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Background: This study introduced an Augmented Reality (AR) navigation system to address limitations in conventional high tibial osteotomy (HTO). The objective was to enhance precision and efficiency in HTO procedures, overcoming challenges such as inconsistent postoperative alignment and potential neurovascular damage.
Methods: The AR-MR (Mixed Reality) navigation system, comprising HoloLens, Unity Engine, and Vuforia software, was employed for pre-clinical trials using tibial sawbone models. CT images generated 3D anatomical models, projected via HoloLens, allowing surgeons to interact through intuitive hand gestures. The critical procedure of target tracking, essential for aligning virtual and real objects, was facilitated by Vuforia's feature detection algorithm.
Results: In trials, the AR-MR system demonstrated significant reductions in both preoperative planning and intraoperative times compared to conventional navigation and metal 3D-printed surgical guides. The AR system, while exhibiting lower accuracy, exhibited efficiency, making it a promising option for HTO procedures. The preoperative planning time for the AR system was notably shorter (4 min) compared to conventional navigation (30.5 min) and metal guides (75.5 min). Intraoperative time for AR lasted 8.5 min, considerably faster than that of conventional navigation (31.5 min) and metal guides (10.5 min).
Conclusions: The AR navigation system presents a transformative approach to HTO, offering a trade-off between accuracy and efficiency. Ongoing improvements, such as the incorporation of two-stage registration and pointing devices, could further enhance precision. While the system may be less accurate, its efficiency renders it a potential breakthrough in orthopedic surgery, particularly for reducing unnecessary harm and streamlining surgical procedures.
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http://dx.doi.org/10.1186/s42836-024-00263-1 | DOI Listing |
JMIR Hum Factors
September 2025
KK Women's and Children's Hospital, Singapore, Singapore.
Background: Breast cancer treatment, particularly during the perioperative period, is often accompanied by significant psychological distress, including anxiety and uncertainty. Mobile health (mHealth) interventions have emerged as promising tools to provide timely psychosocial support through convenient, flexible, and personalized platforms. While research has explored the use of mHealth in breast cancer prevention, care management, and survivorship, few studies have examined patients' experiences with mobile interventions during the perioperative phase of breast cancer treatment.
View Article and Find Full Text PDFJ Chem Inf Model
September 2025
Songshan Lake Materials Laboratory, Dongguan 523808, PR China.
Large language models (LLMs) have demonstrated transformative potential for materials discovery in condensed matter systems, but their full utility requires both broader application scenarios and integration with ab initio crystal structure prediction (CSP), density functional theory (DFT) methods and domain knowledge to benefit future inverse material design. Here, we develop an integrated computational framework combining language model-guided materials screening with genetic algorithm (GA) and graph neural network (GNN)-based CSP methods to predict new photovoltaic material. This LLM + CSP + DFT approach successfully identifies a previously overlooked oxide material with unexpected photovoltaic potential.
View Article and Find Full Text PDFRespirology
September 2025
Division of Pulmonary and Critical Care Medicine, Department of Internal Medicine, Severance Hospital, Yonsei University College of Medicine, Seoul, South Korea.
J Healthc Sci Humanit
January 2024
Nursing Student, Tuskegee University School of Nursing, Bioethics Honors Program.
This personal narrative recounts the experience of a nursing student, Sonia Sweat, and her family as they battled COVID-19 in 2020. After Sonia fell ill, her husband Jason followed suit, and his condition quickly deteriorated. Despite her efforts to care for him at home, Jason was eventually hospitalized and placed in the ICU, battling severe complications.
View Article and Find Full Text PDFAJO Int
October 2025
Department of Ophthalmology & Visual Sciences, University of Michigan Medical School, 1000 Wall Street, Ann Arbor, MI, 48105, USA.
Purpose: Michigan Screening and Intervention for Glaucoma and Eye Health through Telemedicine Program (MI-SIGHT) was developed to facilitate access to glaucoma and eye disease screening and improve attendance at recommended follow-up in underserved communities. MI-SIGHT offered free eye disease screenings, low-cost glasses and for those who screened positive for glaucoma, personalized education, and language-concordant coaching grounded in motivational interviewing. The primary aims of this study were 1) To explore barriers to eye care among Latine participants with limited English proficiency (LEP) who screened positive for glaucoma, 2) to understand whether and how the MI-SIGHT program facilitated access to care and 3) to understand participant experience in MI-SIGHT to inform the development of future interventions.
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