ZAP X | ZAP logo

PRESENTATION

The ZAP-X noninvasive radiosurgery system offers high-precision treatment for benign and cancerous intracranial tumors, combining efficacy and an improved patient experience. As an alternative or complement to traditional surgery and radiotherapy, it delivers precise radiation to neutralize tumors and brain metastases, protecting healthy tissue. It is a painless procedure, without the need for anesthesia, and allows patients to return home the same day.

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GENERAL INFORMATION

ZAP-X Gyroscopic Radiosurgery

  • ZAP-X is the most advanced stereotactic brain radiosurgery system currently available, which treats benign and malignant lesions of the brain, head and neck, and a wide range of neuropsychological functional pathologies with high precision, non-invasively and very effectively. Unlike other technologies, it is able to control the radiation dynamics at all times, managing to administer treatment without damaging the surrounding healthy structures. Due to its characteristics, it humanizes the use of technology and makes it visually accessible to all patients.
  • The new ZAP-X platform helps reduce barriers to access by avoiding costs typically associated with advanced radiotherapy projects. By removing the financial constraints that have historically concentrated world-class radiosurgery primarily among well-funded urban academic hospitals, ZAP-X’s novel innovations expand access to SRS and introduce new benchmarks in high-quality, cost-effective care.
  • ✅ COBALT FREE

    Utilizing a modern 1500MU/min linear accelerator, zap-x eliminates the ~$1M USD recurring cost for live radioactive source replacements and eliminates overhead associated with arduous regulatory licensing and source security.

    ✅ BUNKER FREE

    As the first and only vaultless SRS delivery system, ZAP-X eliminates the requirement for 2-3M lbs of high-density concrete and steel to construct a shielded radiation bunker, and ~$1M+ USD in infrastructure expenses.
  • Developed exclusively for the optimized treatment of brain tumors, lesions and other head and neck conditions, the ZAP-X® Gyroscopic Radiosurgery® platform redefines the future of radiosurgery and aims to set new standards in SRS delivery.
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Application areas

✅ Non-cancerous (Benign)

Brain Tumors Among benign brain tumors, ZAP-X can treat acoustic neuroma/vestibular schwannoma, meningioma, and pituitary adenoma. With well-differentiated, non-cancerous boundaries, these types of tumors are usually not very deep-seated in the brain tissue, therefore they are easier to treat and remove.

✅ Malignant Brain Tumors

Brain metastases, high- and low-grade glioma, chordoma, and chondrosarcoma can be addressed.

✅ Neurovascular Diseases

There are many treatments that can be addressed with ZAP-X. In addition to functional diseases and benign tumors, neurovascular diseases such as arteriovenous malformation (AVM), cavernoma, and glomus jugular tumors can also be treated.

✅ Functional diseases

ZAP-X's advanced radiotherapy can treat trigeminal and hypoglossal neuralgia. It also addresses intractable cancer pain.

Brochures

Overview de ZAP-X

Papers

The ZAP-X® Gyroscopic Radiosurgery® platform received US FDA 510(k) clearance in 2017, Japan Shonin clearance in 2020, and EU CE clearance in 2021. In 2024, it received ANMAT and MSP approval for installation in Argentina and Uruguay.

Caracterización de la caída de dosis periférica ZAP-X®

Caracterización de un acelerador lineal novedoso de 3 megavoltios para radiocirugía estereotáctica intracraneal dedicada

Radiocirugía giroscópica con autoprotección: una experiencia prospectiva y un análisis de los primeros 100 pacientes

Pruebas rutinarias de garantía de calidad de la máquina para un sistema de radiocirugía giroscópica autoprotegido

Comparación dosimétrica de plataformas de radiocirugía dedicadas para el tratamiento del temblor esencial: informe técnico

Protección del objetivo de rayos X y fuga de radiación dentro de la cápsula de tratamiento de Zap-X

Caracterización de un novedoso colimador de radiación rotatorio

Radiocirugía giroscópica autoprotectora: primera experiencia clínica, serie de casos y comparación dosimétrica

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