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H-G Hieckel

Publications and source records attributed to H-G Hieckel.

3 recordsLinked to original sources

[Diagnostic imaging of pulmonary lymphangiosis carcinomatosis].

The diagnosis of pulmonary lymphangiosis carcinomatosa (PLC) is of great importance for the prognostically-oriented therapy stratification of tumor patients. In this field, high-resolution computed tomography (HRCT) is the state of the art in imaging. Using HRCT, it is possible to identify pulmonary parenchymal structures in a detailed fashion to evaluate interstitial patterns. This step is preceded by an x-ray of the thorax that detects pathological findings and rules out other diseases. The typical characteristics of PLC are described with particular attention to HR-phenomenology, and discussed in comparison with the literature regarding anatomy and pathogenesis. Finally, conclusions are drawn for differential diagnosis and supported by characteristic cases.

Carcinoma↗

[Chest examination protocol with a reduced dose using a multi-slice spiral CT].

PURPOSE: Comparison of multi-slice computed tomography (MSCT) for examination of the chest using two protocols differing in tube voltage (kV) and effective tube current (mAs), as to image quality, diagnostic quality and radiation dose. MATERIAL AND METHODS: Re-staging examinations of 20 patients with bronchial carcinoma on a MSCT (Somatom Volume Zoom, Siemens AG, Forchheim) with 140 kV/100 mAseff and again after an average interval of 4.5 months, a second examination using 120 kV/80 mAseff, employing identical detector width (4 x 2.5 mm), slice, pitch, increment, kernel and selecting the same use or non-use of contrast medium. Image quality, delineation of mediastinal and pulmonary anatomy and pathology, and frequency of artifacts were evaluated by two radiologists and the effective radiation doses were calculated. RESULTS: Subjective image quality was good to very good for both protocols, and no significant differences were found for visualizing anatomic and pathologic structures in mediastinum and lung. Only the region surrounded by the shoulder girdle showed significantly more artifacts with 120 kV/80 mAsff, but without loss of diagnostic quality. The effective doses were 8 mSv (women) and 6 mSv (men) for 140 kV/100 mAseff versus 4.3 mSv and 3.3 mSv for 120 kV/80 mAseff. CONCLUSIONS: In view of the equal diagnostic quality of both images, CT of the chest should be obtained with 120 kV and 80 mAseff rather than with 140 kV/100 mAseff, regardless of the slightly lower aesthetic quality of the former. This will keep the radiation dose as low as possible. Follow-up examinations should be obtained with even further dose reduction (low dose CT).

Aged↗

[Further development of the International Pneumoconiosis Classification--from ILO 1980 to ILO 2000 and to ILO 2000/German Federal Republic version].

The ILO (1980) Classification has been revised during recent years. The new version is now available as the International Classification of Radiographs of Pneumoconioses (Revised edition 2000). The Guidelines booklet is currently available only in English. Those involved felt it was important to maintain continuity with the ILO (1980) edition, in particular to retain the standard radiographs, despite their restricted quality, so as to ensure comparability with earlier national and international data sets. The standard films illustrating pleural abnormalities, and 'u'-shadows, have been modified and reconstituted. The most important changes relate to assessment of film quality, pleural abnormalities, and additional symbols. In Germany, film quality is characterised as "+", "+-", "+--" and "u" according to whether the ability to assess pneumoconiosis is judged to be unimpeachable ("+") to unusable ("u"). If a film is not classified as "+", then written comments regarding defects are required. For "diffuse" pleural thickening, the ILO (2000) edition now requires the presence also of obliteration of the costophrenic angle. This was not required in the earlier (1980) edition and, as previously, is also not stipulated in the German version. A minimum width of 3 mm (previously 0-5 mm), coded "a", is required both for plaques as well as for the margin to the lateral chest wall. Congruence is thus achieved for criteria, which, in German practice, lead to an indication of suspect occupational disease. Plaques on the diaphragm are not considered for measurement of extent; they are only coded as present or absent. If calcification is identified, then this must also be classified and measured as a localised plaque. Extent of calcification on its own, previously coded "0" to "3", is no longer specified. The following new symbols, illustrated by new diagrams, have been introduced: aa = atherosclerotic aorta; at = apical thickening; cg = calcified granuloma (or other non-pneumocononiotic nodules); me = mesothelioma (already previously differentiated from "ca" on the German record sheet); pa = plate atelectasis; pb= parenchymal bands; ra = rounded atelectasis; od = other disease. (Examples of the latter are illustrated diagrammatically by lobar pneumonia, aspergilloma, goiter and hiatal hernia.) Earlier national differences (ILO 1980/German Federal Republic) on particular issues have also been agreed among German "double-readers" ["Zweitbeurteiler"]. However, conformity between the original (ILO 2000) text and the national (German) modified text has been retained in large measure. The detailed descriptions of the standard films differ in certain respects from the German (1980) definitions. Some revision of individual descriptions of the films are proposed. Except for a few differences, agreement was reached here too. The definitive date for the change in Germany is expected to be in early 2004. The standard films are already available now through ILO offices in Geneva or Bonn (addresses in appendix.)

Germany↗