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Biomedical subjects

Jeremy J Erasmus

Publications and source records attributed to Jeremy J Erasmus.

13 recordsLinked to original sources

Interobserver and intraobserver variability in measurement of non-small-cell carcinoma lung lesions: implications for assessment of tumor response.

PURPOSE: Response of solid malignancies to therapy is usually determined by serial measurements of tumor size. The purpose of our study was to assess the consistency of measurements performed by readers evaluating lung tumors. MATERIALS AND METHODS: The study group was composed of 33 patients with lung tumors more than 1.5 cm. Bidimensional (BD) and unidimensional (UD) measurements were performed on computed tomography (CT) scans according to the World Health Organization (WHO) criteria and the Response Evaluation Criteria in Solid Tumors (RECIST), respectively. Measurements were performed independently by five thoracic radiologists using printed film and were repeated after 5 to 7 days. Inter- and intraobserver measurement variations were estimated through statistical modeling. RESULTS: There were 40 tumors with an average size of 1.8 to 8.0 cm (mean, 4.1 cm). Analysis of variance showed a significant difference (P <.05) among readers and among the measured nodules for UD and BD measurements. Interobserver misclassification rates were more than intraobserver misclassification rates using either progressive disease or response criteria. The probability of misclassifying a tumor with the WHO criteria or RECIST was greatest with interobserver measurements when criteria for progression (43% BD, 30% UD) were used and lowest with intraobserver measurements when criteria for response (2.5% BD, 3.0% UD) were used. In addition, interobserver misclassification rates were more than intraobserver misclassification rates for both regular and irregular tumors. CONCLUSION: Measurements of lung tumor size on CT scans are often inconsistent and can lead to an incorrect interpretation of tumor response. Consistency can be improved if the same reader performs serial measurements for any one patient.

Adult↗

Bronchiolitis obliterans syndrome in lung transplant recipients: correlation of computed tomography findings with bronchiolitis obliterans syndrome stage.

The purpose of this study was to correlate the extent of computed tomographic (CT) findings with the severity of respiratory dysfunction in lung transplant recipients with bronchiolitis obliterans syndrome (BOS). Eighty-nine conventional and 61 thin-section CT scans performed in 44 transplant recipients (17 bilateral, 27 single) with BOS were reviewed for mosaic attenuation, degree of bronchial dilation, bronchial thickening, central and peripheral bronchiectasis, mucus plugging, and air trapping. Findings on conventional and thin-section CT scans were correlated with BOS stage for bilateral and single-lung transplant recipients. In bilateral-lung recipients, a significant correlation existed, although weak, between BOS stage and findings of degree of bronchial dilation (P < 0.01), bronchial wall thickening (P = 0.01), peripheral bronchiectasis (P = 0.01), and mosaic attenuation (P = 0.01) on conventional CT; and bronchial wall thickening (P = 0.01) and mosaic attenuation (P = 0.03) on thin-section CT. In single-lung recipients, BOS stage correlated only with the finding of central bronchiectasis (P = 0.02) on conventional CT scans. No correlation was found between the extent of air trapping and BOS stage in either single- or bilateral-lung transplant recipients. CT findings are relatively poor indices of airflow obstruction in lung transplant recipients with BOS, particularly in those with single-lung transplants for emphysema.

Adolescent↗

Pleural effusions in lung transplant recipients: image-guided small-bore catheter drainage.

