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Top 50 Robotic Surgery in Europe
Discover the top 50 Robotic Surgery startups in Europe. Browse funding data, key metrics, and company insights. Average funding: $20.1M.
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Ganymed Robotics develops robotic systems specifically designed for orthopedic joint replacement surgeries, enhancing precision and consistency during procedures. Their technology aims to improve patient outcomes and streamline the surgical workflow, addressing inefficiencies in traditional surgical methods.
Funding: $41.3M
Rough estimate of the amount of funding raised
European Innovation Council
European Innovation Council
Funding: $41.3M
Rough estimate of the amount of funding raised
Moon Surgical develops the Maestro System, a robotic surgical assistant that integrates collaborative and adaptive robotics into existing operating room workflows. This technology enhances precision and efficiency in laparoscopic procedures, addressing the need for improved surgical outcomes and accessibility in robotic surgery.
Funding: $95.5M
Rough estimate of the amount of funding raised
NVenturesSofinnova Partners
NVenturesSofinnova Partners
Funding: $95.5M
Rough estimate of the amount of funding raised
AcuSurgical develops a robotic platform specifically for vitreoretinal surgery, delivering micron‑level precision and bi‑manual control. The system enhances surgeon stability, reduces tremor‑related risks, and enables more consistent outcomes for retinal detachments and macular disease treatments. By integrating micro‑precision technology into the operating room, it aims to improve safety and expand the range of feasible ophthalmic procedures.
Funding: $6.1M
Rough estimate of the amount of funding raised
Mérieux Equity PartnersSupernova Invest
Mérieux Equity PartnersSupernova Invest
Funding: $6.1M
Rough estimate of the amount of funding raised
Microsure develops the MUSA-3 robotic system for microsurgery, allowing surgeons to perform intricate procedures on small anatomical structures with enhanced precision through tremor-filtered joystick control and the use of their own instruments. This technology addresses the limitations of human dexterity in microsurgery, enabling more patients to receive treatment for complex conditions.
Funding: $40.6M
Rough estimate of the amount of funding raised
Funding: $40.6M
Rough estimate of the amount of funding raised
LEM Surgical provides the Dynamis Robotic Surgical System, a navigation‑based platform that uses two robotic arms for instrument guidance and a third arm for a navigation camera to enable real‑time tracking of tools during spine surgeries. Integrated on a single cart, the system connects with existing intraoperative imaging devices via DICOM, offering precise planning, execution, and workflow management for thoracic, lumbar, and sacral procedures.
Funding: $25.9M
Rough estimate of the amount of funding raised
Funding: $25.9M
Rough estimate of the amount of funding raised
CMR Surgical develops the Versius Surgical System, a modular robotic-assisted device designed for minimal access cholecystectomy, utilizing a biomimetic design that mimics the human arm for enhanced precision and control. This technology addresses the limitations of traditional laparoscopic surgery by providing surgeons with improved dexterity, a 710° range of motion, and 3D HD visualization in compact operating room environments.
Funding: $163.9M
Rough estimate of the amount of funding raised
Funding: $163.9M
Rough estimate of the amount of funding raised
Quantum Surgical has developed the Epione® robotic platform, which utilizes image fusion technology to plan and deliver targeted tumor ablation for inoperable abdominal and lung cancers. This technology enables physicians to perform minimally invasive procedures, increasing access to effective cancer treatment for patients with challenging tumor locations.
Funding: $90.5M
Rough estimate of the amount of funding raised
Ally Bridge Group
Ally Bridge Group
Funding: $90.5M
Rough estimate of the amount of funding raised
Nami Surgical develops miniaturized ultrasonic surgical scalpels designed to improve upon existing tools used in robot-assisted surgery. Their technology focuses on enhancing precision within surgical procedures. This innovation aims to advance medical device capabilities for better patient outcomes.
Funding: $3.7M
Rough estimate of the amount of funding raised
Eos
Eos
Funding: $3.7M
Rough estimate of the amount of funding raised
Soundsafe Care develops a medical device that integrates robotics and ultrasound technologies for cancer treatment. This system is designed to perform tumor treatment without requiring incisions or introducing toxicity. The company focuses on advancing surgical standards in oncology care through this innovative technology.
