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Hans C Steinert

Publications and source records attributed to Hans C Steinert.

At least 19 recordsLinked to original sources

Single-photon emission computed tomography/computed tomographyfor sentinel node mapping in breast cancer.

Accurate lymph node staging is essential for the prognosis and treatment in patients with cancer. The sentinel lymph node is the first node to which lymphatic drainage and metastasis from the primary tumor occurs. In malignant melanoma and breast cancer, the sentinel lymph node detection and biopsy already have been implemented into clinical practice. Currently, 2 techniques are used to identify the sentinel lymph nodes: technetium-99m-labeled colloid and blue dye. After peritumoral injection, the material migrates through the lymphatics to the first lymph nodes draining the tumor. The precise anatomic localization of the sentinel lymph nodes is important for minimal invasive surgery and to avoid incomplete removal of the sentinel lymph nodes. All sentinel lymph nodes should be resected to achieve a complete nodal staging. In the inguinal or low-axillary nodal stations, planar scintigraphic images mostly are adequate for the localization of the sentinel lymph nodes. However, in the regions of the head and neck, the chest, and the pelvis, an imaging method for the more precise anatomic localization of the sentinel lymph nodes preoperatively is highly desired. Recently, integrated single-photon emission computed tomography and computed tomography (SPECT/CT) scanners have become available. Initial reports suggest that integrated SPECT/CT might have an additional value in sentinel lymph node scintigraphy in head and neck tumors and tumors draining to the pelvic lymph nodes. We evaluated the clinical use of integrated SPECT/CT in the identification of the sentinel lymph nodes in patients with operable breast cancer. In our experience, localization and identification of sentinel lymph nodes was more accurate by integrated SPECT/CT imaging in comparison with planar images and SPECT images, respectively. In this report, the experiences of sentinel lymph node imaging with SPECT/CT are summarized.

Breast Neoplasms↗

Integrated PET/CT: current applications and future directions.

For the past 5 years, combined positron emission tomography (PET) and computed tomography (CT), or PET/CT, has grown because the PET portion provides information that is very different from that obtainable with other imaging modalities. However, the paucity of anatomic landmarks on PET images makes a consistent "hardware fusion" to anatomic cross-sectional data extremely useful. Clinical experience indicates a single direction: Addition of CT to PET improves specificity foremost, but also sensitivity, and the addition of PET to CT adds sensitivity and specificity in tumor imaging. Thus, PET/CT is a more accurate test than either of its individual components and is probably also better than side-by-side viewing of images from both modalities. The synergistic advantage of adding CT is that the attenuation correction needed for PET can also be derived from the CT data, an advantage not obtainable by integrating PET and magnetic resonance imaging. This makes PET/CT 25%-30% faster than PET alone with standard attenuation-correction methods, leading to higher patient throughput and a more comfortable examination, which typically last 30 minutes or less. Fluorodeoxyglucose (FDG) PET/CT appears to provide relevant information in the staging and therapy monitoring of many tumors, including lung carcinoma, mesothelioma, colorectal cancer, lymphoma, melanoma, and many others, with the notable exception of prostatic cancer. For prostatic cancer, choline derivatives may become useful radiopharmaceuticals. The published literature on the applications of FDG PET/CT in oncology is still limited, but several well-designed studies have demonstrated the benefits of PET/CT.

Forecasting↗

Etiology of solitary extrapulmonary positron emission tomography and computed tomography findings in patients with lung cancer.

