DORO LUCENT® Cranial Stabilization System
The DORO LUCENT® Cranial Stabilization System by Black Forest Medical is an advanced radiolucent head fixation system designed for neurosurgical procedures requiring high-quality intraoperative imaging.
DORO LUNA® Cranial Stabilization System
The DORO LUNA® by Black Forest Medical is an advanced system to hold t5he hands of the Neurosurgery. It is easily adjusted to QR3.
DORO Skull Pins
The DORO® Skull Pins by Black Forest Medical are precision-engineered cranial fixation pins designed for use with the complete range of DORO® cranial stabilization systems. Available in disposable and reusable versions, as well as stainless steel, titanium, and DORO LUCENT® radiolucent models, they support both standard and intraoperative imaging applications, including CT, MRI, X-ray, and fluoroscopy.
Color-coded for easy identification and offered in adult and pediatric configurations, DORO® Skull Pins deliver outstanding precision, safety, and workflow efficiency for every neurosurgical procedure.
DORO® Horseshoes
The DORO® Horseshoes by Black Forest Medical are horseshoe-style headrests designed to provide secure and stable head support during neurosurgical procedures where invasive cranial fixation is not required. Their ergonomic design distributes pressure evenly, helping to protect soft tissues while maintaining accurate patient positioning throughout the procedure.
DORO® Pediatric Cranial Stabilization System
The DORO® Pediatric by Black Forest Medical is a specialized cranial stabilization system designed to provide safe and precise head fixation during pediatric neurosurgical procedures.


DORO® QR3 Cranial Stabilization System
The DORO® QR3 by Black Forest Medical is an advanced cranial stabilization system designed to provide secure and precise head fixation during neurosurgical procedures.
Its robust construction, ergonomic design, and Quick-Rail® technology allow for the easy attachment and positioning of retractors, neuronavigation systems, and other surgical accessories, ensuring maximum stability and flexibility throughout the procedure.