Funding: $1.9M
Rough estimate of the amount of funding raised
RoboITToscana Next Fund
RoboITToscana Next Fund
Funding: $1.9M
Rough estimate of the amount of funding raised
SURGAR develops a plug-and-play augmented reality software suite for minimally invasive laparoscopic and robot-assisted surgeries, utilizing real-time 3D models derived from patient MRI and CT scans. This technology enhances surgical precision and visualization, addressing the challenges of navigating mobile and deformable organs during procedures.
Funding: $15.8M
Rough estimate of the amount of funding raised
Mutuelles Impact
Mutuelles Impact
Funding: $15.8M
Rough estimate of the amount of funding raised
This company provides laser-guided robotic arm support to enhance clarity and structure within CT-guided workflows. Their system integrates proprietary software with CT/CBCT scans to offer visual guidance for treatment planning and precise needle trajectory alignment. The technology assists physicians in achieving faster, more accurate manual interventions while maintaining full clinical decision-making control.
Funding: $2.6M
Rough estimate of the amount of funding raised
Ancora Finance Group
Ancora Finance Group
Funding: $2.6M
Rough estimate of the amount of funding raised
The startup develops computer-assisted surgical navigation tools that utilize computer vision and artificial intelligence to achieve millimeter precision in locating objects during orthopedic surgeries. This technology enables surgeons to perform procedures more accurately and affordably, addressing the need for enhanced precision in a cost-sensitive healthcare environment.
Funding: $17.8M
Rough estimate of the amount of funding raised
Relyens
Relyens
Funding: $17.8M
Rough estimate of the amount of funding raised
Symphera offers an integrated surgical platform that automates instrument switching for laparoscopic and other minimally invasive procedures, eliminating the need for manual tool exchanges. The system’s multifunctional tool‑tip can be reconfigured on demand via a control interface, reducing up to 20% of operative time spent on tool changes and lowering overall surgery costs. It is compatible with existing laparoscopic and robotic setups, enabling hospitals and surgical centers to improve workflow efficiency without major equipment changes.
Funding: $2.6M
Rough estimate of the amount of funding raised
EIC Accelerator
EIC Accelerator
Funding: $2.6M
Rough estimate of the amount of funding raised
The startup develops surgical assistance devices specifically designed for obstetricians to enhance the safety and efficiency of cesarean deliveries. By focusing on innovative medical technologies, the company aims to reduce complications and improve outcomes in women's health surgeries.
Funding: $8.8M
Rough estimate of the amount of funding raised
EQT Life Sciences
EQT Life Sciences
Funding: $8.8M
Rough estimate of the amount of funding raised
Tenomix has developed The Lymphonator, a bench-top robotic scanning device that assists pathology staff in the efficient identification and collection of lymph nodes from surgically removed colorectal cancer tissues. This technology addresses the labor-intensive and error-prone manual search process, ensuring accurate detection of smaller lymph nodes to enhance cancer staging and optimize patient care.
Funding: $190.0K
Rough estimate of the amount of funding raised
Job Creation and TradeMinistry of Economic Development
Job Creation and TradeMinistry of Economic Development
Funding: $190.0K
Rough estimate of the amount of funding raised
VitVio utilizes AI and computer vision to monitor surgical progress, track tool usage, and ensure protocol adherence in operating rooms. This technology reduces equipment waste and administrative burdens, enabling hospitals to increase efficiency and profitability while improving patient care.
Funding: $4.0M
Rough estimate of the amount of funding raised
LDV Capital
LDV Capital
Funding: $4.0M
Rough estimate of the amount of funding raised
Proximie offers a cloud‑based operating‑room operating system that connects people, devices, and data to create a unified, secure platform for surgical performance. The solution provides real‑time low‑bandwidth video streaming, AI‑driven analytics, and an open API/SDK for custom applications, enabling remote mentorship, workflow automation, and standardized care across hospitals and med‑tech partners.
Funding: $140.1M
Rough estimate of the amount of funding raised
AWS Healthcare Accelerator
AWS Healthcare Accelerator
Funding: $140.1M
Rough estimate of the amount of funding raised
Hypervision Surgical Ltd utilizes AI-powered hyperspectral imaging to provide real-time, non-invasive tissue characterization during surgeries, enhancing the precision of intraoperative decision-making. This technology addresses the challenge of subjective visual assessments by enabling clinicians to differentiate between tumor and healthy tissue, ultimately improving patient safety and surgical outcomes.
