Excellent system efficiency for optimized treatment outcomes
Advanced imaging for greater clarity
Smart & connected, for improved procedural performance
Ergonomic design forefficient workflow
Most clinically proven shock wave technology1
Penetration depth of 170 mm to treat a broad spectrum of patients, including obese patients
Large coupling area for gentle shock wave treatment
43% more effective2 with improved energy transmission
Achieves 94.5% stone-free rate3 and shorter treatment durations
Energy needed for effective stone treatment
Total applied shock wave energy (%)
Provides optimal isocentric angulation in under-and over-table positioning for smooth alignment
Allows easier targeting and shock wave treatment of stones in all locations through 120+ degrees of access and 220 degrees motorized axial rotation
Clear and sharp images with lower degradation over time
20% greater field of view compared to 9-inch Image Intensifier
Eliminates radiation exposure for patients and users
Isocentric ultrasound imaging provides a high degree of flexibility and imaging quality4
Comprehensive imaging capabilities, with the option of localizing stones using either X-ray or ultrasound imaging, or both simultaneously
Delivers sharp stone imaging details, even in challenging clinical scenarios
Now applicable to Last Image Hold feature in fluoroscopy
Delta® III goes pro with Dornier UIMSTM: an intelligent urology software solution
Quick and precise table movements improve accuracy and prevent missing stones
A versatile and radiolucent patient table specially engineered for ESWL and endourology
Operates the lithotripter, table, and X-ray C-arm movements, and releases shock waves with a touch of a button
Can be operated remotely; decreases the exposure of ionizing radiation for users and other healthcare personnel
Portable, can be moved around easily between hospitals and operating rooms; comes with plug-and-play capability
The FPD’s compact design allows flexibility in transport modality
1. Data on file at Dornier MedTech | 2. Tailly, G. G, & Tailly-Cusse, M. M. (2014). Optical coupling control: an important step toward better shockwave lithotripsy. Journal of endourology, 28(m), 1368-1373 https//doi.org/10.1089/end.2014.0338 | 3. Data on file at Dornier MedTech | 4. Macchione, N, Ela, A, Gofrit, O. Pode, D. & Duvdevani, M. (2013). SWL with continuous targeting by ultrasound, are there benefits? European Urology Supplements, 3(12), 51 https:/dol.org/101016/SIS69 9056(13)61727-3
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