PURPOSE: The aim of this prospective study was to assess the incidence and the nature of solitary extrapulmonary [18F] fluorodeoxyglucose (FDG) accumulations in patients with non-small-cell lung cancer (NSCLC) staged with integrated positron emission tomography and computed tomography (PET/CT) and to evaluate the impact on management. PATIENTS AND METHODS: A total of 350 patients with NSCLC underwent whole-body PET/CT imaging. All solitary extrapulmonary FDG accumulations were evaluated by histopathology, further imaging, or clinical follow-up. RESULTS: PET/CT imaging revealed extrapulmonary lesions in 110 patients. In 72 patients (21%), solitary lesions were present. A diagnosis was obtained in 69 of these patients, including 37 (54%) with solitary metastases and 32 (46%) with lesions unrelated to the lung primary. Histopathologic examinations of these 32 lesions revealed a second clinically unsuspected malignancy or a recurrence of a previous diagnosed carcinoma in six patients (19%) and a benign tumor or inflammatory lesion in 26 patients (81%). The six malignancies consisted of carcinoma of the breast in two patients, and carcinoma of the orbit, esophagus, prostate, and non-Hodgkin's lymphoma in one patient each. Benign tumors and inflammatory lesions included eight colon adenomas, four Warthin's tumors, one granuloma of the lower jaw, one adenoma of the thyroid gland, one compensatory muscle activity due to vocal chord palsy, two occurrences of arthritis, three occurrences of reflux esophagitis, two occurrences of pancreatitis, two occurrences of diverticulitis, one hemorrhoidal inflammation, and one rib fracture. CONCLUSION: Solitary extrapulmonary FDG accumulations in patients with newly diagnosed lung cancer should be analyzed critically for correct staging and optimal therapy, given that up to half of the lesions may represent unrelated malignancies or benign disease.

Adult↗

The second international conference on sentinel node biopsy in mucosal head and neck cancer.

BACKGROUND: The Second International Conference on Sentinel Node Biopsy in Mucosal Head and Neck Cancer was hosted by the Department of Otorhinolaryngology, Head and Neck Surgery of the University Hospital in Zurich, Switzerland, from September 12 to 13, 2003. The aims of this conference were to present the results of validation studies and to achieve a consensus on methodological requirements. METHODS: More than 80 delegates from 20 countries attended the conference. The presented validation studies were summarized and compared with the literature. Consensus was achieved concerning requirements for lymphatic mapping and histopathologic work-up. RESULTS: Twenty centers presented results on 379 patients with cN0 disease. Sentinel nodes were identified in 366 (97%) of 379. Of these 366, 103 (29%) were positive for occult metastasis, and 263 (71%) were negative. Of those 263 patients, 11 patients (4%) showed nodal disease not revealed by the sentinel lymph node biopsy (SNB). The negative predictive value of a negative sentinel node for the remaining neck was 96%. The consensus conference resulted in the use of a radiotracer, lymphoscintigraphy, and a handheld gamma probe for lymphatic mapping as minimal requirements. The use of conventional hematoxylin and eosin staining and immunohistochemistry for cytokeratin is mandatory. Step-sectioning of the entire node at intervals of 150 mum is recommended. CONCLUSIONS: The conference attracted delegates from all over the world, thus underscoring the high interest in the topic. With regard to the presented data and the data from the literature, SNB for early oral and oropharyngeal cancer is sufficiently validated. The consensus conference resulted in the definition of minimal methodological requirements for accurate SNB.

Head and Neck Neoplasms↗

Diffuse idiopathic neuroendocrine cell hyperplasia causing severe airway obstruction in a patient with a carcinoid tumor.

We report a 57-year-old female with severe airway obstruction who underwent resection of a tumor of unknown dignity during lung volume reduction surgery. The nodule consisted of a well-differentiated neuroendocrine tumor (carcinoid), and severe chronic obstructive lung disease was due to diffuse idiopathic pulmonary neuroendocrine cell hyperplasia, a very rare cause of obliterative bronchiolitis. Radionuclide ablative therapy of the neuroendocrine tissue was considered but not found to be feasible due to a low lung/background ratio of the radiotracer.

Airway Obstruction↗

PET in lung cancer.