Funding: $8.8M
Rough estimate of the amount of funding raised
MedTech Innovator
MedTech Innovator
Funding: $8.8M
Rough estimate of the amount of funding raised
Basecamp Vascular develops a mechatronic guidewire that utilizes Shape Memory Alloy actuators for precise navigation during minimally invasive endovascular procedures. This technology enhances access through vascular tortuosities, improving the speed and safety of interventions across various medical specialties.
Funding: $11.9M
Rough estimate of the amount of funding raised
Forepont Capital Partners
Forepont Capital Partners
Funding: $11.9M
Rough estimate of the amount of funding raised
This company develops soft manipulators and AI foundation models to enable safe and intuitive robotics applications. Their Helix manipulator offers high degrees of actuation and precision for soft robotic design and control projects. They also train custom Visual Language Action (VLA) models to translate natural language commands into robotic movements.
Funding: $27.3M
Rough estimate of the amount of funding raised
Funding: $27.3M
Rough estimate of the amount of funding raised
The startup develops surgical devices that maintain abdominal wall tension and intra-abdominal volume using mesh-mediated traction and external fixation principles. This technology enhances patient survival rates in critically ill individuals with open abdomen conditions.
Funding: $3.1M
Rough estimate of the amount of funding raised
MedTech Innovator
MedTech Innovator
Funding: $3.1M
Rough estimate of the amount of funding raised
The startup develops medical planning and guidance technology that utilizes image processing, cloud computing, 3D printing, augmented reality, and robotic surgery to create accurate anatomical models of patients. This technology enables surgeons to analyze and simulate complex surgical procedures before performing them, enhancing precision and reducing risks during operations.
Funding: $18.0M
Rough estimate of the amount of funding raised
Funding: $18.0M
Rough estimate of the amount of funding raised
TROGSS is a global professional society that creates, accredits, and disseminates standardized, platform‑agnostic robotic surgery curricula for surgeons, trainees, nurses, and allied health professionals. It coordinates multicenter research, mentorship, and fellowship programs using AI‑enhanced learning modules, AR/VR tools, and data‑driven assessment to ensure consistent competency and credential portability worldwide.
Xyall has developed the first fully automated tissue dissection solution that enhances the precision and efficiency of selecting high-quality tissue samples for molecular pathology testing. This technology integrates precision robotics and digital pathology to eliminate the labor-intensive, subjective processes currently used, thereby reducing the risk of error and improving throughput in personalized cancer therapy.
Funding: $12.9M
Rough estimate of the amount of funding raised
Health Investment Partners
Health Investment Partners
Funding: $12.9M
Rough estimate of the amount of funding raised
UpSurgeOn develops life-like surgical simulation technologies using mixed reality and augmented reality to enhance psychomotor skills training for surgeons. The platform addresses the global shortage of surgical training resources and high malpractice rates by providing cadaver-free, repeatable practice environments that improve surgical proficiency and patient safety.
Funding: $4.7M
Rough estimate of the amount of funding raised
Funding: $4.7M
Rough estimate of the amount of funding raised
Interventional Systems develops the Micromate, a table-mounted robotic platform that provides submillimeter accuracy for percutaneous procedures using 2D or 3D image guidance. This technology reduces intervention time by up to 57% and minimizes patient radiation exposure by up to 55%, making surgical robotics more accessible and efficient across various specialties.
Funding: $3.0M
Rough estimate of the amount of funding raised
Ascend Capital Partners
Ascend Capital Partners
Funding: $3.0M
Rough estimate of the amount of funding raised
Caranx Medical develops AI software for real-time intra-operative guidance during transcatheter heart valve implantation procedures. Their TAVIPILOT software leverages an AI platform to optimize TAVI procedures for interventional cardiology. The company is also developing autonomous robotics for heart valve replacement and stroke treatment.
Funding: $3.1M
Rough estimate of the amount of funding raised
Funding: $3.1M
Rough estimate of the amount of funding raised
HealthTech Innovations provides an AI‑driven platform that automatically counts surgical instruments using computer‑vision and integrates collaborative robots to hand them to staff, reducing errors and contamination risk. Their HealthPro VR solution delivers immersive experiences to patients in waiting areas and treatment rooms, lowering anxiety and improving satisfaction.
Keyron develops the ForePass® device, a fully endoscopic procedure that replicates the effects of metabolic surgery to reverse obesity, type 2 diabetes, and non-alcoholic steatohepatitis (NASH) without surgical intervention. This technology offers a safer and less invasive alternative to traditional gastric bypass procedures, addressing the high risks and costs associated with metabolic surgery.
