{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2026,1,16]],"date-time":"2026-01-16T20:05:22Z","timestamp":1768593922763,"version":"3.49.0"},"publisher-location":"New York, NY, USA","reference-count":54,"publisher":"ACM","license":[{"start":{"date-parts":[[2023,12,10]],"date-time":"2023-12-10T00:00:00Z","timestamp":1702166400000},"content-version":"vor","delay-in-days":0,"URL":"https:\/\/creativecommons.org\/licenses\/by-nd\/4.0\/"}],"funder":[{"name":"NSF China","award":["62022072, 62227806"],"award-info":[{"award-number":["62022072, 62227806"]}]}],"content-domain":{"domain":["dl.acm.org"],"crossmark-restriction":true},"short-container-title":[],"published-print":{"date-parts":[[2023,12,10]]},"DOI":"10.1145\/3610548.3618166","type":"proceedings-article","created":{"date-parts":[[2023,12,11]],"date-time":"2023-12-11T12:28:40Z","timestamp":1702297720000},"page":"1-12","update-policy":"https:\/\/doi.org\/10.1145\/crossmark-policy","source":"Crossref","is-referenced-by-count":1,"title":["Differentiable Dynamic Visible-Light Tomography"],"prefix":"10.1145","author":[{"ORCID":"https:\/\/orcid.org\/0009-0004-4381-0510","authenticated-orcid":false,"given":"Kaizhang","family":"Kang","sequence":"first","affiliation":[{"name":"State Key Lab of CAD&amp;CG, Zhejiang Univerisity, China"}]},{"ORCID":"https:\/\/orcid.org\/0009-0007-9645-8452","authenticated-orcid":false,"given":"Zoubin","family":"Bi","sequence":"additional","affiliation":[{"name":"State Key Lab of CAD&amp;CG, Zhejiang Univerisity, China"}]},{"ORCID":"https:\/\/orcid.org\/0009-0003-4439-2253","authenticated-orcid":false,"given":"Xiang","family":"Feng","sequence":"additional","affiliation":[{"name":"State Key Lab of CAD&amp;CG, Zhejiang Univerisity, China"}]},{"ORCID":"https:\/\/orcid.org\/0009-0005-1433-2553","authenticated-orcid":false,"given":"Yican","family":"Dong","sequence":"additional","affiliation":[{"name":"State Key Lab of CAD&amp;CG, Zhejiang Univerisity, China"}]},{"ORCID":"https:\/\/orcid.org\/0000-0003-4243-6112","authenticated-orcid":false,"given":"Kun","family":"Zhou","sequence":"additional","affiliation":[{"name":"State Key Lab of CAD&amp;CG, Zhejiang Univerisity, China and ZJU-FaceUnity Joint Lab of Intelligent Graphics, China"}]},{"ORCID":"https:\/\/orcid.org\/0000-0002-4404-2275","authenticated-orcid":false,"given":"Hongzhi","family":"Wu","sequence":"additional","affiliation":[{"name":"State Key Lab of CAD&amp;CG, Zhejiang Univerisity, China"}]}],"member":"320","published-online":{"date-parts":[[2023,12,11]]},"reference":[{"key":"e_1_3_2_2_1_1","volume-title":"Simultaneous algebraic reconstruction technique (SART): a superior implementation of the ART algorithm. Ultrasonic imaging 6, 1","author":"Andersen H","year":"1984","unstructured":"Anders\u00a0H Andersen and Avinash\u00a0C Kak. 1984. Simultaneous algebraic reconstruction technique (SART): a superior implementation of the ART algorithm. Ultrasonic imaging 6, 1 (1984), 81\u201394."},{"key":"e_1_3_2_2_2_1","doi-asserted-by":"crossref","unstructured":"Rushil Anirudh Hyojin Kim Jayaraman\u00a0J. Thiagarajan K.\u00a0Aditya Mohan Kyle Champley and Timo Bremer. 2018. Lose the Views: Limited Angle CT Reconstruction via Implicit Sinogram Completion. In CVPR.","DOI":"10.1109\/CVPR.2018.00664"},{"key":"e_1_3_2_2_3_1","volume-title":"Development of a compact computed tomographic apparatus for dental use.Dentomaxillofacial Radiology 28, 4","author":"Arai Y","year":"1999","unstructured":"Y Arai, E Tammisalo, K Iwai, K Hashimoto, and K Shinoda. 