomography in the N0 neck.

BACKGROUND: Although surgery and radiation are effective treatments of regional lymphatics for classification N0 head and neck squamous cell carcinoma (HNSCC) patients, both have morbidities that could be avoided in approximately 70% of patients without lymph node disease with better diagnostic information. 18-F fluoro-2-deoxyglucose positron emission tomography (FDG-PET) has shown promise in detecting subclinical lymph node disease, but its cost and availability have limited its use. Here, we sought to determine whether the use of FDG-PET was cost-effective as part of a treatment strategy for classification N0 HNSCC patients. METHODS: The cost-effectiveness of proceeding from classification of N0 by computed tomography to a PET scan was estimated using standard methods of economic evaluation. Costs were for a large, Midwestern university medical center. Probabilities were computed from a review of the literature. Utilities were obtained by a time-tradeoff method, and life expectancy was estimated using the Surveillance, Epidemiology, and End Results database. Outcomes measures were cost per year of life saved and cost per quality-adjusted life-year. RESULTS: Modified radical neck dissection was associated with the lowest morbidity (utility [u] = 0.93), and radical neck dissection plus radiation was associated with the highest (u = 0.68). Life expectancy was estimated to be 5.9 and 11.5 years for patients with and without lymph node disease, respectively. The incremental cost-effectiveness ratio for the PET strategy was $8718 per year of life saved, or $2505 per quality-adjusted life-year. CONCLUSIONS: A diagnostic and treatment strategy that proceeds from classification of N0 to a PET scan is cost-effective. Prospective studies that evaluate this strategy are important to assure that these simulation results are realized in clinical practice.

Adult↗

The use of lymphoscintigraphy and PET in the management of head and neck melanoma.

OBJECTIVES: Lymphoscintigraphy with sentinel node dissection and 18 fluoro-2-deoxyglucose positron emission tomography (PET) are being used independently in the management of many intermediate and thick melanomas of the head and neck. We report a series of patients with melanoma of the head and neck with Breslow depths greater than 1.0 mm and clinically negative regional nodes that were evaluated prospectively with PET and lymphoscintigraphy. STUDY DESIGN AND SETTING: Between July 1, 1998 and December 30, 2000 PET scans were obtained preoperatively on 18 patients undergoing resection of head and neck melanoma. Lymphoscintigraphy and sentinel node dissection was performed. Resection of the primary lesion was then carried out with adequate margins and the defects were reconstructed. RESULTS: Sentinel node(s) were found in 17/18 patients (94.4%); 5/18 (27.8%) of cases had metastases. PET detected nodal metastasis preoperatively in 3 patients (16.7%), one of which had a positive sentinel node dissection. CONCLUSION: PET and lymphoscintigraphy offer complimentary ways of evaluation for metastatic melanoma.

Aged↗

Initial evaluation of pulmonary abnormalities: CT-guided fine-needle aspiration biopsy and fluoride-18 fluorodeoxyglucose positron emission tomography correlation.

Fluoride-18 fluorodeoxyglucose positron emission tomography (FDG-PET) can evaluate patients with new pulmonary lesions. CT-guided fine-needle aspiration (FNA) biopsy is a well-described method in the diagnosis of pulmonary lesions. In order to correlate results from these testing modalities, retrospective findings from FNA biopsies of pulmonary lesions are compared to concurrent FDG-PET scans. Files of the Saint Louis University Hospital were retrospectively searched for patients with CT-guided FNA biopsies of the lung during a consecutive 3-yr period. Patients were collected, and corresponding FDG-PET scans were identified. Only new pulmonary lesions presenting for initial evaluation were included. Findings were correlated. Forty patients with a total number of 41 CT-guided FNA biopsies of the lung and thoracic cavity had corresponding FDG-PET scans. The combined positivity of the two testing modalities, i.e., cases where both FNA and FDG-PET scan were positive, yielded a sensitivity of 100% (37/37). Four patients had infectious/inflammatory processes by CT-guided FNA biopsy that were FDG-PET-positive for malignancy. CT-guided FNA biopsies with FDG-PET scans of pulmonary lesions are important, complementary diagnostic tools which can contribute significantly to the management and treatment of pulmonary disease. Diagn. Cytopathol. 2000;22:92-96.