Funding: $2.4M
Rough estimate of the amount of funding raised
Health Wildcatters
Health Wildcatters
Funding: $2.4M
Rough estimate of the amount of funding raised
OnPoint Surgical develops an augmented reality platform that overlays virtual surgical guides onto the physical spine during orthopedic and neurosurgical procedures using see-through optical head-mounted displays. This technology enhances surgical accuracy and improves hand-eye coordination, addressing the challenges of precision in complex spinal surgeries.
Funding: $61.0M
Rough estimate of the amount of funding raised
Funding: $61.0M
Rough estimate of the amount of funding raised
BiteRight provides a fully managed digital implantology service that automates the workflow from 3D data capture to guided surgery and prosthetic delivery, using AI‑driven planning and ringless, stackable surgical guides compatible with any implant brand. The platform’s “Prosthesis First” approach enables clinicians to fabricate the final crown or bridge before implant placement, allowing immediate loading or fewer patient visits while reducing treatment time, cost, and invasiveness.
Funding: $2.2M
Rough estimate of the amount of funding raised
Inveready
Inveready
Funding: $2.2M
Rough estimate of the amount of funding raised
Movendo Technology develops robotic rehabilitation systems that utilize advanced algorithms for neuromotor skill recovery, specifically targeting conditions in orthopedics, geriatrics, and neurology. Their technology addresses the need for effective, personalized rehabilitation programs by providing precise assessments and tailored treatment plans to improve patient outcomes.
Funding: $11.1M
Rough estimate of the amount of funding raised
Funding: $11.1M
Rough estimate of the amount of funding raised
This company develops cutting-edge technology for image-guided robotic interventions in the medical field. Their focus is on creating systems that support, enhance, and standardize minimally invasive surgical procedures. The goal is to improve the accessibility and consistency of high-quality patient care through advanced robotics.
Marginum develops tissue recognition technology specifically for oncological surgery to improve patient outcomes. Their solution enables precise, non-invasive detection of cancerous tissue during procedures, minimizing damage to healthy structures. This technology assists surgeons by providing safe and efficient tissue monitoring without disrupting established surgical workflows.
Funding: $4.6M
Rough estimate of the amount of funding raised
Funding: $4.6M
Rough estimate of the amount of funding raised
Sentante develops a fully robotic teleoperated system for endovascular procedures, allowing physicians to remotely manipulate catheters and guidewires with haptic feedback for precise instrument positioning. This technology reduces response times for critical conditions such as stroke and heart attack while minimizing occupational hazards for medical personnel.
Funding: $7.1M
Rough estimate of the amount of funding raised
Funding: $7.1M
Rough estimate of the amount of funding raised
CustomSurg provides an FDA‑cleared AI algorithm, OrthoPlanner™, that automatically generates pre‑operative fracture plans from imaging scans. The platform delivers detailed surgical insights quickly, helping orthopedic trauma surgeons improve accuracy and efficiency. By integrating deep‑tech research from Harvard and ETH Zurich, it supports evidence‑based decision‑making in fracture surgery.
CHMBR Partners
The startup develops and commercializes terrestrial robotic platforms equipped with modular technologies in mechanics, electronics, autonomous navigation, and artificial intelligence. These robotic systems are designed to operate effectively in human environments, enhancing operational efficiency and safety in various applications.
Funding: $2.3M
Rough estimate of the amount of funding raised
Funding: $2.3M
Rough estimate of the amount of funding raised
This company develops image-guided robotic platforms and planning tools designed to assist clinicians in performing complex transcatheter structural heart procedures. Their clinician-centric solutions aim to standardize these procedures, making them safer and quicker for patients and practitioners. The technology seeks to expand access to advanced heart repair for patients currently ineligible for open-heart surgery.
Funding: $6.2M
Rough estimate of the amount of funding raised
Funding: $6.2M
Rough estimate of the amount of funding raised
Lupin Dental provides a robotic system that guides dentists through complex aesthetic procedures, automating fine motor movements with sub‑millimeter accuracy while keeping the practitioner in control. The platform digitizes expert protocols, offers real‑time visual and haptic feedback, and integrates with existing dental equipment to improve consistency, reduce treatment costs, and enhance patient outcomes.
The startup manufactures an insufflation device that employs turbine technology and endoscopic oscillometry to deliver personalized insufflation pressure during minimally invasive surgeries. This technology enhances surgical precision by creating a sufficient working space within the body cavity, addressing the challenge of limited visibility and access for surgeons.
