Sinobot X1*
Neurosurgical Robot
An Amazing Debut, Sensing the Future

*Registered as SR1 series in select countries and regions.

Sinovation® has spared no effort in the continuous R&D and manufacturing of high-end neurosurgical medical equipment for over twenty years. The birth of Sinovation® Sinobot X1 has once again redefined neurosurgical surgery robots to a new height. The integration of Holoshot® 3D structured light registration technology and a fully automatic robotic arm brings neurosurgeons an extremely precise, convenient, and efficient surgical assistance experience, turning continuous clinical breakthroughs and transcendences into reality.

Holoshot®3D Structured Light Registration Technology

In neurosurgical robot-assisted surgeries, patient registration is a critical step in the entire surgical process. Its primary function is to map the surgical path planned by the physician in the image space to the physical space. The precision of patient registration directly determines the final navigation and localization accuracy of the system. Additionally, the convenience of patient registration operations directly impacts the overall surgery duration.

Markerless registration, counting every second
No pre-operative marker placement is required, and there is no need for an extra pre-operative localization CT scan. The 3D structured light localizer automatically performs non-contact, rapid scanning registration and precision verification. The registration process takes only 30 seconds, saving pre-operative preparation time and easily handling emergency and critical surgical procedures.
Full-head scanning, infinite positions
The 3D structured light localizer can perform wide-range, multi-angle, and multi-posture point cloud scanning of the patient's head, acquiring a complete 3D head and face point cloud. This ensures that the convenient and fast markerless registration technology is no longer restricted by patient positioning.
0.5mm localization accuracy, ultimate precision
The 3D structured light localizer can capture millions of high-density point clouds from the patient's head. The number of point clouds is increased by 300 times compared to laser registration, and the average registration accuracy reaches 0.5mm. This perfectly satisfies all of the physicians' requirements for registration convenience, speed, and precision.
Markerless registration, counting every second
Full-head scanning, infinite positions
0.5mm localization accuracy, ultimate precision
Safe and Efficient Robotic Arm

The robotic arm is the core component of a surgical robot. Neurosurgery places extremely high demands on the overall performance of the robotic arm system. As a pioneer in the medical robot industry, Sinovation always adheres to the most rigorous attitude and almost demanding safety standards to develop every product, solely to deliver safer and more precise robotic surgeries to doctors and patients.

Automatic localization for the whole brain
Without markers or manual assistance, the robotic arm can achieve fully automatic and precise localization across the entire cranium, easily adapting to various surgical procedures and patient positions, eliminating light path blockages and positioning difficulties.
Computer vision intelligent obstacle avoidance
Computer vision automatically acquires and establishes a model of the patient's head and surrounding environmental obstacles. Through automatic optimization algorithms, the optimal obstacle avoidance path is determined, allowing the robotic arm to perform safe, efficient, and precise localization.
Six-dimensional force sensing safety assurance
The six-dimensional force/torque sensor monitors the force on the robotic arm in real-time. The robotic arm can perform an emergency stop and brake when abnormal force exceeds 1N, with a response time of <30 milliseconds, effectively ensuring the intra-operative safety of doctors and patients.
Power-off emergency stop, static locking
Sinobot X1 adopts a brake-type braking control scheme. In the event of an abnormal power outage or other unexpected emergencies, the robotic arm can lock in place statically, keeping the robotic arm end rock-solid, bringing physicians a truly reassuring robotic surgery experience.
Automatic localization for the whole brain
Computer vision intelligent obstacle avoidance
Six-dimensional force sensing safety assurance
Power-off emergency stop, static locking
Powerful Surgical Planning System

The surgical planning system is the soul of intelligent surgical robots. For more than a decade, Sinovation® has closely combined clinical needs to develop the powerful and user-friendly surgical planning system SinoPlan™, enabling comprehensive, precise, and rapid formulation and simulated execution of neurosurgical plans.

Unparalleled 3D reconstruction
With a doctor-centered interactive design, it easily and conveniently completes 3D modeling and simulated resection of multiple objects such as skin, skull, blood vessels, brain parenchyma, and lesion tissues. Physicians can fully enjoy multi-dimensional image perspectives and make more scientific surgical decisions.
Vessel avoidance, clear at a glance
Sinovation® has innovatively developed the AngioRender™ 3D vessel avoidance technology and SurgeonEye™ superimposed vessel avoidance technology, which can clearly and intuitively display the patient's intracranial blood vessels in multiple dimensions, effectively reducing the risk of intraoperative intracranial hemorrhage.
Rich surgical planning functions
The continuously upgraded DBS/SEEG/hematoma/biopsy function modules are each a perfect combination of professionalism and ease of use, bringing a more user-friendly operating experience to the surgical planning process.
Unparalleled 3D reconstruction
Vessel avoidance, clear at a glance
Rich surgical planning functions
Wide Clinical Indications

Upholding deep technical accumulation and rich clinical experience, Sinobot X1 is applicable to multiple neurosurgical fields such as intracranial tumors, cerebral hemorrhage, Parkinson's disease, trigeminal neuralgia, and epilepsy. At the same time, it features an open expansion platform to meet the higher requirements of future departmental development.

Cerebral Hemorrhage/Drainage
SinoPlan software can automatically reconstruct 3D hematoma and calculate hematoma volume. The 3D structured light Holoshot® technology can perform holographic scanning and localization, saving doctors 1-2 hours of pre-operative preparation time. The robotic arm provides fully automatic localization and guidance, which is fast, precise, and minimally invasive, leading stereotactic surgery away from the era of "blind puncture."
Stereotactic Biopsy
No scalp incision is required; precise biopsy of tiny lesions can be completed with only drill holes. There are no age or posture restrictions, thanks to rapid scanning and registration by Holoshot® structured light. The path of arteries and veins is visible throughout, effectively reducing the risk of intracranial hemorrhage and infection rate.
Stereoelectroencephalography (SEEG)
The professionally designed SEEG surgical platform significantly enhances electrode implantation efficiency. AngioRender™ and SurgeonEye™ vessel avoidance technologies minimize the risk of intracranial hemorrhage. Sinovation® neurosurgical robots can precisely assist in the stereotactic implantation of Sinovation® intracranial depth electrodes into the cranium.
Deep Brain Stimulation (DBS)
Sinobot X1 provides a precise and stable surgical platform. The accuracy can be verified and the path fine-tuned at any time during the surgery to ensure that the electrode implantation accuracy is within 0.5mm.
Cerebral Hemorrhage/Drainage
Stereotactic Biopsy
Stereoelectroencephalography (SEEG)
Deep Brain Stimulation (DBS)