Skip to content

Feasibility and Safety of Augmented Reality (AR) in Liver Tumor Surgery

Feasibility and Safety of Augmented Reality (AR) Assistance System in Liver Tumor Surgery - a Single-center, Exploratory, Pilot Study

Status
Not yet recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07630610
Enrollment
6
Registered
2026-06-05
Start date
2026-06-01
Completion date
2027-02-01
Last updated
2026-06-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Liver Neoplasms

Keywords

Liver tumor resection, Augmented reality, Minimally invasive surgery

Brief summary

The purpose of the trial is to evaluate a computer-based Augmented Reality System intended to help surgeons perform keyhole surgery (laparoscopy) for the removal of liver tumors more efficiently and with greater patient safety. In keyhole surgery, the operation is performed using a small camera that is inserted into the abdominal cavity of the patient through surgical trocars placed through small incisions in the skin. The surgeon then performs the operation by guidance from the view from the camera, which shows the surgical area, i.e. the liver and the inside of the abdomen, on a screen in front of them. The clinical trial will evaluate a computer-based system that uses a technology known as augmented reality, or AR. In simple terms, this is a technology that superimposes a computer-generated image on a user's view of the real world, thus providing a composite view. In this case, a computer program will integrate an image showing the tumor's appearance and position inside the liver into the live video feed from the camera, which is then displayed on the existing TV screen, connected to the keyhole camera. Put simply, the AR-projection will appear as an illustrated overlay on the surface of the liver, showing the appearance and position of the tumor throughout the procedure. This may give the surgeon and operating room staff a better understanding of the tumor's location, helping them perform the procedure more safely, accurately and efficiently. To help the computer-based system with positioning of the illustrated overlay correctly on the liver, a small self-adhesive plastic marker, measuring 11x11 mm, will be placed on the surface of the liver while the operation is being carried out. The marker is inserted through the surgical trocars already placed in the abdominal cavity and will be removed from the body before the operation is completed. The purpose of the clinical trial is to assess whether this new technology can help achieve greater accuracy, increased patient safety and a more efficient surgical workflow when tumors in the liver are removed using keyhole surgery. A total of 6 participants will be included in the trial. The clinical trial has been approved by the Swedish Medical Products Agency following an opinion from the Swedish Ethical Review Authority.

Detailed description

Cancer is the second-leading global health threat, accounting for approximately 18% of fatalities worldwide and leading to 10 million deaths each year. In addition, in 2020, 19.3 million people were diagnosed with some type of cancer worldwide and the cumulative risk of getting cancer was as high as 39.6%. About 60% of cancer patients will require surgical intervention to remove the tumor at some point in their treatment pathway. In the past few decades, laparoscopic minimally invasive surgery (LMIS) has gained traction across various medical specialties, including oncology. This technique has consistently demonstrated improved postoperative outcomes compared with open surgery. The Navari System is a visualization tool for minimally invasive liver surgery, which will give the operator a visualization of the tumor's position under the tissue surface in real time during the surgical procedure. The system utilizes the video feed from the minimally invasive camera to provide the operator with an augmented reality (AR) overlay of the tumor. The AR-overlay is created from patient-specific x-ray data, provided in real-time during the surgical procedure, and is shown as an integrated part of the video feed from the minimally invasive camera. To provide the operator with depth perception, the system will provide two views simultaneously, one from the camera angle and one additional view from another angle selected through the Navari user interface. The rationale for this clinical investigation is to evaluate safety and performance of the Navari System, in its initial clinical application, minimally invasive liver tumor surgical resection.

Interventions

PROCEDUREAugmented reality guided liver tumor surgery

This is a first-in-human, clinical trial, using the augmented reality system developed by Navari Surgical

DEVICEAugmented reality (AR) guided liver tumor surgery

This is the first-in-human, clinical trial, for using the augmented reality system in patients undergoing minimally invasive liver surgery for the removal of liver tumors.

Sponsors

Navari Surgical AB
Lead SponsorINDUSTRY

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DEVICE_FEASIBILITY
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

1. Subject scheduled for liver tumor resection of one or more tumors. One tumor per surgery is always chosen as the study tumor and will be removed first. 2. The tumor must be susceptible to uncomplicated wedge resection within one to two segments. 3. The tumor has been diagnosed as malignant or is suspected to be malignant based on imaging or clinical assessment. 4. The tumor's size should not exceed 50 mm in any orientation. 5. Subject 18 years or older. 6. Subject is able to read and understand the Patient information which is written in Swedish. 7. Subject has given consent to study participation.

Exclusion criteria

1. Unresectable tumors. 2. Not uncomplicated resection (e.g. central resection, re-resection, or large resection, defined as resection of more than two segments). 3. Subject is not suitable for MIS, as judged by the principal investigator. 4. Subject with reduced kidney function. 5. Subject with known hypersensitivity to contrast agents. 6. Subject considered unable to comply with hospital's instructions, at the discretion of the principal investigator. 7. Subject is not suitable for inclusion in the opinion of the investigator. 8. Pregnant women.

Design outcomes

Primary

MeasureTime frameDescription
Number of radical resections and evaluation of resected tumor margins.5 weeksThe augmented reality system's ability to assist surgeons in achieving radical tumor resections (i.e. the resected tumor has a margin larger than 0 mm). The number of radical resections is recorded, and the system's predicted margin of 10 mm is compared with the resected tumor margin determined by pathological examination.

Secondary

MeasureTime frameDescription
Time to complete resection of the tumor.Day 0Time for complete resection of the tumor, from the point at which the surgeon starts the resection to the point at which the tumor is removed from the liver parenchyma.
Time for total procedure using the augmented reality system.Day 0Time for the total procedure using the Navari System, from when the Navari Landmark is placed on the liver surface to when the tumor is removed from the liver parenchyma.
Time for total surgical procedureDay 0Time for total procedure, from the first incision for applying the trocar to the last incision is closed.

Contacts

CONTACTMats Ahlenius
mats@navarisurgical.com+46735330301
CONTACTAxel Blomé
axel@navarisurgical.com+46736333384
PRINCIPAL_INVESTIGATORSvein Olav Bratlie, MD, PhD

Department of Surgery, Sahlgrenska University Hospital, Gothenburg, Sweden

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jun 6, 2026