Biopsy, Needle↗

Positron emission tomography scanning in the evaluation of hepatocellular carcinoma.

BACKGROUND/AIMS: 18F-fluorodeoxyglucose uptake allows estimation of glucose metabolism by tumor cells using positron emission tomography (PET). We evaluated the role of PET imaging in the diagnosis of hepatocellular carcinoma. METHODS: PET images were collected after intravenous injection of 8-12 mCi of 18F-FDG in 20 patients with hepatocellular carcinoma (HCC). PET tumor activity level was assessed on a scale of 1 to 4 compared to normal liver tissue. The PET score was compared with abdominal computerized tomography (CT) scan results and between tumors of different grades and differentiation. RESULTS: Of the 20 patients studied, 11 (55%) had positive PET scans (PET score: 3 or 4) while nine (45%) were negative (PET score: 1 or 2). CT scan was positive in 18 patients (90%) and negative in two (10%). PET, however, revealed metastases in three patients that were not seen on CT. On pathological review, well-differentiated and low-grade tumors had lower PET scores. Comparison of the well-differentiated with the moderately- and poorly-differentiated tumors revealed a statistically significant difference. No statistical significance was observed between the moderately- and poorly-differentiated tumors or between different tumor grades and PET scores. CONCLUSIONS: The sensitivity of PET in diagnosis of HCC was 55% compared to 90% for CT scanning, although only PET detected some tumors (including distant metastases). Well-differentiated and low tumor grades had lower activity on PET and correspondingly lower PET scores. PET imaging may help assess tumor differentiation and may be useful in the diagnosis and staging and prognostication of HCC as an adjunct to CT.

Adult↗

18F-FDG labelling of human leukocytes.

Radiolabelled leukocytes are useful for the imaging of inflammation and infection, and 18F-fluorodeoxyglucose (18F-FDG) is known to concentrate in metabolically active cells. We evaluated the feasibility of leukocyte labelling with 18F-FDG using ACD and heparin anticoagulants at 20 degrees C and 37 degrees C, with and without gentle mixing during incubation. With leukocytes (WBC) harvested from 20 ml blood, studies were performed using 18F-FDG in concentrations of 3.7-74 MBq (0.1-2.0 mCi). 18F-FDG WBC stability in platelet-poor plasma was assessed at 1-4 h. Satisfactory labelling efficiency was achieved with incubation in heparin-saline at 37 degrees C for 30 min (62.7+/-1.6%), and was further enhanced by mixing during incubation (78.1+/-3.9%). Cell labelling was predominantly of granulocytes (78.5+/-1.4%). 18F-FDG WBC was relatively stable in platelet-poor plasma for up to 4 h, and no cell staining was observed in viability studies using trypan blue. These results indicate the feasibility of leukocyte labelling with 18F-FDG, providing an approach that may be useful in PET imaging of inflammation and infection.

Anticoagulants↗

Surveillance for recurrent head and neck cancer using positron emission tomography.

PURPOSE: Earlier detection of head and neck cancer recurrence may improve survival. We evaluated the ability of [(18)F]fluorodeoxyglucose positron emission tomography (FDG-PET) to detect recurrence in a prospective trial using sequential PET scans. PATIENTS AND METHODS: Serial posttherapy FDG-PET was prospectively performed in 44 patients with stage III or IV head and neck cancer. PET was performed twice during the first posttreatment year (at 2 and 10 months after therapy) and thereafter as needed. After therapy, patients were grouped, based on tissue biopsies, into those who achieved a complete response (CR) and those who had residual disease (RD). Patients who achieved a CR were further grouped into those without evidence of disease and those who had recurrence by 1 year after completion of therapy. Disease status as determined by physical examination (PE), PET, and correlative imaging was compared. RESULTS: Eight patients were lost to follow-up and six had RD after therapy. Of the remaining 30 patients with a CR, 16 had recurrence in the first year after therapy. Five of these 16 patients had recurrence detected by PET only, four by PET and correlative imaging only, five by PE and PET only, and two by PE, correlative imaging, and PET. Only PET detected all recurrences in the first year. PET performed better than correlative imaging (P =.013) or PE (P =.002) in the detection of recurrence. CONCLUSION: PET can detect head and neck tumor recurrence when it may be undetectable by other clinical methods. FDG-PET permits highly accurate detection of head and neck cancer recurrence in the posttherapy period.

