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  1. The Cognitive Structure of Scientific Revolutions.Hanne Andersen, Peter Barker & Xiang Chen - 2006 - New York: Cambridge University Press. Edited by Peter Barker & Xiang Chen.
    Thomas Kuhn's Structure of Scientific Revolutions became the most widely read book about science in the twentieth century. His terms 'paradigm' and 'scientific revolution' entered everyday speech, but they remain controversial. In the second half of the twentieth century, the new field of cognitive science combined empirical psychology, computer science, and neuroscience. In this book, the theories of concepts developed by cognitive scientists are used to evaluate and extend Kuhn's most influential ideas. Based on case studies of the Copernican revolution, (...)
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  2. Thomas Kuhn‘s Latest Notion of Incommensurability.Xiang Chen - 1997 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 28 (2):257-273.
    To correct the misconception that incommensurability implies incomparability, Kuhn lately develops a new interpretation of incommensurability. This includes a linguistic theory of scientific revolutions (the theory of kinds), a cognitive exploration of the language learning process (the analogy of bilingualism), and an epistemological discussion on the rationality of scientific development (the evolutionary epistemology). My focus in this paper is to review Kuhn's effort in eliminating relativism, highlighting both the insights and the difficulties of his new version of incommensurability . Finally (...)
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  3. Kuhn's mature philosophy of science and cognitive psychology.Hanne Andersen, Peter Barker & Xiang Chen - 1996 - Philosophical Psychology 9 (3):347 – 363.
    Drawing on the results of modem psychology and cognitive science we suggest that the traditional theory of concepts is no longer tenable, and that the alternative account proposed by Kuhn may now be seen to have independent empirical support quite apart from its success as part of an account of scientific change. We suggest that these mechanisms can also be understood as special cases of general cognitive structures revealed by cognitive science. Against this background, incommensurability is not an insurmountable obstacle (...)
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  4. Continuity through revolutions: A frame-based account of conceptual change during scientific revolutions.Xiang Chen & Peter Barker - 2000 - Philosophy of Science 67 (3):223.
    In this paper we examine the pattern of conceptual change during scientific revolutions by using methods from cognitive psychology. We show that the changes characteristic of scientific revolutions, especially taxonomic changes, can occur in a continuous manner. Using the frame model of concept representation to capture structural relations within concepts and the direct links between concept and taxonomy, we develop an account of conceptual change in science that more adequately reflects the current understanding that episodes like the Copernican revolution are (...)
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  5. Kuhn's theory of scientific revolutions and cognitive psychology.Xiang Chen, Hanne Andersen & Peter Barker - 1998 - Philosophical Psychology 11 (1):5 – 28.
    In a previous article we have shown that Kuhn's theory of concepts is independently supported by recent research in cognitive psychology. In this paper we propose a cognitive re-reading of Kuhn's cyclical model of scientific revolutions: all of the important features of the model may now be seen as consequences of a more fundamental account of the nature of concepts and their dynamics. We begin by examining incommensurability, the central theme of Kuhn's theory of scientific revolutions, according to two different (...)
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  6.  87
    Kuhn on concepts and categorization.Peter Barker, Xiang Chen & Hanne Andersen - 2003 - In Thomas Nickles (ed.), Thomas Kuhn. Cambridge University Press. pp. 212--245.
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  7.  31
    Taxonomic changes and the particle-wave debate in early nineteenth-century Britain.Xiang Chen - 1995 - Studies in History and Philosophy of Science Part A 26 (2):251-271.
  8.  36
    Why did John Herschel fail to understand polarization? The differences between object and event concepts.Xiang Chen - 2003 - Studies in History and Philosophy of Science Part A 34 (3):491-513.
    This paper offers a solution to a problem in Herschel studies by drawing on the dynamic frame model for concept representation offered by cognitive psychology. Applying the frame model to represent the conceptual frameworks of the particle and wave theories, this paper shows that discontinuity between the particle and wave frameworks consists mainly in the transition from a particle notion ‘side’ to a wave notion ‘phase difference’. By illustrating intraconceptual relations within concepts, the frame representations reveal the ontological differences between (...)