1999. Development of a compact computed tomographic apparatus for dental use.Dentomaxillofacial Radiology 28, 4 (1999), 245\u2013248."},{"key":"e_1_3_2_2_4_1","doi-asserted-by":"publisher","DOI":"10.1145\/1409060.1409085"},{"key":"e_1_3_2_2_5_1","doi-asserted-by":"publisher","DOI":"10.1145\/3528233.3530706"},{"key":"e_1_3_2_2_6_1","doi-asserted-by":"publisher","DOI":"10.1117\/12.770532"},{"key":"e_1_3_2_2_7_1","volume-title":"Time-resolved interventional cardiac C-arm cone-beam CT: An application of the PICCS algorithm","author":"Chen Guang-Hong","year":"2011","unstructured":"Guang-Hong Chen, Pascal Th\u00e9riault-Lauzier, Jie Tang, Brian Nett, Shuai Leng, Joseph Zambelli, Zhihua Qi, Nicholas Bevins, Amish Raval, Scott Reeder, 2011. Time-resolved interventional cardiac C-arm cone-beam CT: An application of the PICCS algorithm. IEEE transactions on medical imaging 31, 4 (2011), 907\u2013923."},{"key":"e_1_3_2_2_8_1","volume-title":"Spatial resolution properties in cone beam CT: a simulation study. Medical physics 35, 2","author":"Chen Lingyun","year":"2008","unstructured":"Lingyun Chen, Chris\u00a0C Shaw, Mustafa\u00a0C Altunbas, Chao-Jen Lai, and Xinming Liu. 2008a. Spatial resolution properties in cone beam CT: a simulation study. Medical physics 35, 2 (2008), 724\u2013734."},{"key":"e_1_3_2_2_9_1","volume-title":"A stationary computed tomography system with cylindrically distributed sources and detectors.Journal of X-ray science and technology 22 6","author":"Chen Yi","year":"2014","unstructured":"Yi Chen, Yan Xi, and Jun Zhao. 2014. A stationary computed tomography system with cylindrically distributed sources and detectors.Journal of X-ray science and technology 22 6 (2014), 707\u201325."},{"key":"e_1_3_2_2_10_1","volume-title":"Multisource inverse-geometry CT. Part I. System concept and development. Medical physics 43, 8Part1","author":"De\u00a0Man Bruno","year":"2016","unstructured":"Bruno De\u00a0Man, Jorge Uribe, Jongduk Baek, Dan Harrison, Zhye Yin, Randy Longtin, Jaydeep Roy, Bill Waters, Colin Wilson, Jonathan Short, 2016. Multisource inverse-geometry CT. Part I. System concept and development. Medical physics 43, 8Part1 (2016), 4607\u20134616."},{"key":"e_1_3_2_2_11_1","doi-asserted-by":"publisher","DOI":"10.1038\/s41598-019-49267-x"},{"key":"e_1_3_2_2_12_1","doi-asserted-by":"crossref","unstructured":"M-L Eckert Wolfgang Heidrich and Nils Thuerey. 2018. Coupled fluid density and motion from single views. In CGF Vol.\u00a037. 47\u201358.","DOI":"10.1111\/cgf.13511"},{"key":"e_1_3_2_2_13_1","doi-asserted-by":"publisher","DOI":"10.1364\/JOSAA.1.000612"},{"key":"e_1_3_2_2_14_1","doi-asserted-by":"publisher","DOI":"10.1016\/0022-5193(70)90109-8"},{"key":"e_1_3_2_2_15_1","volume-title":"DeepPET: A deep encoder\u2013decoder network for directly solving the PET image reconstruction inverse problem. Medical image analysis 54","author":"H\u00e4ggstr\u00f6m Ida","year":"2019","unstructured":"Ida H\u00e4ggstr\u00f6m, C\u00a0Ross Schmidtlein, Gabriele Campanella, and Thomas\u00a0J Fuchs. 2019. DeepPET: A deep encoder\u2013decoder network for directly solving the PET image reconstruction inverse problem. Medical image analysis 54 (2019), 253\u2013262."