Antineoplastic Combined Chemotherapy Protocols↗

Radioguided surgical advancements for head and neck oncology.

Radioguided surgery is an innovative means by which a radionuclide is used to preoperatively image and intraoperatively visualize a structure of interest to the surgeon for excisional biopsy. This technology has allowed a cost-effective, highly specific means by which to locate a structure (usually a lymph node) and access it for pathologic analysis. The result of radioguided surgery is increased specificity in tissue obtained for biopsy, minimal access incisions, and the reduction of inpatient hospital utilization. Radioguided surgery should not be confused with radiosurgery, which is the stereotactic application of external beam radiation, usually for intracranial tumors.

Adenoma↗

Correlation of CT-guided fine-needle aspiration biopsy of the liver with fluoride-18 fluorodeoxyglucose positron emission tomography in the assessment of metastatic hepatic abnormalities.

Imaging studies using the fluoride-18 fluorodeoxyglucose positron emission tomography (FDG-PET) scan have recently become available for patient neoplasia evaluation. Fine-needle aspiration (FNA) biopsy is a well-described diagnostic method for hepatic lesion evaluation. Correlation of these testing modalities in hepatic abnormalities has not been previously reported. Pathology files of Saint Louis University Hospital were retrospectively searched for patients with FNA biopsy of the liver. Thirty-one patients with a total of 32 FNA biopsies of the liver with corresponding FDG-PET scans were identified. Twenty-five patients had 25 cases of metastatic malignant neoplasia diagnosed by FNA biopsy. Of these cases, all but one had an FDG-PET scan positive for malignancy, yielding a sensitivity of 96% (24/25) for the FDG-PET scan. Combined positivity of the two testing modalities yielded a sensitivity of 100% (24/24). Seven patients did not demonstrate neoplasia by FNA biopsy, and the FDG-PET scan was negative in 6 of these 7 cases. The FDG-PET scan is an important imaging technique and, combined with FNA biopsy, can provide reliable diagnostic results and assist in the guidance of oncologic patient management.

Biopsy, Needle↗

Primary and recurrent early stage laryngeal cancer: preliminary results of 2-[fluorine 18]fluoro-2-deoxy-D-glucose PET imaging.

PURPOSE: To evaluate the effectiveness of 2-[fluorine 18]fluoro-2-deoxy-D-glucose (FDG) positron emission tomography (PET) in the identification of early stage (T1-T2) primary and recurrent laryngeal cancer. MATERIALS AND METHODS: Twelve patients with T1 or T2 laryngeal cancer underwent imaging prospectively with PET. Seven patients had new disease, and five had recurrent disease. All patients underwent imaging prior to planned therapy and tissue biopsy. PET images were evaluated by using standardized uptake ratios and visual analysis. RESULTS: Histopathologic evidence of early stage cancer was documented in the 12 patients. One had a carcinoma in situ, nine had T1 tumors, and two had T2 tumors. Of the 12 patients, 10 had vocal cord tumors, one had a hypopharyngeal tumor, and one had a preepiglottic tumor. Eleven (92%) patients with early stage cancer had standardized uptake ratios indicative of malignancy (mean, 4.6; SD, 1.8; 95% CI, 1.2; range, 2.8-7.6). One had false-negative results (standardized uptake ratio = 2.3). Nine underwent CT, and results in the larynx were normal in seven and abnormal in two. CONCLUSION: FDG PET can be used to identify primary and recurrent early stage laryngeal cancer. It may be useful for follow-up after therapy.

Carcinoma in Situ↗

Positron emission tomography in lung cancer.

Reports on positron emission tomography have become more common in the oncology literature. After a short introduction to positron emission tomography, this review will look at the data relating to the use of this technology in the diagnosis, the staging, and the post-treatment evaluation of patients with lung cancer and will discuss its potential role in these evaluations.

Carcinoma, Bronchogenic↗

Current role of positron emission tomography in thoracic oncology.

