경부 종물 환자의 이해도 개선을 위한 3차원 재건 영상의 활용

3D Reconstructed Image of Neck Mass to Improve Patient's Understanding

  • 유영삼 (인제대학교 의과대학 상계백병원 이비인후과학교실)
  • Yoo, Young-Sam (Department of Otolaryngology Head and Neck Surgery, Sanggye Paik Hospital, College of Medicine, Inje University)
  • 발행 : 2010.11.26

초록

Objectives : Patients with neck tumor and their family need every information about the disease. Especially, the size and location are confusing with verbal information. With the aid of CT, the problem had some answer, but it needs some medical education. We would like to know the usefullness of 3D reconstructed images in patient education about the disease. Material and Methods : Neck CT data were collected from 10 patients with various neck tumors and converted to 3D reconstructed images. Understanding of the patients about the size and location of tumors were rated from questionaires using axial CT images and 3D images. Results : Understanding score about 3D images were greater than that of CT images(p<0.006). Conclusion : 3D reconstructed images of CT could give the patients more real visual information about the disease.

키워드

참고문헌

  1. Shin BS, Rho S, Jung HS, Jung MS, Lee YS. Fast reconstruction of 3D Human model from contour lines J Biomed Eng Res. 2004;25(6):537-543.
  2. Han YH, Lee Eh, Jang YG, Hong SH. A study on the 3D reconstruction and representation of CT images J of KOSOMBE. 1994; 15(2):201-207.
  3. Shin YS, Kim HS. 3D reconstruction of tissue from a few of MRI images using radial basis function 한국해양정보통신학회논문지 2008;12(11):2078-2082.
  4. Robinson RJ, Russo J, Doolittle RL. 3D airway reconstruction using visible human data set and human casts with comparison to morphometric data. Anat Rec(Hoboken). 2009 Jul;292(7): 1028-1044. https://doi.org/10.1002/ar.20898
  5. Hu A, Wilson T, Ladak H, Haase P, Fung K. Three-dimensional educational computer model of the larynx: Voicing a new direction. Arch Otolaryngol Head Neck Surg. 2009 Jul;135(7):677-681. https://doi.org/10.1001/archoto.2009.68
  6. Byun SW. Three-Dimensional Computer Graphics in Otology- Korean J Otorhinolaryngol-Head Neck Surg 2009;52(2):104-112. https://doi.org/10.3342/kjorl-hns.2009.52.2.104
  7. Jun BJ, Song SW, Park CS, Lee DH, Kim DG, Cho KJ, Cho JH. The Analysis of Maxillary Sinus Aeration Dependent on Aging Process: Volume Assessment by Three Dimensional Reconstruction by High Resolutional CT ScanningKorean J Otolaryngol 2005;48(2):172-177.
  8. Cho SH, Lee HC, Park CW. CT angiography with 3D reconstruction for the initial evaluation of penetrating neck injury with retained knife. Otolaryngol Head Neck Surg. 2007 Mar;136(3): 504-505. https://doi.org/10.1016/j.otohns.2006.08.015
  9. Shiraishi I, Yamagishi M, Hamaoka K, Fukuzawa M, Yagihara T. Simulative operation on congenital heart disease using rubberlike urethane stereolithographic biomodels based on 3D datasets of multislice computed tomography. Eur J Cardiothorac Surg. 2010 Feb;37(2):302-306.
  10. Hoehnke C, Eder M, Papadopulos NA, Zimmermann A, Brockmann G, Biemer E, Kovacs L. Minimal invasive reconstruction of posttraumatic hemi facial atrophy by 3-D computer-assisted lipofilling. J Plast Reconstr Aesthet Surg. 2007;60(10):1138-44. https://doi.org/10.1016/j.bjps.2007.01.068
  11. Lanza A, Laino L, Rossiello L, Perillo L, Ermo AD, Cirillo N. Clinical Practice: Giant Cell Tumour of the Jaw Mimicking Bone Malignancy on Three-Dimensional Computed Tomography (3D CT) Reconstruction. Open Dent J. 2008;2:73-77. https://doi.org/10.2174/1874210600802010073
  12. Kim SM, Kim SJ, Seo SY, Tack GR. A study on automated 3-D reconstruction based on 2-D CT image of lumbar spine. J Biomed Eng Res 1999;20(5):581-586.
  13. Min KJ, Kim JK, Cho JB, Choi K. A study on 3D reconstruction and simulated implantation of human femur using consecutive CT-images J Biomed Eng Res 1999;20(2):155-163.