Dtsch Med Wochenschr 2011; 136(47): 2427-2433
DOI: 10.1055/s-0031-1292814
Übersicht | Review article
Chirurgie, Technologie
© Georg Thieme Verlag KG Stuttgart · New York

Augmented Reality: Verschmelzung von Realität und Virtualität in der Medizin

Augmented reality: merge of reality and virtuality in medicine
A. Rieger
1   Chirurgische Klinik, Klinikum rechts der Isar, Technische Universität München
,
T. Blum
2   Lehrstuhl für Informatikanwendungen in der Medizin & Augmented Reality, Technische Universität München
,
N. Navab
2   Lehrstuhl für Informatikanwendungen in der Medizin & Augmented Reality, Technische Universität München
,
H. Friess
1   Chirurgische Klinik, Klinikum rechts der Isar, Technische Universität München
,
M. E. Martignoni
1   Chirurgische Klinik, Klinikum rechts der Isar, Technische Universität München
› Author Affiliations
Further Information

Publication History

27 January 2011

18 August 2011

Publication Date:
17 November 2011 (online)

 
  • Literatur

  • 1 Blümchen K. Augmented Reality. Proseminar Simulation und Virtuelle Realität in der Medizin, Universität Karlsruhe 2001
  • 2 Cohen J, Cohen SA, Vora KC et al Multicenter, randomized, controlled trial of virtual-reality simulator training in acquisition of competency in colonoscopy. Gastrointest Endosc 2006; 64: 361-368
  • 3 Colt HG, Crawford SW, Galbraith 3rd O. Virtual reality bronchoscopy simulation: a revolution in procedural training. Chest 2001; 120: 1333-1339
  • 4 Davoudi M, Osann K, Colt HG. Validation of two instruments to assess technical bronchoscopic skill using virtual reality simulation. Respiration 2008; 76: 92-101
  • 5 De Buck S, Maes F, Ector J et al An augmented reality system for patient-specific guidance of cardiac catheter ablation procedures. IEEE Trans Med Imaging 2005; 24: 1512-1524
  • 6 Deutsch JE. Virtual reality and gaming systems to improve walking and mobility for people with musculoskeletal and neuromuscular conditions. Stud Health Technol Inform 2009; 145: 84-93
  • 7 Ferlitsch A, Glauninger P, Gupper A et al Evaluation of a virtual endoscopy simulator for training in gastrointestinal endoscopy.. Endoscopy 2002; 34: 698-702
  • 8 Ferrari V, Megali G, Troia E, Pietrabissa A, Mosca F. A 3-D mixed-reality system for stereoscopic visualization of medical dataset. IEEE Trans Biomed Eng 2009; 56: 2627-2633
  • 9 Feuerstein M, Mussack T, Heining SM, Navab N. Intraoperative laparoscope augmentation for port placement and resection planning in minimally invasive liver resection. IEEE Trans Med Imaging 2008; 27: 355-369
  • 10 Fichtinger G, Deguet A, Fischer G et al Image overlay for CT-guided needle insertions.. Comput Aided Surg 2005; 10: 241-255
  • 11 Figl M, Ede C, Hummel J et al A fully automated calibration method for an optical see-through head-mounted operating microscope with variable zoom and focus. IEEE Trans Med Imaging 2005; 24: 1492-1499
  • 12 Gallagher AG, Cates CU. Virtual reality training for the operating room and cardiac catheterisation laboratory. Lancet 2004; 364: 1538-1540
  • 13 Henderson S, Feiner S. Exploring the Benefits of Augmented Reality Documentation for Maintenance and Repair. IEEE Trans Vis Comput Graph 2010;
  • 14 Himberg H, Motai Y. Head orientation prediction: delta quaternions versus quaternions. IEEE Trans Syst Man Cybern B Cybern 2009; 39: 1382-1392
  • 15 John NW, Lim IS. Cybermedicine tools for communication and learning. J Vis Commun Med 2007; 30: 4-9
  • 16 Kim JH, Jang SH, Kim CS et al Use of virtual reality to enhance balance and ambulation in chronic stroke: a double-blind, randomized controlled study. Am J Phys Med Rehabil 2009; 88: 693-701
  • 17 Kruglikova I, Grantcharov TP, Drewes AM et al The impact of constructive feedback on training in gastrointestinal endoscopy using high-fidelity Virtual-Reality simulation: a randomised controlled trial. Gut 2010; 59: 181-185
  • 18 Kruglikova I, Grantcharov TP, Drewes AM et al Assessment of early learning curves among nurses and physicians using a high-fidelity virtual-reality colonoscopy simulator. Surg Endosc 2010; 24: 366-370
  • 19 Lee JD, Huang CH, Wang ST et al Fast-MICP for frameless image-guided surgery.. Med Phys 2010; 37: 4551-4559
  • 20 Lee SL, Lerotic M, Vitiello V et al From medical images to minimally invasive intervention: Computer assistance for robotic surgery. Comput Med Imaging Graph 2010; 34: 33-45
