최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
NTIS 바로가기Nondestructive testing and evaluation, v.36 no.2, 2021년, pp.176 - 194
Jeon, Soomin (Department of Mathematical Sciences, KAIST, Daejeon, South Korea) , Kim, Seongeun (Department of Mathematical Sciences, KAIST, Daejeon, South Korea) , Lee, Chang-Ock (Department of Mathematical Sciences, KAIST, Daejeon, South Korea)
초록이 없습니다.
Alvarez, R E, Macovski, A. Energy-selective reconstructions in X-ray computerised tomography. Physics in medicine & biology, vol.21, no.5, 733-744.
Gleason, S.S., Sari-Sarraf, H., Paulus, M.J., Johnson, D.K., Norton, S.J., Abidi, M.A.. Reconstruction of multi-energy X-ray computed tomography images of laboratory mice. IEEE transactions on nuclear science, vol.46, no.4, 1081-1086.
Joseph, Peter M., Spital, Robin D.. A Method for Correcting Bone Induced Artifacts in Computed Tomography Scanners :. Journal of computer assisted tomography, vol.2, no.1, 100-108.
Kyriakou, Yiannis, Meyer, Esther, Prell, Daniel, Kachelrieß, Marc. Empirical beam hardening correction (EBHC) for CT. Medical physics, vol.37, no.10, 5179-5187.
Meagher, J.M., Mote, C.D., Skinner, H.B.. CT image correction for beam hardening using simulated projection data. IEEE transactions on nuclear science, vol.37, no.4, 1520-1524.
Sukovic, P., Clinthorne, N.H.. Penalized weighted least-squares image reconstruction for dual energy X-ray transmission tomography. IEEE transactions on medical imaging, vol.19, no.11, 1075-1081.
Van Gompel, G., Van Slambrouck, K., Defrise, M., Batenburg, K. J., de Mey, J., Sijbers, J., Nuyts, J.. Iterative correction of beam hardening artifacts in CT : Iterative correction of beam hardening artifacts in CT. Medical physics, vol.38, no.suppl1, S36-S49.
Vedula, V.S.V.M., Munshi, P.. An improved algorithm for beam-hardening corrections in experimental X-ray tomography. NDT & E international : independent nondestructive testing and evaluation, vol.41, no.1, 25-31.
Gjesteby, Lars, De Man, Bruno, Jin, Yannan, Paganetti, Harald, Verburg, Joost, Giantsoudi, Drosoula, Wang, Ge. Metal Artifact Reduction in CT: Where Are We After Four Decades?. IEEE access : practical research, open solutions, vol.4, 5826-5849.
Meyer, Esther, Raupach, Rainer, Lell, Michael, Schmidt, Bernhard, Kachelrieß, Marc. Normalized metal artifact reduction (NMAR) in computed tomography. Medical physics, vol.37, no.10, 5482-5493.
Uneri, A, Zhang, X, Yi, T, Stayman, J W, Helm, P A, Osgood, G M, Theodore, N, Siewerdsen, J H. Known-component metal artifact reduction (KC-MAR) for cone-beam CT. Physics in medicine & biology, vol.64, no.16, 165021-.
J Xray Sci Technol Jeon S 413 26 2018
Osher, Stanley. Fronts propagating with curvature-dependent speed: Algorithms based on Hamilton-Jacobi formulations. Journal of computational physics, vol.79, no.1, 12-49.
Chan, T.F., Vese, L.A.. Active contours without edges. IEEE transactions on image processing : a publication of the IEEE Signal Processing Society, vol.10, no.2, 266-277.
Cremers, D., Sochen, N., Schnorr, C.. Towards Recognition-Based Variational Segmentation Using Shape Priors and Dynamic Labeling. Lecture notes in computer science, vol.2695, 388-400.
Osher, Stanley, Rudin, Leonid I.. Feature-Oriented Image Enhancement Using Shock Filters. SIAM journal on numerical analysis : a publication of the Society of Industrial and Applied Mathematics, vol.27, no.4, 919-940.
Jaberipour, Majid, Khorram, Esmaile, Karimi, Behrooz. Particle swarm algorithm for solving systems of nonlinear equations. Computers & mathematics with applications, vol.62, no.2, 566-576.
Novi Commentarii academiae scientiarum Petropolitanae Euler L 189 20 1776
Hubbell JH, Seltzer SM. Tables of X-ray mass attenuation coefficients and mass energy- absorption coefficients (version 1.4) [Online]. Gaithersburg: National Institute of Standards and Technology; 2004. (Originally published as NISTIR), p. 5632. Available from: http://physics.nist.gov/xaamdi
해당 논문의 주제분야에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.