},{"key":"e_1_3_2_2_16_1","doi-asserted-by":"publisher","DOI":"10.1109\/TPAMI.2007.1056"},{"key":"e_1_3_2_2_17_1","volume-title":"Real-time cardiovascular MR with spatio-temporal artifact suppression using deep learning\u2013proof of concept in congenital heart disease. Magnetic resonance in medicine 81, 2","author":"Hauptmann Andreas","year":"2019","unstructured":"Andreas Hauptmann, Simon Arridge, Felix Lucka, Vivek Muthurangu, and Jennifer\u00a0A Steeden. 2019. Real-time cardiovascular MR with spatio-temporal artifact suppression using deep learning\u2013proof of concept in congenital heart disease. Magnetic resonance in medicine 81, 2 (2019), 1143\u20131156."},{"key":"e_1_3_2_2_18_1","volume-title":"Computerized transverse axial scanning (tomography): Part 1. Description of system. The British journal of radiology 46, 552","author":"Hounsfield Godfrey","year":"1973","unstructured":"Godfrey Hounsfield. 1973. Computerized transverse axial scanning (tomography): Part 1. Description of system. The British journal of radiology 46, 552 (1973), 1016\u20131022."},{"key":"e_1_3_2_2_19_1","volume-title":"Computed tomography: principles, design, artifacts, and recent advances. PM344","author":"Hsieh Jiang","year":"2003","unstructured":"Jiang Hsieh. 2003. Computed tomography: principles, design, artifacts, and recent advances. PM344 (2003)."},{"key":"e_1_3_2_2_20_1","doi-asserted-by":"publisher","DOI":"10.1371\/journal.pone.0079709"},{"key":"e_1_3_2_2_21_1","doi-asserted-by":"publisher","DOI":"10.1088\/2057-1976\/aa71bf"},{"key":"e_1_3_2_2_22_1","doi-asserted-by":"publisher","DOI":"10.1145\/1360612.1360686"},{"key":"e_1_3_2_2_23_1","volume-title":"ICCV, Vol.\u00a02","author":"Ihrke Ivo","unstructured":"Ivo Ihrke, B Goidluecke, and Marcus Magnor. 2005. Reconstructing the geometry of flowing water. In ICCV, Vol.\u00a02. IEEE, 1055\u20131060."},{"key":"e_1_3_2_2_24_1","doi-asserted-by":"crossref","unstructured":"Ivo Ihrke Kiriakos\u00a0N Kutulakos Hendrik\u00a0PA Lensch Marcus Magnor and Wolfgang Heidrich. 2010. Transparent and specular object reconstruction. In CGF Vol.\u00a029. 2400\u20132426.","DOI":"10.1111\/j.1467-8659.2010.01753.x"},{"key":"e_1_3_2_2_25_1","doi-asserted-by":"publisher","DOI":"10.1145\/1028523.1028572"},{"key":"e_1_3_2_2_26_1","doi-asserted-by":"publisher","DOI":"10.1109\/TIP.2017.2713099"},{"key":"e_1_3_2_2_27_1","volume-title":"Perceptual losses for real-time style transfer and super-resolution","author":"Johnson Justin","unstructured":"Justin Johnson, Alexandre Alahi, and Li Fei-Fei. 2016. Perceptual losses for real-time style transfer and super-resolution. In ECCV. Springer, 694\u2013711."},{"key":"e_1_3_2_2_28_1","volume-title":"Article 127","author":"Kang Kaizhang","year":"2018","unstructured":"Kaizhang Kang, Zimin Chen, Jiaping Wang, Kun Zhou, and Hongzhi Wu. 2018. Efficient Reflectance Capture Using an Autoencoder. TOG 37, 4, Article 127 (2018), 10\u00a0pages."},{"key":"e_1_3_2_2_29_1","doi-asserted-by":"publisher","DOI":"10.1088\/1361-6560\/abe9f8"},{"key":"e_1_3_2_2_30_1","doi-asserted-by":"publisher","DOI":"10.1117\/1.JMI.8.5.052114"},{"key":"e_1_3_2_2_31_1","doi-asserted-by":"publisher","DOI":"10.1109\/TCI.2015.2431913"},{"key":"e_1_3_2_2_32_1","volume-title":"A new volumetric CT machine for dental imaging based on the cone-beam technique: preliminary results. European radiology 8, 9","author":"Mozzo P","year":"1998","unstructured":"P Mozzo, C Procacci, A Tacconi, P Tinazzi\u00a0Martini, and IA Bergamo\u00a0Andreis. 1998. A new volumetric CT machine for dental imaging based on the cone-beam technique: preliminary results. European radiology 8, 9 (1998), 1558\u20131564."