Accurate tumor staging is essential for choosing the appropriate treatment strategy in patients with lung cancer. It has already been shown that FDG-PET is highly accurate in classifying lung nodules as benign or malignant. Integrated PET-CT enables the exact matching of focal abnormalities on PET to anatomic structures on CT. PET-CT is superior in diagnostic accuracy for T staging and differentiation between tumor and peritumoral atelectasis. PET has also proved to be a very effective staging modality for mediastinal nodal staging. It has been demonstrated to assist mediastinoscopy to reveal additional mediastinal disease in 6% of patients. PET detects unexpected extrathoracic metastases in 10-20% of patients and changes therapeutic management in about 20% of patients. A very high accuracy of FDG-PET in distinguishing recurrent disease from benign treatment effects has been shown. Patients should be evaluated after a minimum of 2 months after completion of therapy. FDG-PET can be clinically used for selecting biopsy sites. At our institution PET-CT has become the standard imaging modality for staging patients with lung cancer. Although not all tumors take up FDG, other radiotracers are being studied to expand the utility of PET-CT. PET-CT offers many opportunities for the patients, the clinicians, and the researchers. PET-CT has the potential to become the most efficient oncologic examination in the near future.

Carcinoma, Non-Small-Cell Lung↗

Management and costs of treating lung cancer patients in a university hospital.

BACKGROUND: New diagnostic tools and emerging medications have significantly changed the existing medical treatment options for lung cancer over the last 5 years. However, the increase in healthcare costs in all developed societies has put the more economical treatments on centre stage. OBJECTIVE: To examine the patterns and costs of lung cancer management at a Swiss University hospital at which there is a focus on interdisciplinary treatment. PATIENTS AND METHODS: All patients encountered during 1998 at the University Hospital of Zurich (USZ) with any diagnosis of lung cancer were selected for this retrospective study. Medical and sociodemographic data were collected by medical chart review for a period beginning with the first contact and ending with the last follow-up examination up to 30 months afterwards. Costs were calculated by assessing all resources used by each patient, multiplied by a uniform average cost factor. Results are in euros at 1999 prices. RESULTS: The sample included 118 patients (72% male) with a mean age of 64.2 years (SD 9.8, range 34-85 years) and a mean smoking history of 45 pack-years (SD 31.8, range 0-13 pack-years). Eighty-nine percent of all patients showed histology of non-small cell lung cancer (NSCLC), whereas 11% showed small cell lung cancer (SCLC). Of the NSCLC patients, 27% were classified as stage I, 14% as stage II, 19% as stage IIIA, 11% as stage IIIB and 26% as stage IV disease. The overall survival rate after 1 year was 55% and after 2 years was 29%. Gender and health insurance status were not associated with overall survival. The median length of hospitalisation during the first year of treatment was 14 days (range 0-112 days). For the entire patient sample, the mean cost per patient was 19,408 euros (median 14,691 euros, range 1821-80,020 euros), 71% of which was due to the hospitalisation costs. The mean cost per NSCLC patient was 19,212 euros (median 14,511 euros, range 1821-80,020 euros) and for SCLC patients it was 20,992 euros (median 15,367 euros, range 5282-51,840 euros). CONCLUSION: This is the first study attempting to estimate the hospital cost of treatment for lung cancer patients in Switzerland and central Europe. The major part of the total cost was due to hospitalisation costs. Patients with advanced stages of lung cancer show the highest cost, mainly due to the costs of chemotherapy. We found that the distribution of total cost is asymmetric: a small number of patients with an excessively long hospital stay cause very high costs.

Adult↗

Why most PET of lung and head-and-neck cancer will be PET/CT.

Experience in our and other institutions with PET/CT imaging of lung and head and neck cancers has shown that this new modality has higher specificity and sensitivity than PET alone and in certain settings even when compared to PET and CT viewed side by side. The largest experience exists with non-small cell lung cancer (NSCLC), in which it has been demonstrated that PET/CT is superior to PET and CT in T and in N staging. Superiority in M staging has yet to be demonstrated. CT contrast media enhancement is probably only necessary when a substantial mediastinal tumor component is present. In such cases, delineation of tumor from vascular structures is relevant. In ENT tumors, PET/CT also appears to be superior to PET, and probably also to PET and CT viewed side by side. Early information suggests that contrast media enhancement for staging may not be required, but the data available is still limited. In both settings, it is interesting to note that in a number of patients, second metachronous tumors are discovered with PET/CT, mainly localized in the GI tract.

