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Published in: Pediatric Surgery International 4/2012

01-04-2012 | Original Article

Augmented reality navigation system for laparoscopic splenectomy in children based on preoperative CT image using optical tracking device

Authors: Satoshi Ieiri, Munenori Uemura, Kouzou Konishi, Ryota Souzaki, Yoshihiro Nagao, Norifumi Tsutsumi, Tomohiko Akahoshi, Kenoki Ohuchida, Takeshi Ohdaira, Morimasa Tomikawa, Kazuo Tanoue, Makoto Hashizume, Tomoaki Taguchi

Published in: Pediatric Surgery International | Issue 4/2012

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Abstract

Purpose

In endoscopic surgery, limited views and lack of tactile sensation restrict the surgeon’s abilities and cause stress to the surgeon. Therefore, an intra-operative navigation system is strongly recommended. We developed an augmented reality (AR) navigation system based on preoperative CT imaging. The purpose of this study is to evaluate the usefulness, feasibility, and accuracy of this system using laparoscopic splenectomy in children.

Methods

Volume images were reconstructed by three-dimensional (3D) viewer application. We used an optical tracking system for registration between volume image and body surface markers. The AR visualization was superimposed preoperative 3D CT images onto captured laparoscopic live images. This system was applied to six cases of laparoscopic splenectomy in children. To evaluate registration accuracy, distances from the marker position to the volume data were calculated.

Results

The operator recognized the hidden vascular variation of the splenic artery and vein, accessory spleen, and pancreatic tail by overlaying an image onto a laparoscopic live image. The registration accuracy of six cases was 5.30 ± 0.08, 5.71 ± 1.70, 10.1 ± 0.60, 18.8 ± 3.56, 4.06 ± 1.71, and 7.05 ± 4.71.