},{"key":"e_1_3_2_2_33_1","doi-asserted-by":"publisher","DOI":"10.1145\/2602140"},{"key":"e_1_3_2_2_34_1","volume-title":"Accelerating 3D Deep Learning with PyTorch3D. arXiv:2007.08501","author":"Ravi Nikhila","year":"2020","unstructured":"Nikhila Ravi, Jeremy Reizenstein, David Novotny, Taylor Gordon, Wan-Yen Lo, Justin Johnson, and Georgia Gkioxari. 2020. Accelerating 3D Deep Learning with PyTorch3D. arXiv:2007.08501 (2020)."},{"key":"e_1_3_2_2_35_1","volume-title":"NeAT: Neural Adaptive Tomography. TOG 41, 4","author":"R\u00fcckert Darius","year":"2022","unstructured":"Darius R\u00fcckert, Yuanhao Wang, Rui Li, Ramzi Idoughi, and Wolfgang Heidrich. 2022. NeAT: Neural Adaptive Tomography. TOG 41, 4 (2022)."},{"key":"e_1_3_2_2_36_1","doi-asserted-by":"publisher","DOI":"10.1145\/3386569.3392403"},{"key":"e_1_3_2_2_37_1","volume-title":"An inverse-geometry volumetric CT system with a large-area scanned source: A feasibility study. Medical physics 31, 9","author":"Schmidt Taly\u00a0Gilat","year":"2004","unstructured":"Taly\u00a0Gilat Schmidt, Rebecca Fahrig, Norbert\u00a0J Pelc, and Edward\u00a0G Solomon. 2004. An inverse-geometry volumetric CT system with a large-area scanned source: A feasibility study. Medical physics 31, 9 (2004), 2623\u20132627."},{"key":"e_1_3_2_2_38_1","doi-asserted-by":"publisher","DOI":"10.1088\/0031-9155\/59\/10\/2393"},{"key":"e_1_3_2_2_39_1","volume-title":"Respiratory correlated cone beam CT. Medical physics 32, 4","author":"Sonke Jan-Jakob","year":"2005","unstructured":"Jan-Jakob Sonke, Lambert Zijp, Peter Remeijer, and Marcel Van\u00a0Herk. 2005. Respiratory correlated cone beam CT. Medical physics 32, 4 (2005), 1176\u20131186."},{"key":"e_1_3_2_2_40_1","unstructured":"Derrek\u00a0W Spronk. 2021. Development and Evaluation of a Stationary Head Computed Tomography Scanner. Ph.\u00a0D. Dissertation. UNC Chapel Hill."},{"key":"e_1_3_2_2_41_1","unstructured":"Nils Thuerey and Tobias Pfaff. 2018. MantaFlow. http:\/\/mantaflow.com."},{"key":"e_1_3_2_2_42_1","doi-asserted-by":"crossref","unstructured":"Borislav Trifonov Derek Bradley and Wolfgang Heidrich. 2006. Tomographic Reconstruction of Transparent Objects. In EGSR. 51\u201360.","DOI":"10.1145\/1179849.1179918"},{"key":"e_1_3_2_2_43_1","doi-asserted-by":"publisher","DOI":"10.1088\/1361-6560\/abc09d"},{"key":"e_1_3_2_2_44_1","doi-asserted-by":"publisher","DOI":"10.1145\/3197517.3201313"},{"key":"e_1_3_2_2_45_1","volume-title":"A Novel Static CT System: The Design of Triple Planes CT and its Multi-Energy Simulation Results. Frontiers in Physics","author":"Yao Yidi","year":"2021","unstructured":"Yidi Yao, Liang Li, and Zhiqiang Chen. 2021. A Novel Static CT System: The Design of Triple Planes CT and its Multi-Energy Simulation Results. Frontiers in Physics (2021), 213."},{"key":"e_1_3_2_2_46_1","doi-asserted-by":"crossref","unstructured":"Guangming Zang Ramzi Idoughi Rui Li Peter Wonka and Wolfgang Heidrich. 2021. IntraTomo: self-supervised learning-based tomography via sinogram synthesis and prediction. In ICCV. 1960\u20131970.","DOI":"10.1109\/ICCV48922.2021.00197"},{"key":"e_1_3_2_2_47_1","volume-title":"Article 100 (Jul","author":"Zang Guangming","year":"2018","unstructured":"Guangming Zang, Ramzi Idoughi, Ran Tao, Gilles Lubineau, Peter Wonka, and Wolfgang Heidrich. 2018. Space-Time Tomography for Continuously Deforming Objects. TOG 37, 4, Article 100 (Jul 2018), 14\u00a0pages."