Carcinoma, Non-Small-Cell Lung↗

Radiation treatment planning with an integrated positron emission and computer tomography (PET/CT): a feasibility study.

PURPOSE: To investigate the usefulness of hardware coregistered PET/CT images for target volume definition. METHODS AND MATERIALS: Thirty-nine patients presenting with various solid tumors were investigated. CT and a FDG-PET were obtained in treatment position in an integrated PET/CT scanner, and coregistered images were used for treatment planning. First, volume delineation was performed on the CT data. In a second step, the corresponding PET data were used as an overlay to the CT data to define the target volume. Delineation was done independently by two investigators. RESULTS: Coregistered PET/CT showed good fusion accuracy. The GTV increased by 25% or more because of PET in 17% of cases with head-and-neck (2/12) and lung cancer (1/6), and in 33% (7/21) in cancer of the pelvis. The GTV was reduced > or =25% in 33% of patients with head-and-neck cancer (4/12), in 67% with lung cancer (4/6), and 19% with cancer of the pelvis (4/21). Overall, in 56% (22/39) of cases, GTV delineation was changed significantly if information from metabolic imaging was used in the planning process. The modification of the GTV translated into altered PTV changes exceeding >20% in 46% (18/39) of cases. With PET, volume delineation variability between two independent oncologists decreased from a mean volume difference of 25.7 cm(3) to 9.2 cm(3) associated with a reduction of the standard deviation from 38.3 cm(3) to 13.3 cm(3) (p = 0.02). In 16% of cases, PET/CT revealed distant metastasies, changing the treatment strategy from curative to palliative. CONCLUSION: Integrated PET/CT for treatment planning for three-dimensional conformal radiation therapy improves the standardization of volume delineation compared with that of CT alone. PET/CT has the potential for reducing the risk for geographic misses, to minimize the dose of ionizing radiation applied to non-target organs, and to change the current practice to three-dimensional conformal radiation therapy planning by taking into account the metabolic and biologic features of cancer. The impact on treatment outcome remains to be demonstrated.

Adult↗

Staging of non-small-cell lung cancer with integrated positron-emission tomography and computed tomography.

BACKGROUND: We compared the diagnostic accuracy of integrated positron-emission tomography (PET) and computed tomography (CT) with that of CT alone, that of PET alone, and that of conventional visual correlation of PET and CT in determining the stage of disease in non-small-cell lung cancer. METHODS: In a prospective study, integrated PET-CT was performed in 50 patients with proven or suspected non-small-cell lung cancer. CT and PET alone, visually correlated PET and CT, and integrated PET-CT were evaluated separately, and a tumor-node-metastasis (TNM) stage was assigned on the basis of image analysis. Nodal stations were identified according to the mapping system of the American Thoracic Society. The standard of reference was histopathological assessment of tumor stage and node stage. Extrathoracic metastases were confirmed histopathologically or by at least one other imaging method. A paired sign test was used to compare integrated PET-CT with the other imaging methods. RESULTS: Integrated PET-CT provided additional information in 20 of 49 patients (41 percent), beyond that provided by conventional visual correlation of PET and CT. Integrated PET-CT had better diagnostic accuracy than the other imaging methods. Tumor staging was significantly more accurate with integrated PET-CT than with CT alone (P=0.001), PET alone (P<0.001), or visual correlation of PET and CT (P=0.013); node staging was also significantly more accurate with integrated PET-CT than with PET alone (P=0.013). In metastasis staging, integrated PET-CT increased the diagnostic certainty in two of eight patients. CONCLUSIONS: Integrated PET-CT improves the diagnostic accuracy of the staging of non-small-cell lung cancer.

Aged↗

Impact of whole-body 18F-FDG PET on staging and managing patients for radiation therapy.