Conclusion

This navigation system provides real-time anatomical information, which cannot be otherwise visualized without navigation. The registration accuracy was acceptable in clinical operation.
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Literature
1.
go back to reference Marvik R, Lango T, Tangen GA, Andersen JO, Kaspersen JH, Ystgaard B, Sjolie E, Fougner R, Fjosne HE, Nagelhus Hernes TA (2004) Laparoscopic navigation pointer for three-dimensional image-guided surgery. Surg Endosc 18(8):1242–1248PubMedCrossRef Marvik R, Lango T, Tangen GA, Andersen JO, Kaspersen JH, Ystgaard B, Sjolie E, Fougner R, Fjosne HE, Nagelhus Hernes TA (2004) Laparoscopic navigation pointer for three-dimensional image-guided surgery. Surg Endosc 18(8):1242–1248PubMedCrossRef
2.
go back to reference Marvik R, Lango T, Tangen GA, Lindseth F, Yavuz Y, Nagelhus Hernes TA (2005) Image-guided laparoscopic surgery. Review and current status. Minerva Chir 60(5):305–325PubMed Marvik R, Lango T, Tangen GA, Lindseth F, Yavuz Y, Nagelhus Hernes TA (2005) Image-guided laparoscopic surgery. Review and current status. Minerva Chir 60(5):305–325PubMed
3.
go back to reference Takiguchi S, Sekimoto M, Fujiwara Y, Yasuda T, Yano M, Hori M, Murakami T, Nakamura H, Monden M (2004) Laparoscopic lymph node dissection for gastric cancer with intraoperative navigation using three-dimensional angio computed tomography images reconstructed as laparoscopic view. Surg Endosc 18(1):106–110PubMedCrossRef Takiguchi S, Sekimoto M, Fujiwara Y, Yasuda T, Yano M, Hori M, Murakami T, Nakamura H, Monden M (2004) Laparoscopic lymph node dissection for gastric cancer with intraoperative navigation using three-dimensional angio computed tomography images reconstructed as laparoscopic view. Surg Endosc 18(1):106–110PubMedCrossRef
4.
go back to reference Hong J, Matsumoto N, Ouchida R, Komune S, Hashizume M (2009) Medical navigation system for otologic surgery based on hybrid registration and virtual intraoperative computed tomography. IEEE Trans Biomed Eng 56(2):426–432PubMedCrossRef Hong J, Matsumoto N, Ouchida R, Komune S, Hashizume M (2009) Medical navigation system for otologic surgery based on hybrid registration and virtual intraoperative computed tomography. IEEE Trans Biomed Eng 56(2):426–432PubMedCrossRef
5.
go back to reference Matsumoto N, Hong J, Hashizume M, Komune S (2009) A minimally invasive registration method using surface template-assisted marker positioning (STAMP) for image-guided otologic surgery. Otolaryngol Head Neck Surg 140(1):96–102PubMedCrossRef Matsumoto N, Hong J, Hashizume M, Komune S (2009) A minimally invasive registration method using surface template-assisted marker positioning (STAMP) for image-guided otologic surgery. Otolaryngol Head Neck Surg 140(1):96–102PubMedCrossRef
6.
go back to reference Fujiwara M, Kodera Y, Satake H, Misawa K, Miura S, Nakayama G, Ohashi N, Koike M, Nakao A (2008) Navigation for laparoscopic gastrectomy with 3-dimensional computed tomography (3D-CT). Hepatogastroenterology 55(85):1201–1205PubMed Fujiwara M, Kodera Y, Satake H, Misawa K, Miura S, Nakayama G, Ohashi N, Koike M, Nakao A (2008) Navigation for laparoscopic gastrectomy with 3-dimensional computed tomography (3D-CT). Hepatogastroenterology 55(85):1201–1205PubMed
7.
go back to reference Sugimoto M (2009) Recent advances in visualization, imaging, and navigation in hepatobiliary and pancreatic sciences. J Hepatobiliary Pancreat Surg Sugimoto M (2009) Recent advances in visualization, imaging, and navigation in hepatobiliary and pancreatic sciences. J Hepatobiliary Pancreat Surg
8.
go back to reference Kinoshita Y, Souzaki R, Tajiri T, Ieiri S, Hashizume M, Taguchi T (2009) A preoperative e valuation for neo-infantile liver tumors using a three-dimensional reconstruction of multidetector row CT. Oncol Rep 21(4):881–886PubMedCrossRef Kinoshita Y, Souzaki R, Tajiri T, Ieiri S, Hashizume M, Taguchi T (2009) A preoperative e valuation for neo-infantile liver tumors using a three-dimensional reconstruction of multidetector row CT. Oncol Rep 21(4):881–886PubMedCrossRef
9.
go back to reference Konishi KNM, Kakeji Y, Tanoue K, Kawanaka H, Yamaguchi Y, Ieiri S, Sato Y, Maehara Y, Tamura S, Hashizume M (2007) A real-time navigation system for laparoscopic surgery based on three-dimensional ultrasound using magneto-optic hybrid tracking configuration. Int J Comput Assist Radiol Surg 2(1):1–10CrossRef Konishi KNM, Kakeji Y, Tanoue K, Kawanaka H, Yamaguchi Y, Ieiri S, Sato Y, Maehara Y, Tamura S, Hashizume M (2007) A real-time navigation system for laparoscopic surgery based on three-dimensional ultrasound using magneto-optic hybrid tracking configuration. Int J Comput Assist Radiol Surg 2(1):1–10CrossRef
10.
go back to reference Nakamoto M, Nakada K, Sato Y, Konishi K, Hashizume M, Tamura S (2008) Intraoperative magnetic tracker calibration using a magneto-optic hybrid tracker for 3-D ultrasound-based navigation in laparoscopic surgery. IEEE Trans Med Imaging 27(2):255–270PubMedCrossRef Nakamoto M, Nakada K, Sato Y, Konishi K, Hashizume M, Tamura S (2008) Intraoperative magnetic tracker calibration using a magneto-optic hybrid tracker for 3-D ultrasound-based navigation in laparoscopic surgery. IEEE Trans Med Imaging 27(2):255–270PubMedCrossRef
11.
go back to reference Hong J, Hashizume M (2010) An effective point-based registration tool for surgical navigation. Surg Endosc 24(4):944–948PubMedCrossRef Hong J, Hashizume M (2010) An effective point-based registration tool for surgical navigation. Surg Endosc 24(4):944–948PubMedCrossRef
12.
go back to reference Maresceaux J, Soler L, Ceulemans R, Garcia A, Henri M, Dutson E (2002) Image fusion, virtual reality, robotics and navigation. Effects on surgical practice. Chirurg 73(5):422–427PubMedCrossRef Maresceaux J, Soler L, Ceulemans R, Garcia A, Henri M, Dutson E (2002) Image fusion, virtual reality, robotics and navigation. Effects on surgical practice. Chirurg 73(5):422–427PubMedCrossRef
13.
go back to reference Ukimura O, Gill IS (2008) Imaging-assisted endoscopic surgery: Cleveland Clinic experience. J Endourol 22(4):803–810PubMedCrossRef Ukimura O, Gill IS (2008) Imaging-assisted endoscopic surgery: Cleveland Clinic experience. J Endourol 22(4):803–810PubMedCrossRef
Metadata
Title
Augmented reality navigation system for laparoscopic splenectomy in children based on preoperative CT image using optical tracking device
Authors
Satoshi Ieiri
Munenori Uemura
Kouzou Konishi
Ryota Souzaki
Yoshihiro Nagao
Norifumi Tsutsumi
Tomohiko Akahoshi
Kenoki Ohuchida
Takeshi Ohdaira
Morimasa Tomikawa
Kazuo Tanoue
Makoto Hashizume
Tomoaki Taguchi
Publication date
01-04-2012
Publisher
Springer-Verlag
Published in
Pediatric Surgery International / Issue 4/2012
Print ISSN: 0179-0358
Electronic ISSN: 1437-9813
DOI
https://doi.org/10.1007/s00383-011-3034-x

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