PPT-Can we apply topological methods to cortical thickness data?

Author : susan | Published Date : 2022-05-18

Topological methods and cortical thickness Chung et al 2009 discovered differences in cortical thickness comparing individuals with autism to controls using topology

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Can we apply topological methods to cortical thickness data?: Transcript


Topological methods and cortical thickness Chung et al 2009 discovered differences in cortical thickness comparing individuals with autism to controls using topology Work flow Visualization of persistence plot. Group presentation. Region 10 . GROUP A.  . (Lucy Davis. , . Monica Degrate. , . Nkeiruka Dike. , . Mindy Allen. What Is cvi?. Cortical . Visual Impairment (CVI) is an acquired bilateral visual acuity loss caused by brain damage to the occipital lobes and/or damage to the posterior (. (CVI). (AKA: Cortical Blindness, Neurological Visual Impairment). Region 4. Charlotte Conner, Regan Marburger, Sarah Mays, Kelly Hill, Christy Moody. What is CVI??. Most commonly seen in children. Not caused by eye condition. ISSP, The University of Tokyo, Masatoshi Sato. 2. 3. Outline. . What is topological superconductor. T. opological superconductors in various systems. 4. What is topological superconductor ?. Topological superconductors . and Beyond. Kai. . Sun. University . of Maryland, College Park. Outline. Topological state of matter. Topological nontrivial structure and topological index. Anomalous quantum Hall state and the . Chern. Superconductors. Akira . Furusaki. 2012/2/8. 1. YIPQS Symposium. Condensed matter physics. Diversity of materials. Understand their properties. Find. new states of matter. Emergent behavior of electron systems at low energy. (CVI). (AKA: Cortical Blindness, Neurological Visual Impairment). Region 4. Charlotte Conner, Regan Marburger, Sarah Mays, Kelly Hill, Christy Moody. What is CVI??. Most commonly seen in children. Not caused by eye condition. Kyoto University, YITP, Masatoshi SATO. Mahito Kohmoto (University of Tokyo, ISSP). . Yong-Shi Wu (Utah University). In collaboration with. 2. Review paper on Topological Quantum Phenomena. Y. Tanaka, MS, N. . $$ NSF, AFOSR MURI, DARPA, ARO. Harvard-MIT. Takuya Kitagawa, . Erez. Berg, Mark Rudner. Eugene . Demler. . Harvard University. Also collaboration with A. White’s group, Univ. of Queensland. Guillaume Flandin. Wellcome. Trust Centre for Neuroimaging. University College London. SPM Course. London, . May 2014. Many thanks to Justin . Chumbley. , Tom Nichols and Gareth Barnes . for slides. Michael Freedman. April 23, 2009. Parsa Bonderson. Adrian Feiguin. Matthew Fisher. Michael Freedman. Matthew Hastings. Ribhu Kaul. Scott Morrison. Chetan Nayak. Simon Trebst. Kevin Walker. Zhenghan Wang. . Cumrun Vafa. . Oct. 31, 2017. . 20 . Years . Later: The Many Faces of . AdS. /CFT. Princeton University. Girish S . Setlur. Department of Physics. IIT Guwahati. COPYRIGHT DISCLAIMER: . ALL ILLUSTRATIONS . AND SOME PASSAGES IN . THESE SLIDES HAVE BEEN DOWNLOADED FROM VARIOUS INTERNET SOURCES.. LISTING EACH SOURCE SEPARATELY WILL TAKE UP ALL MY TIME SO I SHALL DESIST FROM DOING SO.. Takehito. Yokoyama, Yukio Tanaka. *. , and Naoto . Nagaosa. Department of Applied Physics, University of . Tokyo, Japan. *. Department . of Applied Physics, Nagoya . University, . Japan. arXiv:0907.2810. Iris Cong. Dept. of Computer Science, UCLA. Jointly authored with Prof. . Zhenghan. Wang (advisor) and . Meng. Cheng. arXiv:1609.02037. Contents. Introduction. Part I: Hamiltonian Realization. Part II: Algebraic Theory.

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