Continuing advances in PET imaging have resulted in an improved ability to evaluate thoracic malignancies. Published reports demonstrate that PET provides accurate, non-invasive detection and staging of thoracic malignancy. Preliminary studies suggest that PET may also be able to assess the therapeutic response accurately. The studies investigating PET have been relatively small but have shown statistically significant advantages over conventional non-invasive techniques in accuracy and possibly even cost/benefit performance in thoracic malignancies.

Esophageal Neoplasms↗

Prospective investigation of positron emission tomography in lung nodules.

PURPOSE: Solitary pulmonary nodules (SPNs) are commonly identified by chest radiographs and computed tomography (CT). Biopsies are often performed to evaluate the nodules further. An accurate, noninvasive diagnostic test could avoid the morbidity and costs of invasive tissue sampling. We evaluated the ability of fluorine-18 deoxyglucose positron emission tomography (FDG-PET) to discriminate between benign and malignant pulmonary nodules in a prospective, multicenter trial. METHODS: Eighty-nine patients who had newly identified indeterminate SPNs on chest radiographs and CT were evaluated with FDG-PET. PET data were analyzed semiquantitatively by calculating standardized uptake values (SUVs) as an index of FDG accumulation and also by a visual scoring method. PET results were compared with pathology results. RESULTS: Sixty SPNs were malignant and 29 were benign. Using SUV data, PET had an overall sensitivity and specificity for detection of malignant nodules of 92% and 90%. Visual analysis provided a slightly higher, but not statistically significant, sensitivity of 98% and lower specificity of 69%. For SPNs < or = 1.5 cm (34 of 89), the sensitivity and specificity of SUV and visual analysis were 80% and 95% and 100% and 74%, respectively. CONCLUSION: FDG-PET can accurately characterize indeterminate SPNs. PET imaging provides a noninvasive method to evaluate indeterminate SPNs, which can reduce the need for invasive tissue biopsy.

Aged↗

Evaluation of chemotherapy response in patients with advanced head and neck cancer using [F-18]fluorodeoxyglucose positron emission tomography.

BACKGROUND: [F-18]Fluorodeoxyglucose (FDG)-positron emission tomography (PET) can measure the metabolic activity of tissues; FDG-PET may be able to predict response to chemotherapy by identifying changes in tumor metabolism. Measurement of response to treatment may help improve survival in the management of advanced head and neck cancer. We evaluated this particular use of FDG-PET in patients participating in a neoadjuvant organ-preservation protocol using taxol and carboplatin and compared pathologic response after chemotherapy with changes in tumor metabolism measured by FDG-PET. METHODS: Serial FDG-PET studies (n = 56) were performed in patients (n = 28) with stage III/IV head and neck cancer participating in a neoadjuvant organ-preservation protocol. The FDG-PET studies were performed before and after chemotherapy. All patients had tissue biopsies before and after chemotherapy. Patients were classified as pathologic complete response (PCR) or residual disease (RD) based on tissue biopsies. Visual analysis of PET scans was performed to identify patients with complete response by PET, and these findings were compared with pathology results. Metabolic changes were also evaluated using standardized uptake ratios (SUR) of FDG. RESULTS: The sensitivity and specificity of PET for residual cancer after therapy was 90% (19/21) and 83% (5/6), respectively. Two patients had initially negative biopsies and positive PET studies for persistent disease. Pathology review and rebiospy led to confirmation of the PET results in these cases, giving a sensitivity of 90% for initial tissue biopsy. CONCLUSIONS: In this preliminary analysis, FDG-PET was accurate in classifying response to chemotherapy in most patients. Fluorodeoxyglucose-PET may identify residual viable tumor when it is otherwise undetectable.

Animals↗

Pulmonary abnormalities and PET data analysis: a retrospective study.