PURPOSE: To assess the efficacy of treating pleural effusions in lung transplant recipients with small-bore catheter drainage. MATERIALS AND METHODS: Chest radiographs and computed tomographic (CT) scans obtained in 31 lung transplant recipients who had pleural effusions treated with catheter drainage were retrospectively reviewed. Duration of drainage and volume of fluid drained were recorded. Results were evaluated 1 and 3 months after chest tube removal. There was complete response (CR) when no pleural fluid remained, partial response (PR) when fluid remaining was less than the pretreatment level, and no response (NR) when fluid recurred to a level at or above the pretreatment level. Associations between cause of effusion (empyema, parapneumonic effusion, rejection, other), response (CR, PR, NR), and type of transplantation (unilateral, bilateral) were examined by using chi2 tests. RESULTS: Of 31 patients, 25 had bilateral effusions; eight of these 25 patients had small-bore catheters inserted bilaterally. Nine patients had multiple sequential catheter insertions. Duration of drainage ranged from 2 to 44 days (median, 6 days). Fluid output was 110-9,726 mL (median, 1,350 mL). One-month follow-up data were available for 31 of 39 treated pleural effusions: 11 (35%) had CR, 18 (58%) had PR, and two (6%) had NR (percentages do not add up to 100% due to rounding). Three-month follow-up data were available for 28 of 39 treated effusions: 22 (79%) had CR, five (18%) had PR, and one (4%) had NR (percentages do not add up to 100% due to rounding). One- and 3-month response rates, respectively, were not related to cause of effusion (P =.82 and.535) or type of transplantation (P =.568 and >.999). CONCLUSION: Small-bore catheter drainage of persistent pleural effusions in lung transplant recipients is usually successful, but drainage is often prolonged and may require multiple catheter placements.

Adolescent↗

High-resolution CT of drug-induced lung disease.

Drug-induced pulmonary toxicity is increasing and early diagnosis is important because of the associated morbidity and mortality. Diagnosis is often difficult and is usually based on a history of drug therapy and exclusion of infection, radiation pneumonitis, and recurrence of the underlying disease. Although HRCT findings are frequently nonspecific, diagnosis can be facilitated by an understanding of the most common histopathologic and radiologic manifestations of drug-induced lung injury and knowledge of the drugs usually involved.

Adult↗

The role of imaging in malignant pleural mesothelioma.

Imaging plays an essential role in the diagnosis, staging, and follow-up of patients with malignant pleural mesothelioma (MPM). The diagnosis is often suggested by a unilateral pleural mass with a moderate to large pleural effusion seen on chest radiographs, but computerized tomography (CT) is the most frequently used technique for evaluation of the lungs in patients with MPM. CT not only suggests pulmonary metastases typically manifested as nodules or masses, but also can demonstrate underlying lung disease often caused by prior asbestos exposure. Magnetic resonance (MR) imaging may be helpful in selected patients with potentially resectable disease to further examine the local extent of tumor. Imaging with positron emission tomography (PET) using the radionuclide imaging agent (18)F fluoro-deoxyglucose (FDG) takes advantage of a basic property of tumor cells, increased glucose metabolism to identify malignant lesions. PET provides not only anatomic information, especially regarding mediastinal node metastasis, but also biochemical information about the lesion. These imaging modalities help triage patients to the most appropriate diagnostic and treatment options. Following patients after therapy usually relies on chest radiographs, although CT can more accurately describe response to therapy. This review will focus on radiologic evaluation in diagnosing, staging, and follow-up patients with MPM.

Biopsy, Needle↗

Drug-induced lung injury.

Lung injury is an increasing cause of morbidity and mortality in patients treated with cytotoxic and noncytotoxic drugs. Prompt diagnosis is important because early drug-induced lung injury will often regress with the cessation of therapy. Diagnosis requires a high index of suspicion because infection, radiation pneumonitis, and recurrence of the underlying disease can manifest clinically and radiologically in a similar manner. Because the lungs have only a limited number of histopathologic responses to injury, including pulmonary edema/diffuse alveolar damage, NSIP, BOOP, EP, and pulmonary hemorrhage, knowledge of these manifestations and the corresponding radiologic manifestations can often be useful in suggesting a diagnosis of drug-induced lung injury. An understanding of the drugs most commonly associated with lung injury can also facilitate diagnosis.

Anti-Infective Agents↗

Azygoesophageal recess.

Knowledge of the normal radiologic appearance and manifestations of disease in the azygoesophageal recess can facilitate the detection and diagnosis of intrathoracic disease. The azygoesophageal recess is located lateral or posterior to the esophagus and anterior to the spine. It extends from the anterior turn of the azygous vein to the aortic hiatus. The configuration of the azygoesophageal recess is normally a smooth arc convex to the left. Because the right lung extends into the recess, pathology in this region can often be detected radiographically and typically manifests as increased opacity and/or as a contour abnormality. In adults, convexity directed to the right and immediately below the level of the azygous vein on a frontal radiograph is abnormal and requires further evaluation.