UNLABELLED: Whole-body PET with (18)F-FDG has proven to be a very effective imaging modality for staging of malignant tumors. This study was performed to evaluate the impact of (18)F-FDG PET on staging and managing patients for radiation therapy. METHODS: The treatment records of 202 consecutive patients (98 male, 104 female; mean age, 56.9 y; age range, 8-91 y) with different malignant tumors were reviewed. Radiation therapy was intended for all patients. The diagnoses were head and neck tumors (n = 55), gynecologic tumors (n = 28), breast cancer (n = 28), lung cancer (n = 26), malignant lymphomas (n = 24), tumors of the gastrointestinal tract (n = 18), and others (n = 23). Whole-body PET was performed before radiation therapy. The alteration of PET on each patient's staging and management decisions for radiation therapy were determined. RESULTS: For 55 of 202 patients (27%), PET results changed the patients' management in radiation therapy. In 18 cases (9%), PET resulted in a cancellation of radiation therapy because of the detection of previously unknown distant metastases (8 patients), additional lymph node metastases (9 patients), residual tumor (6 patients), or the exclusion of active disease (2 patients). In 6 patients, >1 incremental reason was found for cancellation. In 21 PET examinations (10%), PET results changed the intention of radiation treatment (curative or palliative). The radiation dose was changed in 25 cases (12%). A change of radiation volume was necessary in 12 patients (6%). CONCLUSION: The results of this study show that (18)F-FDG PET has a major impact on the management of patients for radiation therapy, influencing both the stage and the management in 27% of patients.

Adolescent↗

Whole-body (18)F-FDG PET improves the management of patients with small cell lung cancer.

UNLABELLED: The aim of this study was to evaluate the impact of whole-body (18)F-FDG PET on staging and managing patients with small cell lung cancer (SCLC). METHODS: The treatment records of 42 consecutive patients (27 men, 15 women; mean age, 62 y; age range, 45-83 y) with SCLC were reviewed. Whole-body (18)F-FDG PET was performed for initial staging in 24 patients and for restaging after chemotherapy or radiation treatment in 20 patients. Two patients of the initial staging group were restaged with PET after therapy. PET findings were correlated with clinical and radiologic findings (CT of the chest and abdomen, bone scan, and CT or MRI of the brain). The impact of PET on staging and management decisions was determined. RESULTS: For 12 of 42 patients (29%), PET results changed the patient's management. In 8 patients (19%), PET resulted in a change of radiation therapy because of the detection of previously unknown tumor foci. Adjuvant radiation therapy was cancelled in 3 patients. A change of radiation field and volume was necessary in 5 patients. In 1 patient, PET results excluded extensive disease, which permitted surgical resection of the tumor. Chemotherapy was discontinued in 2 patients and restarted in 1 patient on the basis of the PET findings. In 5 patients (12%), PET excluded malignancy as the suspicious lesions found with conventional cross-sectional imaging did not take up (18)F-FDG. CONCLUSION: The results of this study show that (18)F-FDG PET has a major impact on the management of patients with SCLC, influencing both the stage and the management in 29% of patients. PET is a highly valuable tool for accurate target definition of radiation treatment by reducing the probability of overlooking involved areas.

Aged↗

Follow-up of women with breast cancer: comparison between MRI and FDG PET.

The aim of this study was to compare MRI of the breast with (18)F-fluoro-deoxy-glucose (FDG) positron emission tomography (PET) in patients with suspected local or regional breast cancer recurrence or suspected contralateral breast cancer. Thirty-two patients (mean age 57.2 years, age range 32-76 years) with suspected loco-regional recurrence ( n=19), chest wall recurrence ( n=5), and suspected secondary tumor of the contralateral breast ( n=8) underwent MRI of the breast and FDG PET of the whole body and breast region. Cytology/histology ( n=17) or a clinical follow-up examination ( n=15) with additional imaging served as the standard of reference. A McNemar test was performed to compare PET and MRI, and kappa was determined to quantify agreement of both methods. Sensitivity was 79 and 100%, specificity was 94 and 72%, and accuracy was 88 and 84% for MRI and PET, respectively. Additional metastases outside the field of view of MRI were found in PET in 5 patients. In this study both imaging methods had comparable accuracy. The detection of distant metastases with whole-body PET imaging can influence patient management.

