This study investigates the capabilities of low tube voltage computed tomography (CT) and dual-energy CT (DECT) for predicting successful shock wave lithotripsy (SWL) of urinary stones in vitro. A total of 33 urinary calculi (six different chemical compositions; mean size 6 ± 3 mm) were scanned using a dual-source CT machine with single- (120 kVp) and dual-energy settings (80/150, 100/150 Sn kVp) resulting in six different datasets. The attenuation (Hounsfield Units) of calculi was measured on single-energy CT images and the dual-energy indices (DEIs) were calculated from DECT acquisitions. Calculi underwent SWL and the number of shock waves for successful disintegration was recorded. The prediction of required shock waves regarding stone attenuation/DEI was calculated using regression analysis (adjusted for stone size and composition) and the correlation between CT attenuation/DEI and the number of shock waves was assessed for all datasets. The median number of shock waves for successful stone disintegration was 72 (interquartile range 30-361). CT attenuation/DEI of stones was a significant, independent predictor (P < 0.01) for the number of required shock waves with the best prediction at 80 kVp (β estimate 0.576) (P < 0.05). Correlation coefficients between attenuation/DEI and the number of required shock waves ranged between ρ = 0.31 and 0.68 showing the best correlation at 80 kVp (P < 0.001). The attenuation of urinary stones at low tube voltage CT is the best predictor for successful stone disintegration, being independent of stone composition and size. DECT shows no added value for predicting the success of SWL.
In the second part of our overviewstudy the diagnosis for the treatment of our patients with intracranial vascular malformations (aneurysms / AVMF - arteriovenous malformations) is again shown in a region of about 500.000 inhabitants and just an overview of the outcome. This second part will be an overall comparison between the former diagnostic for the treatment and the here described diagnostic for the treatment (CTA, MRA, DSA rot / microsurgery, endovascular interventional techniques etc.), concerning also the topography and the demography. The future trends are also outlined.
The first part of our study describes the treatment of our patients with intracranial vascular malformations (aneurysms/AVMF - arteriovenous malformations) in a region of about 500,000 inhabitants. The second part will compare currrent treatment and the changes in treatment (microsurgery, endovascular interventional techniques, etc.) also in relation to topography and demography.
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