A Novel Registration Method for a Mixed Reality Navigation System Based on a Laser Crosshair Simulator: A Technical Note

Author:

Qi Ziyu12ORCID,Bopp Miriam H. A.23ORCID,Nimsky Christopher23ORCID,Chen Xiaolei1,Xu Xinghua1,Wang Qun1,Gan Zhichao14,Zhang Shiyu14,Wang Jingyue14ORCID,Jin Haitao145,Zhang Jiashu1

Affiliation:

1. Department of Neurosurgery, First Medical Center of Chinese PLA General Hospital, Beijing 100853, China

2. Department of Neurosurgery, University of Marburg, Baldingerstrasse, 35043 Marburg, Germany

3. Center for Mind, Brain and Behavior (CMBB), 35043 Marburg, Germany

4. Medical School of Chinese PLA, Beijing 100853, China

5. NCO School, Army Medical University, Shijiazhuang 050081, China

Abstract

Mixed Reality Navigation (MRN) is pivotal in augmented reality-assisted intelligent neurosurgical interventions. However, existing MRN registration methods face challenges in concurrently achieving low user dependency, high accuracy, and clinical applicability. This study proposes and evaluates a novel registration method based on a laser crosshair simulator, evaluating its feasibility and accuracy. A novel registration method employing a laser crosshair simulator was introduced, designed to replicate the scanner frame’s position on the patient. The system autonomously calculates the transformation, mapping coordinates from the tracking space to the reference image space. A mathematical model and workflow for registration were designed, and a Universal Windows Platform (UWP) application was developed on HoloLens-2. Finally, a head phantom was used to measure the system’s target registration error (TRE). The proposed method was successfully implemented, obviating the need for user interactions with virtual objects during the registration process. Regarding accuracy, the average deviation was 3.7 ± 1.7 mm. This method shows encouraging results in efficiency and intuitiveness and marks a valuable advancement in low-cost, easy-to-use MRN systems. The potential for enhancing accuracy and adaptability in intervention procedures positions this approach as promising for improving surgical outcomes.

Publisher

MDPI AG

Subject

Bioengineering

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