Adolescent↗

The retrotracheal space: normal anatomic and pathologic appearances.

A variety of diseases can arise from the normal contents of the retrotracheal space or from adjacent structures. Mediastinal diseases in the retrotracheal space typically manifest radiographically as a contour abnormality or an area of increased opacity, although computed tomography (CT) or magnetic resonance (MR) imaging is usually required for diagnosis. The most common aortic arch anomaly, a right subclavian artery that originates from an otherwise normal left-sided aortic arch, appears at posteroanterior chest radiography as an obliquely oriented soft-tissue area of increased opacity that extends superiorly to the right from the superior margin of the aortic arch. CT and MR imaging can reveal associated vascular or mediastinal abnormalities. Aortic aneurysms and pseudoaneurysms can manifest radiographically as fusiform or saccular masslike lesions that protrude into the retrotracheal space. Thoracic MR imaging and spiral CT angiography are the diagnostic procedures of choice for evaluating diverse pathologic conditions of the thoracic aorta. Esophageal diseases can manifest as an abnormality in the retrotracheal space, which may be the initial clue to the diagnosis. At CT, lymphatic malformations in the mediastinum manifest as lobular, multicystic tumors that surround and infiltrate adjacent mediastinal structures. Familiarity with the normal radiologic appearance of the retrotracheal space and with the clinical manifestations of diseases that affect the retrotracheal space and adjacent structures can facilitate detection, diagnosis, and management.

Aortic Arch Syndromes↗

Thoracic complications of esophageal disorders.

Abnormalities of the esophagus are common, and complications associated with these disorders and diseases can involve the mediastinum, tracheobronchial tree, and lungs. The most common complications include mediastinitis secondary to esophageal perforation or postoperative anastomotic leak, or both; empyema due to fistula formation; and aspiration pneumonia. The authors reviewed the radiologic appearances of those and other common thoracic complications associated with esophageal disorders to facilitate early detection, diagnosis, and management. Computed tomographic (CT) findings of acute mediastinitis secondary to esophageal perforation may include esophageal thickening, extraluminal gas, pleural effusion, single or multiple abscesses, and extraluminal contrast medium. The radiologic manifestations of pneumonia secondary to tracheoesophageal fistula are variable, depending on the spread and severity of the aspiration. The most common radiographic pattern is that of bronchopneumonia with scattered air-space opacities. CT has been regarded as the imaging modality of choice for the evaluation of suspected esophagopleural fistula, because the site of communication between the pleural space and the esophagus can often be seen. An awareness of the radiologic manifestations of these complications is thus required to facilitate early diagnosis.

Esophageal Diseases↗

Radiation injury of the lung after three-dimensional conformal radiation therapy.

OBJECTIVE: The objective of this study is to describe the CT patterns of radiation injury in the lungs of patients who have undergone three-dimensional (3D) conformal radiation therapy (CRT). MATERIALS AND METHODS: Over a 36-month period, the chest CT scans of 19 patients with non-small cell lung cancer who were treated with 3D CRT were reviewed. CT scans were evaluated for findings of radiation injury (ground-glass opacities, consolidation, bronchiectasis, and volume loss). The presence, extent, and distribution of these findings were reached by consensus. RESULTS: Radiation pneumonitis limited to a small area immediately around the tumor was present in all patients who were imaged within 3 months after completion of the treatment (n = 7). Radiation-induced fibrosis occurred in all patients (n = 19). Three distinct patterns of fibrosis were consistently present, and these were classified as modified conventional, masslike, and scarlike. Modified conventional fibrosis (consolidation, volume loss, and bronchiectasis similar to, but less extensive than, conventional radiation fibrosis) was seen in five patients. Masslike fibrosis (focal consolidation with traction bronchiectasis limited to the site of the original tumor) was seen in eight patients. Scarlike fibrosis (linear opacity in the region of the original tumor associated with moderate to severe volume loss) was seen in six patients. CONCLUSION: Three-dimensional conformal radiation therapy results in three patterns of radiation fibrosis that differ from the conventional radiation-induced lung injury. Knowledge of the full spectrum of these manifestations is useful in the correct interpretation of CT scans after 3D CRT.

