Description
The CyberKnife Radiosurgery System is an advanced robotic radiation therapy platform designed to deliver highly precise, non-invasive treatment for tumors and other medical conditions. Utilizing real-time image guidance and robotic positioning, it delivers targeted radiation with sub-millimeter accuracy, minimizing damage to surrounding healthy tissues while effectively treating complex and inoperable tumors.
Key Features:
-
- Robotic Precision & Real-Time Motion Tracking:
- Automatically adjusts to patient movement, including breathing and involuntary motion.
- Delivers radiation with sub-millimeter accuracy for superior treatment precision.
- Non-Invasive & Painless Treatment:
- No incisions, anesthesia, or prolonged recovery time required.
- Patients can typically resume normal activities immediately after treatment.
- Frameless & Comfortable Patient Experience:
- Unlike traditional stereotactic radiosurgery (SRS), no rigid head frame is required.
- Uses soft, custom-molded immobilization for greater patient comfort.
- High-Dose Hypofractionated Radiation Delivery:
- Provides highly focused radiation in fewer treatment sessions.
- Reduces overall treatment time while maintaining effectiveness.
- AI-Powered Image Guidance System:
- Continuously monitors tumor position and adapts radiation delivery in real time.
- Ensures accurate dose distribution even for tumors affected by organ motion.
- Adaptive Beam Shaping for Optimal Targeting:
- Uses multiple angles and dynamic beam adjustment to conform radiation to tumor shape.
- Protects healthy tissues and critical organs from unnecessary exposure.
- Versatile Treatment Capabilities Across Multiple Conditions:
- Suitable for primary, metastatic, and recurrent tumors in various locations.
- Can be used as an alternative to surgery or in combination with other cancer treatments.
- Outpatient Treatment with Minimal Side Effects:
- Most procedures are completed in 1-5 sessions with no hospital stay required.
- Lower risk of complications compared to traditional surgery and conventional radiation therapy.
- Robotic Precision & Real-Time Motion Tracking:
Applications:
-
- Brain & Neurological Tumors: Non-invasive treatment for benign and malignant brain tumors, arteriovenous malformations (AVMs), and trigeminal neuralgia.
- Spinal Tumors: Precise radiation delivery for metastatic and primary spinal tumors without open surgery.
- Lung & Thoracic Cancers: Motion-tracking technology ensures accurate targeting of tumors affected by breathing.
- Prostate & Genitourinary Cancers: High-dose, image-guided radiosurgery for localized prostate cancer.
- Liver & Pancreatic Tumors: Treats hard-to-reach tumors with precision, reducing radiation exposure to nearby organs.
- Recurrent & Inoperable Tumors: Ideal for patients who are not candidates for traditional surgery or repeat radiation treatments.