PURPOSE: To assess methods of standard uptake ratio (SUR) calculation with 2-deoxy-2-[fluorine-18]fluoro-D-glucose (FDG) positron emission tomography (PET) in indeterminate focal pulmonary abnormalities. MATERIALS AND METHODS: One hundred ninety-seven adult patients with indeterminate pulmonary abnormalities had complete FDG PET data, consistent methods of data acquisition, and definitive diagnosis with tissue biopsy or negative 2-year follow-up findings. PET studies were evaluated by using SURs calculated with the average or maximum region-of-interest pixel value in the numerator and with weight, lean body mass, or body surface area in the denominator. RESULTS: One hundred twenty malignant lesions and 77 benign processes were identified. Receiver operating characteristic (ROC) curve areas were statistically significantly larger with the average rather than the maximum pixel value in the calculation of the SUR for any of the three denominators (P < or = .05). SURs calculated with weight versus lean body mass versus body surface area in the denominator showed no statistically significant difference in ROC curve areas. CONCLUSION: SURs determined by using average pixel values provide statistically significant improvement in ROC curve areas over those determined by using maximum pixel values. Weight, lean body mass, and body surface area in the denominator of the SUR calculation provide equivalent ROC curve areas and are therefore equivalent in accuracy in this population.

Adult↗

Positron emission tomography in the pretreatment evaluation and follow-up of non-small cell lung cancer patients treated with radiotherapy: preliminary findings.

The purpose of this study was to prospectively evaluate positron emission tomography (PET) for delineating lung cancers preradiotherapy and to assess PET's ability to distinguish residual tumor from scarring following radiotherapy. Between April 1991 and October 1992, 20 patients underwent 18fluoro-2-deoxyglucose (18FDG) PET scanning of the chest prior to radiotherapy for lung cancer. Tumor volumes on chest x-ray (CXR) and computerized tomography (CT) scan were correlated with abnormalities on PET scans. Follow-up PET studies were compared to postradiotherapy chest x-ray and/or CT scans, and correlated with clinical outcome. Six of seven well-demarcated tumors showed increased uptake of 18FDG correlating with the CT/CXR tumor volume. Twelve poorly demarcated tumors demonstrated increased 18FDG uptake. In seven of 12, the CT/CXR abnormality correlated with changes on PET scan. In three of 12, CT/CXR abnormalities were larger than on PET, whereas in two of 12, abnormalities on PET extended outside the region of CT/CXR changes. The 13th patient in the poorly demarcated category had diffuse carcinoma in situ at the surgical margin that demonstrates increased 18FDG uptake, but was not visible by CT/CXR. Of 12 patients with follow-up studies, all had changes on CXR and/or CT that made it difficult to assess response. Four of 12 had a complete response by PET; all remain locally controlled. The remaining eight patients had either a partial response (n = 6) or no response (n = 2) by PET. Four of these eight patients remain alive and well 11-24 months after therapy. 18FDG PET may be useful for delineation of lung cancer volumes that are poorly defined by CXR and/or CT scan. The value of PET in differentiating tumor from fibrosis after radiotherapy for lung cancer remains to be established.

Carcinoma in Situ↗

Lung tumor growth correlates with glucose metabolism measured by fluoride-18 fluorodeoxyglucose positron emission tomography.

BACKGROUND: The growth rate, or doubling time, of radiographically indeterminate pulmonary abnormalities is an important determinant of malignancy. Prospective calculation of doubling time, however, delays diagnosis and treatment. Positron emission tomography (PET) using the glucose analogue fluoride-18 fluorodeoxyglucose (FDG) measures the enhanced glucose uptake characteristic of neoplastic cells. We postulated that if FDG activity correlates with doubling time, then PET may allow prompt diagnosis of lung cancer. METHODS: From March 1992 to July 1993, all patients with indeterminate focal pulmonary abnormalities were eligible for FDG PET imaging. In 53 patients, serial chest radiographs or computed tomograms were available and doubling time was computed. The FDG activity within the lesion was expressed as a standardized uptake ratio. RESULTS: The mean standardized uptake ratio (+/- SD) was 5.9 +/- 2.7 in 34 patients with cancer, versus 2.0 +/- 1.7 in 19 with benign disease (p < 0.001). Using a criterion of standardized uptake ratio 2.5 or greater for malignancy, the accuracy of PET was 92% (49 of 53). The standardized uptake ratio was significantly correlated with doubling time (r = -0.89; p = 0.002). CONCLUSION: These data suggest a direct relation between tumor growth and FDG uptake in lung cancer. The technique of FDG PET demonstrates exceptional accuracy and may permit prompt diagnosis of lung cancer.

Aged↗