Metaverse Platform Implementation
AI, Security, and Applications
Herausgeber: Hu, Fei; Hei, Xiali (University of Louisiana at Lafayette; Cao, Shengting
Metaverse Platform Implementation
AI, Security, and Applications
Herausgeber: Hu, Fei; Hei, Xiali (University of Louisiana at Lafayette; Cao, Shengting
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Metaverse Platform Implementation: AI, Security, and Applications provides a comprehensive exploration of the engineering and scientific principles behind the metaverse, a 3D digital world designed to replicate and enhance physical reality through some advanced technologies.
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Metaverse Platform Implementation: AI, Security, and Applications provides a comprehensive exploration of the engineering and scientific principles behind the metaverse, a 3D digital world designed to replicate and enhance physical reality through some advanced technologies.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 268
- Erscheinungstermin: 30. Dezember 2025
- Englisch
- Abmessung: 165mm x 241mm x 23mm
- Gewicht: 580g
- ISBN-13: 9781032663555
- ISBN-10: 1032663553
- Artikelnr.: 73495170
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 268
- Erscheinungstermin: 30. Dezember 2025
- Englisch
- Abmessung: 165mm x 241mm x 23mm
- Gewicht: 580g
- ISBN-13: 9781032663555
- ISBN-10: 1032663553
- Artikelnr.: 73495170
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Dr. Fei Hu has already published over 10 technical books with CRC publisher. His research focus includes cyber security and networking. He is currently a Professor in the Department of Electrical and Computer Engineering at the University of Alabama, Tuscaloosa, Alabama, USA. He obtained his Ph.D. degrees at Tongji University (Shanghai, China) in the field of Signal Processing (in 1999), and at Clarkson University (New York, USA) in Electrical and Computer Engineering (in 2002). He has published over 200 journal/conference papers and books. Dr. Hu's research has been supported by U.S. National Science Foundation, Cisco, Sprint, and other sources. Mr. Shengting Cao is PhD student is ECE department at UA. He will graduate in 2025. His research focus is Metaverse. He has published multiple IEEE Transaction papers so far. He has created a set of 3D object reconstruction algorithms and tools. He has invented the technology of using a single-belt treadmill to replace dual-belt treadmill when the user is conducting rehabilitation training. Dr. Xiali (Sharon) Hei is an Alfred and Helen M. Lamson Endowed associate professor in the School of Computing and Informatics at the University of Louisiana at Lafayette since August 15th, 2023. She was an Alfred and Helen M. Lamson Endowed assistant professor in the School of Computing and Informatics at the University of Louisiana at Lafayette from August 2017 to August 15th, 2023. During her sabbatical year of 2023-2024, she visited Dr. Insup Lee at the University of Pennsylvania. Prior to joining the University of Louisiana at Lafayette, she was an assistant professor at Delaware State University from 2015-2017 and an assistant professor at Frostburg State University from 2014-2015. Note that Delaware State University and Frostburg State University are two teaching schools. Sharon received her Ph.D. in computer science from Temple University in 2014, focusing on computer security.
Part I. Basic Technologies for the Metaverse
1. Neural Rendering Technology in VR and AR
2. 3D Reconstruction of Metaverse Objects Using a Single Photograph
3. Efficient and Scalable 3D Point Cloud Segmentation for the Metaverse
4. Metaverse-Oriented Semantic Communications
5. High-Bandwidth Communication Technologies for the Metaverse
6. Virtual Hearts: Navigating Love
Faith
and Ethics in the Age of 3D Virtual Humans in the Metaverse
Part II. Security Issues in the Metaverse
7. A Review on Security Solutions for Virtual Reality Systems
8. Metaverse Security: Principles and Experiments
9. Attacks in Metaverse Platforms: Recent Trends
10. Security and Privacy for AR/VR Spaces
Part III. Metaverse Applications
11. 3D Holograms for Stroke Rehabilitation
12. The Metaverse for Medical Rehabilitation Applications
13. Empowering Patient Care through Metaverse Technologies
14. Virtual Reality Medical Technology in the Metaverse: A Digital Twin Approach and Cybersecurity Considerations
1. Neural Rendering Technology in VR and AR
2. 3D Reconstruction of Metaverse Objects Using a Single Photograph
3. Efficient and Scalable 3D Point Cloud Segmentation for the Metaverse
4. Metaverse-Oriented Semantic Communications
5. High-Bandwidth Communication Technologies for the Metaverse
6. Virtual Hearts: Navigating Love
Faith
and Ethics in the Age of 3D Virtual Humans in the Metaverse
Part II. Security Issues in the Metaverse
7. A Review on Security Solutions for Virtual Reality Systems
8. Metaverse Security: Principles and Experiments
9. Attacks in Metaverse Platforms: Recent Trends
10. Security and Privacy for AR/VR Spaces
Part III. Metaverse Applications
11. 3D Holograms for Stroke Rehabilitation
12. The Metaverse for Medical Rehabilitation Applications
13. Empowering Patient Care through Metaverse Technologies
14. Virtual Reality Medical Technology in the Metaverse: A Digital Twin Approach and Cybersecurity Considerations
Part I. Basic Technologies for the Metaverse
1. Neural Rendering Technology in VR and AR
2. 3D Reconstruction of Metaverse Objects Using a Single Photograph
3. Efficient and Scalable 3D Point Cloud Segmentation for the Metaverse
4. Metaverse-Oriented Semantic Communications
5. High-Bandwidth Communication Technologies for the Metaverse
6. Virtual Hearts: Navigating Love
Faith
and Ethics in the Age of 3D Virtual Humans in the Metaverse
Part II. Security Issues in the Metaverse
7. A Review on Security Solutions for Virtual Reality Systems
8. Metaverse Security: Principles and Experiments
9. Attacks in Metaverse Platforms: Recent Trends
10. Security and Privacy for AR/VR Spaces
Part III. Metaverse Applications
11. 3D Holograms for Stroke Rehabilitation
12. The Metaverse for Medical Rehabilitation Applications
13. Empowering Patient Care through Metaverse Technologies
14. Virtual Reality Medical Technology in the Metaverse: A Digital Twin Approach and Cybersecurity Considerations
1. Neural Rendering Technology in VR and AR
2. 3D Reconstruction of Metaverse Objects Using a Single Photograph
3. Efficient and Scalable 3D Point Cloud Segmentation for the Metaverse
4. Metaverse-Oriented Semantic Communications
5. High-Bandwidth Communication Technologies for the Metaverse
6. Virtual Hearts: Navigating Love
Faith
and Ethics in the Age of 3D Virtual Humans in the Metaverse
Part II. Security Issues in the Metaverse
7. A Review on Security Solutions for Virtual Reality Systems
8. Metaverse Security: Principles and Experiments
9. Attacks in Metaverse Platforms: Recent Trends
10. Security and Privacy for AR/VR Spaces
Part III. Metaverse Applications
11. 3D Holograms for Stroke Rehabilitation
12. The Metaverse for Medical Rehabilitation Applications
13. Empowering Patient Care through Metaverse Technologies
14. Virtual Reality Medical Technology in the Metaverse: A Digital Twin Approach and Cybersecurity Considerations







