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Trial Title:
The Evolution of Neuroendoscopy Guided by Head-mounted Mixed Reality Technique Navigation System in Neurosurgery
NCT ID:
NCT06516471
Condition:
Pineal Tumor
Brainstem Tumor
Surgery
Conditions: Official terms:
Neoplasms
Pinealoma
Brain Stem Neoplasms
Study type:
Interventional
Study phase:
N/A
Overall status:
Not yet recruiting
Study design:
Allocation:
Randomized
Intervention model:
Parallel Assignment
Primary purpose:
Prevention
Masking:
Single (Participant)
Intervention:
Intervention type:
Device
Intervention name:
Conventinal Navigation System Group
Description:
The preoperative planned model is projected onto the endoscopic display area in 3D using
a mixed reality headset, accurately matching the actual anatomical structure and tissue
displayed under the patient's endoscope to guide surgical resection of tumors.
Arm group label:
Conventinal Navigation System Group
Arm group label:
Mixed Reality Navigation System Group
Summary:
The pineal region and brainstem tumors are located at the central position of the cranial
cavity, surrounded by important neural structures and venous systems, leading to
challenges in preoperative diagnosis, adding uncertainty and complexity to treatment. For
a long time, surgical treatment of pineal region and brainstem tumors has been one of the
most challenging areas in neurosurgery.
With the development of neuroendoscopy and virtual endoscopy technologies, how to convert
complex three-dimensional bone, vascular, and neural images into virtual endoscopic
images and how to combine virtual endoscopy with neuro-navigation for endoscopic skull
base surgery to provide high-quality guidance images for surgery has become an urgent new
research issue.
The project team plans to develop a neuroendoscopy combined with a wearable mixed reality
glasses navigation system, integrating the advantages of wearable glasses and existing
surgical navigation systems.
This study aims to evaluate the role of mixed reality navigation systems in improving
total resection and reducing major complications in patients with pineal region and
brainstem tumors, as well as shortening surgical times.
Detailed description:
The pineal region and brainstem tumors are located at the central position of the cranial
cavity, surrounded by important neural structures and venous systems. They contain many
crucial neural functional nuclei, making surgical exposure and resection difficult.
Furthermore, the tumors in this region exhibit complex and diverse pathological types,
including mixed tumors, leading to challenges in preoperative diagnosis, adding
uncertainty and complexity to treatment. Pineal region tumors commonly cause obstructive
hydrocephalus, resulting in severe preoperative intracranial hypertension symptoms,
further complicating surgical management. For a long time, surgical treatment of pineal
region and brainstem tumors has been one of the most challenging areas in neurosurgery.
With the development of neuroendoscopy and virtual endoscopy technologies, how to convert
complex three-dimensional bone, vascular, and neural images into virtual endoscopic
images and how to combine virtual endoscopy with neuro-navigation for endoscopic skull
base surgery to provide high-quality guidance images for surgery has become an urgent new
research issue.
The project team plans to develop a neuroendoscopy combined with a wearable mixed reality
glasses navigation system, integrating the advantages of wearable glasses and existing
surgical navigation systems. While ensuring the accuracy of the navigation system, the
team aims to fundamentally change the output method of the system, enabling the surgical
navigation system to go beyond mere validation of effects and truly play a role of
"intuitive visual navigation." By holographically observing and tracking the relevant
blood vessels and nerves in the patient's area, the team has achieved high-precision
integration of virtual and real microanatomy structures, allowing for better and safer
handling of deep-seated tumors under the endoscope. This study aims to evaluate the role
of mixed reality navigation systems in improving total resection and reducing major
complications in patients with pineal region and brainstem tumors, as well as shortening
surgical times.
Criteria for eligibility:
Criteria:
Inclusion Criteria:
1. Preoperative suspicion of pineal region and brainstem tumors;
2. Age range from 18 to 70 years old;
3. Preoperative neurological function was good, with KPS>70 points;
4. Informed consent of patients and their families;
Exclusion Criteria:
1. Recurrent pineal region and brainstem tumors, previously received radiation therapy;
2. Combined with serious cardiovascular disease, other systemic malignancies, and other
diseases;
3. Participants who participate in clinical trials of other drugs or devices but fail
to achieve the main research endpoint;
4. The subjects are unable or unwilling to participate in this experiment
5. Preoperative discussion considers that patients are unable to undergo neurosurgical
endoscopic surgery and require the use of microscopy or other techniques to assist
in tumor resection;
Gender:
All
Minimum age:
18 Years
Maximum age:
70 Years
Healthy volunteers:
No
Start date:
July 2024
Completion date:
July 2027
Lead sponsor:
Agency:
Shanghai Zhongshan Hospital
Agency class:
Other
Source:
Shanghai Zhongshan Hospital
Record processing date:
ClinicalTrials.gov processed this data on November 12, 2024
Source: ClinicalTrials.gov page:
https://clinicaltrials.gov/ct2/show/NCT06516471