},{"key":"e_1_3_2_2_48_1","doi-asserted-by":"publisher","DOI":"10.1145\/3306346.3322965"},{"key":"e_1_3_2_2_49_1","doi-asserted-by":"crossref","unstructured":"Guangming Zang Ramzi Idoughi Congli Wang Anthony Bennett Jianguo Du Scott Skeen William\u00a0L Roberts Peter Wonka and Wolfgang Heidrich. 2020. TomoFluid: reconstructing dynamic fluid from sparse view videos. In CVPR. 1870\u20131879.","DOI":"10.1109\/CVPR42600.2020.00194"},{"key":"e_1_3_2_2_50_1","volume-title":"Medical Imaging 2010: Physics of Medical Imaging, Vol.\u00a07622","author":"Zhang J","unstructured":"J Zhang, R Peng, S Chang, JP Lu, and O Zhou. 2010. Imaging quality assessment of multiplexing x-ray radiography based on multi-beam x-ray source technology. In Medical Imaging 2010: Physics of Medical Imaging, Vol.\u00a07622. SPIE, 1450\u20131457."},{"key":"e_1_3_2_2_51_1","volume-title":"Medical Imaging 2008: Physics of Medical Imaging, Vol.\u00a06913","author":"Zhang J","unstructured":"J Zhang, G Yang, S Chang, JP Lu, and O Zhou. 2008. Hadamard multiplexing radiography based on carbon nanotube field emission multi-pixel x-ray technology. In Medical Imaging 2008: Physics of Medical Imaging, Vol.\u00a06913. SPIE, 628\u2013635."},{"key":"e_1_3_2_2_52_1","volume-title":"Medical Imaging 2021: Physics of Medical Imaging, Vol.\u00a011595","author":"Zhang Tao","unstructured":"Tao Zhang, Hewei Gao, Li Zhang, Yuxiang Xing, and Zhiqiang Chen. 2021. 3D image reconstruction for symmetric-geometry CT with linearly distributed source and detector in a stationary configuration. In Medical Imaging 2021: Physics of Medical Imaging, Vol.\u00a011595. SPIE, 977\u2013980."},{"key":"e_1_3_2_2_53_1","volume-title":"Stationary computed tomography with source and detector in linear symmetric geometry: Direct filtered backprojection reconstruction. Medical physics 47, 5","author":"Zhang Tao","year":"2020","unstructured":"Tao Zhang, Yuxiang Xing, Li Zhang, Xin Jin, Hewei Gao, and Zhiqiang Chen. 2020. Stationary computed tomography with source and detector in linear symmetric geometry: Direct filtered backprojection reconstruction. Medical physics 47, 5 (2020), 2222\u20132236."},{"key":"e_1_3_2_2_54_1","doi-asserted-by":"publisher","DOI":"10.1186\/s42492-021-00096-8"}],"event":{"name":"SA '23: SIGGRAPH Asia 2023","location":"Sydney NSW Australia","acronym":"SA '23","sponsor":["SIGGRAPH ACM Special Interest Group on Computer Graphics and Interactive Techniques"]},"container-title":["SIGGRAPH Asia 2023 Conference Papers"],"original-title":[],"link":[{"URL":"https:\/\/dl.acm.org\/doi\/10.1145\/3610548.3618166","content-type":"unspecified","content-version":"vor","intended-application":"text-mining"},{"URL":"https:\/\/dl.acm.org\/doi\/pdf\/10.1145\/3610548.3618166","content-type":"unspecified","content-version":"vor","intended-application":"similarity-checking"}],"deposited":{"date-parts":[[2025,8,21]],"date-time":"2025-08-21T09:34:34Z","timestamp":1755768874000},"score":1,"resource":{"primary":{"URL":"https:\/\/dl.acm.org\/doi\/10.1145\/3610548.3618166"}},"subtitle":[],"short-title":[],"issued":{"date-parts":[[2023,12,10]]},"references-count":54,"alternative-id":["10.1145\/3610548.3618166","10.1145\/3610548"],"URL":"https:\/\/doi.org\/10.1145\/3610548.3618166","relation":{},"subject":[],"published":{"date-parts":[[2023,12,10]]},"assertion":[{"value":"2023-12-11","order":3,"name":"published","label":"Published","group":{"name":"publication_history","label":"Publication History"}}]}}