  • 21 Li W, Sie F, Bootsma G et al Geometric performance and efficiency of an optical tracking system for daily pre-treatment positioning in pelvic radiotherapy patients. Technol Cancer Res Treat 2011; 10: 163-170
  • 22 Liao H, Hata N, Nakajima S et al Surgical navigation by autostereoscopic image overlay of integral videography. IEEE Trans Inf Technol Biomed 2004; 8: 114-121
  • 23 Luo X, Kline T, Fischer H et al Integration of augmented reality and assistive devices for post-stroke hand opening rehabilitation.. Conf Proc IEEE Eng Med Biol Soc 2005; 7: 6855-6858
  • 24 Magee D, Zhu Y, Ratnalingam R et al An augmented reality simulator for ultrasound guided needle placement training. Med Biol Eng Comput 2007; 45: 957-967
  • 25 Milgram P, Takemura H, Utsumi A et al Augmented Reality: A class of displays on the reality-virtuality continuum. Proceedings of Telemanipulator and Telepresence Technologies 1994; 2351, 34: 282-292
  • 26 Nicolau SA, Pennec X, Soler L et al A complete augmented reality guidance system for liver punctures: first clinical evaluation. Med Image Comput Comput Assist Interv 2005; 8: 539-547
  • 27 Nicolau SA, Pennec X, Soler L et al An augmented reality system for liver thermal ablation: design and evaluation on clinical cases.. Med Image Anal 2009; 13: 494-506
  • 28 Nilsson S, Johansson BJ, Jonsson A. Cross-Organisational Collaboration Supported by Augmented Reality. . IEEE Trans Vis Comput Graph; 2010
  • 29 Pagador JB, Sanchez LF, Sanchez JA et al Augmented reality haptic (ARH): an approach of electromagnetic tracking in minimally invasive surgery.. Int J Comput Assist Radiol Surg 2011; 6: 257-263
  • 30 Park J, MacRae H, Musselman LJ et al Randomized controlled trial of virtual reality simulator training: transfer to live patients. Am J Surg 2007; 194: 205-211
  • 31 Paul P, Fleig O, Jannin P. Augmented virtuality based on stereoscopic reconstruction in multimodal image-guided neurosurgery: methods and performance evaluation. IEEE Trans Med Imaging 2005; 24: 1500-1511
  • 32 Riva G, Gamberini L. Virtual reality in telemedicine.. Telemed J E Health 2000; 6: 327-340
  • 33 Rosenthal M, State A, Lee J et al Augmented reality guidance for needle biopsies: an initial randomized, controlled trial in phantoms. Med Image Anal 2002; 6: 313-320
  • 34 Schuetz M, Moenk S, Vollmer J et al High degree of realism in teaching percutaneous coronary interventions by combining a virtual reality trainer with a full scale patient simulator. Simul Healthc 2008; 3: 242-246
  • 35 Shahidi R, Bax MR, Maurer Jr CR et al Implementation, calibration and accuracy testing of an image-enhanced endoscopy system. IEEE Trans Med Imaging 2002; 21: 1524-1535
  • 36 Shuhaiber JH. Augmented reality in surgery. Arch Surg 2004; 139: 170-174
  • 37 Stetten GD, Chib VS. Overlaying ultrasonographic images on direct vision. J Ultrasound Med 2001; 20: 235-240
  • 38 Sudra G, Eggers G, Schalck S et al Augmented reality with fibre optics. Stud Health Technol Inform 2006; 119: 538-540
  • 39 Sugimoto M, Yasuda H, Koda K et al Image overlay navigation by markerless surface registration in gastrointestinal, hepatobiliary and pancreatic surgery. J Hepatobiliary Pancreat Sci 2010; 17: 629-636
  • 40 Thomas RG, John NW, Delieu JM. Augmented reality for anatomical education. J Vis Commun Med 2010; 33: 6-15
  • 41 Van Herzeele I, Aggarwal R, Choong A et al Virtual reality simulation objectively differentiates level of carotid stent experience in experienced interventionalists. J Vasc Surg 2007; 46: 855-863
  • 42 Weidenbach M, Wild F, Scheer K et al Computer-based training in two-dimensional echocardiography using an echocardiography simulator. J Am Soc Echocardiogr 2005; 18: 362-366
  • 43 Wilson K, Guiraudon G, Jones D et al Dynamic cardiac mapping on patient-specific cardiac models. Med Image Comput Comput Assist Interv 2008; 11: 967-974
  • 44 Yambe T, Yoshizawa M, Tabayashi K et al Virtual percutaneous transluminal coronary angioplasty system for an educational support system. Artif Organs 1998; 22: 710-713
  • 45 Yang R, Huang X, Li S et al Toward the light field display: autostereoscopic rendering via a cluster of projectors. IEEE Trans Vis Comput Graph 2008; 14: 84-96