Adult↗

Usefulness of imaging-guided catheter drainage and talc sclerotherapy in patients with metastatic gynecologic malignancies and symptomatic pleural effusions.

OBJECTIVE: The purpose of our study was to assess the usefulness of imaging-guided catheter drainage and talc sclerotherapy in patients with metastatic gynecologic malignancies and symptomatic pleural effusions and to assess the affect of ascites on the success rate of this treatment. MATERIALS AND METHODS: Twenty-five patients (mean age, 63 years) with metastatic gynecologic malignancies who had 26 symptomatic effusions treated at our institution over a 4-year period with imaging-guided catheter drainage and talc sclerotherapy were included in this study. Response to treatment was assessed by comparing pre-, immediate post-, and 30-day postsclerotherapy chest radiographs. Response to the treatment was graded as complete (no reaccumulation), partial (accumulation above immediate post- but below presclerotherapy level), or no response (reaccumulation to or above the presclerotherapy level). The presence of ascites on CT (n = 23), sonography (n = 1), direct intraoperative visualization (n = 1), or at physical examination (n = 1) was also noted. RESULTS: Of the 25 patients, 13 patients with 14 treated malignant effusions survived at least 30 days after sclerotherapy and formed the final study group. The remaining patients either died (n = 11) or were lost to follow-up (n = 1). At 30 days, 12 of the 14 treated effusions showed complete responses and one showed a partial response. The overall response rate was 86%. Abdominal ascites was present at the time of treatment in 11 patients (79%) and did not affect the success rate (p > 0.999). CONCLUSION: Imaging-guided catheter drainage and talc sclerotherapy are an effective treatment for symptomatic pleural effusions in patients with metastatic gynecologic malignancies. Ascites does not adversely affect the response to pleurodesis.

Aged↗

Hepatic segments II and III mimicking a lung mass: diagnosis of a normal variant using reformatted multiplanar CT images.

We describe a patient misinterpreted to have a lung mass on CT owing to extension of hepatic segments II and III between the diaphragm and spleen. This report underscores the importance of being aware of this normal anatomic variant and the utility of two-dimensional multiplanar reformation in interpretation of abnormalities in the region of the thoracoabdominal junction.

Aged↗

Primary thoracic sarcomas.

Primary sarcomas of the thorax are rare. The diagnosis is established only after sarcomalike primary lung malignancies and metastatic disease have been excluded. Primary sarcomas of the thorax are classified according to their histologic features and constitute a large group of tumors that occur in the lung, mediastinum, pleura, and chest wall. Angiosarcoma, leiomyosarcoma, rhabdomyosarcoma, and mesothelioma (sarcomatoid variant) are the most common primary intrathoracic sarcomas. Ewing sarcoma, primitive neuroectodermal tumor, chondrosarcoma, malignant fibrous histiocytoma, osteosarcoma, synovial sarcoma, and fibrosarcoma usually arise in the chest wall. Although primary thoracic sarcomas commonly manifest as large, heterogeneous masses, they have a wide spectrum of radiologic manifestations, including solitary pulmonary nodules, central endobronchial tumors, and intraluminal masses within the pulmonary arteries. The different histologic types of sarcomas are frequently indistinguishable at radiologic analysis. However, differences in clinical presentation and the location of the tumor, as well as morphologic features such as calcification within the mass and rib involvement, can be useful in suggesting the appropriate diagnosis. For example, a large rib mass in a child with fever and malaise indicates a Ewing sarcoma, a mass with a calcified matrix is likely a chondrosarcoma or osteosarcoma, and a pulmonary artery mass is likely a leiomyosarcoma.

Adult↗