Solving the T-joint Problem in Reconstructing 2-D Objects. Stringfellow, C., Simpson, R., Enloe, K., Krasniqi, R., Ngo, T., Keown, R., & Hood, J. B. In Richard, P. & Braz, J., editors, 2010 IMAGAPP - Proceedings of the International Conference on Imaging Theory and Applications - Proceedings of the International Conference on Information Visualization Theory and Applications, Angers, France, May 17 - 21, 2010, pages 23–28, 2010. doi abstract bibtex 6 downloads This paper describes a solution to the T-joint problem in matching 2D fragments of an object. Matching fragments of an object is useful for solving puzzles or reassembling archaeological fragments. Many factors, such as the number of pieces and the complex shapes of pieces make this a difficult problem. Various approaches to this problem exist. This paper presents an approach to solving the T-joint problem, which comes up in assembling fragments. The work described in this paper starts with a 2D object that should be easy to extend to 3D problems.
@inproceedings{stringfellow_solving_2010,
title = {Solving the {T}-joint {Problem} in {Reconstructing} 2-{D} {Objects}},
doi = {https://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.296.8795},
abstract = {This paper describes a solution to the T-joint problem in matching 2D fragments of an object. Matching fragments of an object is useful for solving puzzles or reassembling archaeological fragments. Many factors, such as the number of pieces and the complex shapes of pieces make this a difficult problem. Various approaches to this problem exist. This paper presents an approach to solving the T-joint problem, which comes up in assembling fragments. The work described in this paper starts with a 2D object that should be easy to extend to 3D problems.},
language = {en},
booktitle = {2010 {IMAGAPP} - {Proceedings} of the {International} {Conference} on {Imaging} {Theory} and {Applications} - {Proceedings} of the {International} {Conference} on {Information} {Visualization} {Theory} and {Applications}, {Angers}, {France}, {May} 17 - 21, 2010},
author = {Stringfellow, Catherine and Simpson, Richard and Enloe, K. and Krasniqi, Rrezarta and Ngo, T. and Keown, R. and Hood, Jeffrey B.},
editor = {Richard, Paul and Braz, José},
year = {2010},
keywords = {Conference Full Papers},
pages = {23--28},
}
Downloads: 6
{"_id":"P3tZYK5eKJnH9W8bx","bibbaseid":"stringfellow-simpson-enloe-krasniqi-ngo-keown-hood-solvingthetjointprobleminreconstructing2dobjects-2010","author_short":["Stringfellow, C.","Simpson, R.","Enloe, K.","Krasniqi, R.","Ngo, T.","Keown, R.","Hood, J. B."],"bibdata":{"bibtype":"inproceedings","type":"inproceedings","title":"Solving the T-joint Problem in Reconstructing 2-D Objects","doi":"https://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.296.8795","abstract":"This paper describes a solution to the T-joint problem in matching 2D fragments of an object. Matching fragments of an object is useful for solving puzzles or reassembling archaeological fragments. Many factors, such as the number of pieces and the complex shapes of pieces make this a difficult problem. Various approaches to this problem exist. This paper presents an approach to solving the T-joint problem, which comes up in assembling fragments. The work described in this paper starts with a 2D object that should be easy to extend to 3D problems.","language":"en","booktitle":"2010 IMAGAPP - Proceedings of the International Conference on Imaging Theory and Applications - Proceedings of the International Conference on Information Visualization Theory and Applications, Angers, France, May 17 - 21, 2010","author":[{"propositions":[],"lastnames":["Stringfellow"],"firstnames":["Catherine"],"suffixes":[]},{"propositions":[],"lastnames":["Simpson"],"firstnames":["Richard"],"suffixes":[]},{"propositions":[],"lastnames":["Enloe"],"firstnames":["K."],"suffixes":[]},{"propositions":[],"lastnames":["Krasniqi"],"firstnames":["Rrezarta"],"suffixes":[]},{"propositions":[],"lastnames":["Ngo"],"firstnames":["T."],"suffixes":[]},{"propositions":[],"lastnames":["Keown"],"firstnames":["R."],"suffixes":[]},{"propositions":[],"lastnames":["Hood"],"firstnames":["Jeffrey","B."],"suffixes":[]}],"editor":[{"propositions":[],"lastnames":["Richard"],"firstnames":["Paul"],"suffixes":[]},{"propositions":[],"lastnames":["Braz"],"firstnames":["José"],"suffixes":[]}],"year":"2010","keywords":"Conference Full Papers","pages":"23–28","bibtex":"@inproceedings{stringfellow_solving_2010,\n\ttitle = {Solving the {T}-joint {Problem} in {Reconstructing} 2-{D} {Objects}},\n\tdoi = {https://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.296.8795},\n\tabstract = {This paper describes a solution to the T-joint problem in matching 2D fragments of an object. Matching fragments of an object is useful for solving puzzles or reassembling archaeological fragments. Many factors, such as the number of pieces and the complex shapes of pieces make this a difficult problem. Various approaches to this problem exist. This paper presents an approach to solving the T-joint problem, which comes up in assembling fragments. The work described in this paper starts with a 2D object that should be easy to extend to 3D problems.},\n\tlanguage = {en},\n\tbooktitle = {2010 {IMAGAPP} - {Proceedings} of the {International} {Conference} on {Imaging} {Theory} and {Applications} - {Proceedings} of the {International} {Conference} on {Information} {Visualization} {Theory} and {Applications}, {Angers}, {France}, {May} 17 - 21, 2010},\n\tauthor = {Stringfellow, Catherine and Simpson, Richard and Enloe, K. and Krasniqi, Rrezarta and Ngo, T. and Keown, R. and Hood, Jeffrey B.},\n\teditor = {Richard, Paul and Braz, José},\n\tyear = {2010},\n\tkeywords = {Conference Full Papers},\n\tpages = {23--28},\n}\n\n","author_short":["Stringfellow, C.","Simpson, R.","Enloe, K.","Krasniqi, R.","Ngo, T.","Keown, R.","Hood, J. B."],"editor_short":["Richard, P.","Braz, J."],"key":"stringfellow_solving_2010","id":"stringfellow_solving_2010","bibbaseid":"stringfellow-simpson-enloe-krasniqi-ngo-keown-hood-solvingthetjointprobleminreconstructing2dobjects-2010","role":"author","urls":{},"keyword":["Conference Full Papers"],"metadata":{"authorlinks":{}},"downloads":6},"bibtype":"inproceedings","biburl":"https://api.zotero.org/users/10198036/collections/2RHJXKSI/items?key=X0RoN8iO9RtTbrWfSkRasb7b&format=bibtex&limit=100","dataSources":["qJW2kWA3TDBCdtJWN","ADpzbvLQCLQu8ctuG","37aX9ioouEvzbunGp","JHDShjsHrs6ZHE4bz","RKWLwgnLkqmgdCXEW","A6LHtF3YYwr9M952d"],"keywords":["conference full papers"],"search_terms":["solving","joint","problem","reconstructing","objects","stringfellow","simpson","enloe","krasniqi","ngo","keown","hood"],"title":"Solving the T-joint Problem in Reconstructing 2-D Objects","year":2010,"downloads":6}