Funding: $5.9M
Rough estimate of the amount of funding raised
Funding: $5.9M
Rough estimate of the amount of funding raised
Deneb Medical has developed Izar, a robotic surgery station that enhances precision in spine procedures by guiding the introduction of pedicle screws and enabling safe tissue ablation with sub-millimetric accuracy. This platform integrates seamlessly into the operating room workflow, allowing surgeons to utilize their preferred instruments while improving surgical outcomes and reducing procedure times.
Funding: $271.9K
Rough estimate of the amount of funding raised
Centre for the Development of Industrial Technology (CDTI)Orza Investments
Centre for the Development of Industrial Technology (CDTI)Orza Investments
Funding: $271.9K
Rough estimate of the amount of funding raised
The startup develops robotic neurotherapy systems that provide targeted physiotherapy for patients with neurological impairments, such as stroke and multiple sclerosis. By facilitating personalized therapy plans through initial consultations with therapists, the company enhances accessibility to effective rehabilitation solutions.
Funding: $4.9M
Rough estimate of the amount of funding raised
Funding: $4.9M
Rough estimate of the amount of funding raised
Radwave Technologies Inc. develops a customizable electromagnetic tracking platform for minimally invasive and robotic medical procedures, enhancing accuracy and reliability while minimizing radiation exposure. Their technology addresses the challenges of real-time tracking errors and interference in surgical navigation, improving physician confidence and patient outcomes.
Funding: $2.8M
Rough estimate of the amount of funding raised
Scale-Up Minnesota
Scale-Up Minnesota
Funding: $2.8M
Rough estimate of the amount of funding raised
The startup develops a cancer monitoring system that combines a beta particle detector with a surgical aspirator to enhance precision during oncology surgeries. This technology enables surgeons to accurately differentiate between healthy and tumorous tissues, ensuring clear margins and improving patient outcomes.
Funding: $970.0K
Rough estimate of the amount of funding raised
AGORANOV
AGORANOV
Funding: $970.0K
Rough estimate of the amount of funding raised
Navari has developed a patent-pending augmented reality tool that overlays a real-time, three-dimensional visualization of liver tumors onto the two-dimensional laparoscopic camera feed during minimally invasive surgeries. This technology enhances surgical navigation and precision, addressing the challenge of limited visualization that complicates tumor removal in laparoscopic liver surgery.
Funding: $730.0K
Rough estimate of the amount of funding raised
Funding: $730.0K
Rough estimate of the amount of funding raised
Surgify develops the Surgify Halo™, a precise bone cutting technology designed to minimize complications such as bleeding, infections, and nerve injuries during surgical procedures. This solution enhances surgical safety and accuracy, addressing critical challenges in orthopedic and reconstructive surgeries.
Funding: $5.4M
Rough estimate of the amount of funding raised
Funding: $5.4M
Rough estimate of the amount of funding raised
The startup manufactures medical tools and digital devices while operating an online platform for orthopedic and trauma surgery, focusing on efficient surgical preparation and validated surgical plans. By enabling surgeons to maintain a sterile field and perform procedures with enhanced confidence, the company improves operational efficiency in healthcare facilities.
Funding: $5.3M
Rough estimate of the amount of funding raised
Funding: $5.3M
Rough estimate of the amount of funding raised
The startup develops autonomous robots specifically designed for healthcare environments, automating the transport of small equipment and supplies within hospital wards. This technology allows nurses and healthcare staff to focus more on patient care by reducing the time spent on logistical tasks.
Funding: $650.0K
Rough estimate of the amount of funding raised
Funding: $650.0K
Rough estimate of the amount of funding raised
This company develops advanced visualization and interaction technologies for medical procedures, focusing on ophthalmic surgery. Their research centers on integrating intraoperative imaging like OCT with virtual reality and auditory feedback systems to enhance surgeon perception and performance. They create tools for real-time pose tracking and context-aware visualization to support robotic-assisted vitreoretinal surgery.
This startup offers a surgical training platform that utilizes AI-driven performance tracking and scoring, providing detailed evaluations of simulated surgical procedures through fluid dynamics and geometric analysis. By creating personalized 3D-printed models and integrating augmented reality, the platform enables surgeons to practice complex scenarios and refine their skills in a flexible, case-specific environment.
Funding: $7.6M
Rough estimate of the amount of funding raised
Funding: $7.6M
Rough estimate of the amount of funding raised