Breast Neoplasms↗

Detection of extramedullary infiltrates in acute myelogenous leukemia with whole-body positron emission tomography and 2-deoxy-2-[18F]-fluoro-D-glucose.

This work reports on a female patient with acute myelogenous leukemia (AML) FAB M 5a with initial extramedullary leukemia (EML) in skin, breast, and synovia. A year after diagnosis she developed a histologically proven isolated recurrence of the EML in the right upper ankle. The bone marrow was still in complete remission. Conventional x-ray, magnetic resonance imaging (MRI), bone scintigraphy, and 2-deoxy-2-[18F]-fluoro-D-glucose whole-body positron emission tomography (FDG-PET) were performed. All images showed alterations in the lower leg. Shortly after, an isolated relapse of the AML was diagnosed in the right elbow. FDG-PET demonstrated this lesion as well as an unknown lesion in the subcutis due to EML. In the course of her illness, the patient underwent one more PET examination for therapy control. The present observations suggest that whole-body FDG-PET may be valuable for the detection of EML and for the assessment of chemotherapeutic effects on identified lesions.

Journal Article↗

FDG PET for mucosal malignant melanoma of the head and neck.

OBJECTIVES/HYPOTHESIS: To evaluate imaging findings using positron emission tomography (PET) and 18F-fluorodeoxyglucose (FDG) in mucosal malignant melanoma (MMM) of the head and neck. STUDY DESIGN: Retrospective evaluation. METHODS: Eighteen PET examinations were performed for initial staging and/or follow-up in 10 patients with MMM. Medical records of 6 male and 4 female patients (age range, 43--81 y; mean, 67 y) were reviewed retrospectively with regard to the patients' history, symptoms, and clinical course. Primary melanoma elsewhere in the body was excluded at the time of diagnosis. RESULTS: All MMM were visible in staging PET examinations, but FDG uptake depended on lesion size and anatomic site. Big lesions with a nodular growth, as seen in pathologic specimens, were better visible compared with lesions with a more superficial spread within the mucous membranes. Lesions in the anterior part of the nasal cavity were more difficult to detect than those in the posterior sinonasal complex because of possible interference with nonspecific uptake in muscles of the mouth and pronounced appearance of the skin when imaging was performed using filtered back projection without attenuation correction. CONCLUSION: We found that MMM of the head and neck can be visualized using FDG PET. Furthermore, locoregional and distant metastases can be evaluated much like those of cutaneous malignant melanoma. Therefore, PET may be suitable for the staging and/or restaging of these patients. Further studies have to elucidate the potential role of FDG PET in patient management.

Adult↗

Recurrent laryngeal nerve palsy in patients with lung cancer: detection with PET-CT image fusion -- report of six cases.

Positron emission tomography (PET) with fluorodeoxyglucose (FDG) was performed for preoperative staging of lung cancer. In six of 184 patients, there was an intense FDG accumulation in the lower anterior neck. Fusion of PET and computed tomographic images revealed that the focal FDG uptake was localized in the internal laryngeal muscles. This finding was a result of compensatory laryngeal muscle activation caused by contralateral recurrent laryngeal nerve palsy due to direct nerve invasion by lung cancer of the left mediastinum or lung apices. The knowledge of this pitfall is important to avoid false-positive PET results.

Adult↗

PET diagnostic accuracy: improvement with in-line PET-CT system: initial results.

The authors describe the initial application for tumor staging with an in-line system with a positron emission tomographic (PET) scanner and a multi-detector row helical computed tomographic (CT) scanner combined in one machine. Fifty-three patients underwent imaging with four CT tube currents and PET emission and transmission data acquisition. Stepwise analysis of coregistered images revealed a significant (P <.05, McNemar test) improvement in lesion classification between PET images alone and coregistered images from the PET-CT examination.

Abdominal Neoplasms↗