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for image enhancement. He pioneered the application of Earth Mover’s
Distance from Optimal Mass Transport (OMT) theory and related metrics to image analysis problems and network data, including cancer systems biology, and has published numerous seminal works in this area. Tannenbaum further
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to show that the reachability does not imply pole assignability for systems defined over polynomial rings in two or more variables over an arbitrary field. He pioneered the use of
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in 2000, and the
International Symposium on the Mathematical Theory of Networks and Systems (MTNS) in 2012. He is also well known as one of the authors of the textbook
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in 2008. He was named as a 2023 International
Federation of Automatic Control (IFAC) Fellow "for foundational contributions to robust control and computer vision".
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in
Switzerland, and the Weizmann Institute, from 1978 to 1983. While at the Weizmann Institute, he also became an associate professor at the
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who finished his career as a
Distinguished Professor in the Departments of Computer Science and Applied Mathematics & Statistics at the
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as a professor of computer science and applied mathematics in 2013. Stony Brook named him as a distinguished professor in 2015.
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formulated a new approach to optimal mass transport (Monge-Kantorovich) theory in joint work with Steven Haker and
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Elkin, R., Oh, J. H., Dela Cruz, F., Norton, L., Deasy, J. O., Kung, A. L., Tannenbaum, A. R. (4 January 2024).
444:"Dynamic network curvature analysis of gene expression reveals novel potential therapeutic targets in sarcoma"
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Sandhu, R., Georgiou, T., Reznik, E., Zhu, L., Kolesov, I., Senbabaoglu, Y., Tannenbaum, A. (14 July 2015).
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and Bruce
Francis), which is currently a standard introduction to robust control at the graduate level.
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489:"Plenary Speaker 20th International Symposium on the Mathematical Theory of Networks and Systems"
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In the next years he held overlapping longer-term full professorships, from 1986 to 2002 at the
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in Israel from 1976 to 1978, and then held research positions at the
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He gave numerous plenary talks at major conferences including the
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He pioneered the field of robust control with the solution of the
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Tannenbaum's research covered numerous areas, including
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three years later, in 1976. His doctoral dissertation,
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405:"Graph Curvature for Differentiating Cancer Networks"
271:, graduating in 1973. He completed a doctorate at
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365:was a biophysicist and applied mathematician.
245:Society for Industrial and Applied Mathematics
561:International Federation of Automatic Control
317:, from 1989 to 1992 and 2005 to 2010 at the
277:Deformations of I-Cycles and the Chow Scheme
353:Tannenbaum was born on January 25, 1953 in
163:State University of New York at Stony Brook
607:. Stony Brook Computer Science Department
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319:Technion – Israel Institute of Technology
302:, from 1982 until 1984, when he moved to
220:and biomedical imaging co-inventing with
515:. Stony Brook University. December 2018.
292:Institut des Hautes Études Scientifiques
286:He became an assistant professor at the
208:solved. Tannenbaum used techniques from
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267:Tannenbaum majored in mathematics at
667:21st-century American mathematicians
662:20th-century American mathematicians
637:Tannenbaum's Work on Medical Imaging
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672:Columbia College (New York) alumni
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633:by Tannenbaum, Doyle and Francis
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206:H-infinity type control problem
200:problems using techniques from
682:Stony Brook University faculty
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527:"IEEE Control Systems Fellows"
214:partial differential equations
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392:Mathematics Genealogy Project
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310:in Canada from 1985 to 1986.
288:Weizmann Institute of Science
202:Nevanlinna–Pick interpolation
531:IEEE Control Systems Society
249:IEEE Control Systems Society
204:theory, which was the first
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341:Tannenbaum was named as an
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460:10.1038/s41598-023-49930-4
368:He died in December 2023.
361:is a chemist, and his son
677:Harvard University alumni
363:Emmanuel David Tannenbaum
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630:Feedback Control Theory
315:University of Minnesota
253:Feedback Control Theory
147:Allen Robert Tannenbaum
23:Allen Robert Tannenbaum
331:Stony Brook University
105:medical image analysis
16:American mathematician
585:www.cs.stonybrook.edu
327:University of Alabama
304:Ben-Gurion University
300:University of Florida
159:applied mathematician
279:, was supervised by
263:Education and career
224:an affine-invariant
149:(January 25, 1953 –
555:IFAC (2024-01-29).
269:Columbia University
97:applied mathematics
510:"Curriculum vitae"
448:Scientific reports
409:Scientific reports
273:Harvard University
178:biomedical imaging
73:Harvard University
421:10.1038/srep12323
308:McGill University
235:glymphatic system
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87:Scientific career
53:December 28, 2023
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222:Guillermo Sapiro
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135:Guillermo Sapiro
125:Heisuke Hironaka
120:Doctoral advisor
109:network analysis
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39:January 25, 1953
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329:before joining
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218:computer vision
210:elliptic curves
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174:computer vision
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113:systems biology
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81:Rina Tannenbaum
70:Alma mater
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55:(2023-12-28)
657:2023 deaths
652:1953 births
357:. His wife
343:IEEE Fellow
294:in France,
194:gain margin
62:Nationality
646:Categories
611:2024-07-05
590:2024-01-29
566:2024-01-29
541:2012-10-28
473:1 February
372:References
296:ETH Zurich
257:John Doyle
153:2023-12-28
35:1953-01-25
468:2045-2322
429:2045-2322
415:: 12323.
188:Research
65:American
390:at the
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337:Awards
255:(with
180:, and
93:Fields
78:Spouse
513:(PDF)
475:2024
464:ISSN
425:ISSN
196:and
50:Died
29:Born
456:doi
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216:in
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