A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation Systems
Augmented reality (AR) surgical navigation systems have attracted considerable attention as they assist medical professionals in visualizing the location of ailments within the human body that are not readily seen with the naked eye. Taking medical imaging with a parallel C-shaped arm (C-arm) as an...
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doaj-f57768f5eceb4cc7a00c4f9354122d962020-11-25T02:20:45ZengMDPI AGMicromachines2072-666X2020-02-0111219410.3390/mi11020194mi11020194A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation SystemsSangkyu Lee0Duhwan Seong1Jiyong Yoon2Sungjun Lee3Hyoung Won Baac4Deukhee Lee5Donghee Son6Department of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaDepartment of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaDepartment of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaCenter for Bionics of Biomedical Research Institute, Korea Institute of Science and Technology, Seoul 02792, KoreaDepartment of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaCenter for Medical Robotics, Korea Institute of Science and Technology, Seoul 02792, KoreaDepartment of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaAugmented reality (AR) surgical navigation systems have attracted considerable attention as they assist medical professionals in visualizing the location of ailments within the human body that are not readily seen with the naked eye. Taking medical imaging with a parallel C-shaped arm (C-arm) as an example, surgical sites are typically targeted using an optical tracking device and a fiducial marker in real-time. These markers then guide operators who are using a multifunctional endoscope apparatus by signaling the direction or distance needed to reach the affected parts of the body. In this way, fiducial markers are used to accurately protect the vessels and nerves exposed during the surgical process. Although these systems have already shown potential for precision implantation, delamination of the fiducial marker, which is a critical component of the system, from human skin remains a challenge due to a mechanical mismatch between the marker and skin, causing registration problems that lead to poor position alignments and surgical degradation. To overcome this challenge, the mechanical modulus and stiffness of the marker patch should be lowered to approximately 150 kPa, which is comparable to that of the epidermis, while improving functionality. Herein, we present a skin-conformal, stretchable yet breathable fiducial marker for the application in AR-based surgical navigation systems. By adopting pore patterns, we were able to create a fiducial marker with a skin-like low modulus and breathability. When attached to the skin, the fiducial marker was easily identified using optical recognition equipment and showed skin-conformal adhesion when stretched and shrunk repeatedly. As such, we believe the marker would be a good fiducial marker candidate for patients under surgical navigation systems.https://www.mdpi.com/2072-666X/11/2/194fiducial markeraugmented realitysurgical navigation systemsskin-conformaladhesive patch |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sangkyu Lee Duhwan Seong Jiyong Yoon Sungjun Lee Hyoung Won Baac Deukhee Lee Donghee Son |
spellingShingle |
Sangkyu Lee Duhwan Seong Jiyong Yoon Sungjun Lee Hyoung Won Baac Deukhee Lee Donghee Son A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation Systems Micromachines fiducial marker augmented reality surgical navigation systems skin-conformal adhesive patch |
author_facet |
Sangkyu Lee Duhwan Seong Jiyong Yoon Sungjun Lee Hyoung Won Baac Deukhee Lee Donghee Son |
author_sort |
Sangkyu Lee |
title |
A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation Systems |
title_short |
A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation Systems |
title_full |
A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation Systems |
title_fullStr |
A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation Systems |
title_full_unstemmed |
A Skin-Conformal, Stretchable, and Breathable Fiducial Marker Patch for Surgical Navigation Systems |
title_sort |
skin-conformal, stretchable, and breathable fiducial marker patch for surgical navigation systems |
publisher |
MDPI AG |
series |
Micromachines |
issn |
2072-666X |
publishDate |
2020-02-01 |
description |
Augmented reality (AR) surgical navigation systems have attracted considerable attention as they assist medical professionals in visualizing the location of ailments within the human body that are not readily seen with the naked eye. Taking medical imaging with a parallel C-shaped arm (C-arm) as an example, surgical sites are typically targeted using an optical tracking device and a fiducial marker in real-time. These markers then guide operators who are using a multifunctional endoscope apparatus by signaling the direction or distance needed to reach the affected parts of the body. In this way, fiducial markers are used to accurately protect the vessels and nerves exposed during the surgical process. Although these systems have already shown potential for precision implantation, delamination of the fiducial marker, which is a critical component of the system, from human skin remains a challenge due to a mechanical mismatch between the marker and skin, causing registration problems that lead to poor position alignments and surgical degradation. To overcome this challenge, the mechanical modulus and stiffness of the marker patch should be lowered to approximately 150 kPa, which is comparable to that of the epidermis, while improving functionality. Herein, we present a skin-conformal, stretchable yet breathable fiducial marker for the application in AR-based surgical navigation systems. By adopting pore patterns, we were able to create a fiducial marker with a skin-like low modulus and breathability. When attached to the skin, the fiducial marker was easily identified using optical recognition equipment and showed skin-conformal adhesion when stretched and shrunk repeatedly. As such, we believe the marker would be a good fiducial marker candidate for patients under surgical navigation systems. |
topic |
fiducial marker augmented reality surgical navigation systems skin-conformal adhesive patch |
url |
https://www.mdpi.com/2072-666X/11/2/194 |
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