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  9. Object and event concepts: A cognitive mechanism of incommensurability.Xiang Chen - 2003 - Philosophy of Science 70 (5):962-974.
    In this paper I examine a cognitive mechanism of incommensurability. Using the frame model of concept representation to capture structural relations within concepts, I reveal an ontological difference between object and event concepts: the former are spatial but the latter temporal. Experiments from cognitive sciences further demonstrate that the mind treats object and event concepts differently. Thus, incommensurability can occur in conceptual change across different ontological categories. I use a historical case to illustrate how the ontological difference between an object (...)
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  10.  84
    Tai Chi Chuan and Baduanjin Mind-Body Training Changes Resting-State Low-Frequency Fluctuations in the Frontal Lobe of Older Adults: A Resting-State fMRI Study.Jing Tao, Xiangli Chen, Jiao Liu, Natalia Egorova, Xiehua Xue, Weilin Liu, Guohua Zheng, Ming Li, Jinsong Wu, Kun Hu, Zengjian Wang, Lidian Chen & Jian Kong - 2017 - Frontiers in Human Neuroscience 11.
  11.  32
    The long-term extreme price risk measure of portfolio in inventory financing: An application to dynamic impawn rate interval.Juan He, Jian Wang, Xianglin Jiang, Xiangfeng Chen & Lei Chen - 2015 - Complexity 20 (5):17-34.
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  12.  26
    Cognitive-Processing Bias in Chinese Student Teachers with Strong and Weak Professional Identity.Xin-Qiang Wang, Jun-Cheng Zhu, Lu Liu & Xiang-yu Chen - 2017 - Frontiers in Psychology 8.
  13.  99
    The object bias and the study of scientific revolutions: Lessons from developmental psychology.Xiang Chen - 2007 - Philosophical Psychology 20 (4):479 – 503.
    I propose a new perspective on the study of scientific revolutions. This is a transformation from an object-only perspective to an ontological perspective that properly treats objects and processes as distinct kinds. I begin my analysis by identifying an object bias in the study of scientific revolutions, where it takes the form of representing scientific revolutions as changes in classification of physical objects. I further explore the origins of this object bias. Findings from developmental psychology indicate that children cannot distinguish (...)
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  14.  4
    Why Do Scientists Have Disagreements about Experiment?: Incommensurability in the Use of Goal-Derived Categories.Xiang Chen - 1994 - Perspectives on Science 2 (3):275-301.
    In this article I explain why scientists cannot always resolve their disagreements about experiments even if they do not hold conflicting theoretical assumptions, and how incommensurability in experiments can occur even if experiments are not deeply encumbered by theoretical assumptions. On the basis of recent discoveries in cognitive psychology and an extended analysis of a historical case, I explore a cognitive mechanism that may generate incommensurability in experiment appraisal. I find that, because of the involvement of goal-derived categories, incommensurability in (...)
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  15.  8
    Facial Expression Recognition Using Kernel Entropy Component Analysis Network and DAGSVM.Xiangmin Chen, Li Ke, Qiang Du, Jinghui Li & Xiaodi Ding - 2021 - Complexity 2021:1-12.
    Facial expression recognition plays a significant part in artificial intelligence and computer vision. However, most of facial expression recognition methods have not obtained satisfactory results based on low-level features. The existed methods used in facial expression recognition encountered the major issues of linear inseparability, large computational burden, and data redundancy. To obtain satisfactory results, we propose an innovative deep learning model using the kernel entropy component analysis network and directed acyclic graph support vector machine. We use the KECANet in the (...)
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  16.  16
    Active Construction of Profession-Related Events: The Priming Effect among Pre-service Teachers with Different Professional Identity.Xin-Qiang Wang, Jun-Cheng Zhu, Lu Liu, Xiang-yu Chen & Jun-yu Huo - 2018 - Frontiers in Psychology 9.
  17. Transforming temporal knowledge: Conceptual change between event concepts.Xiang Chen - 2005 - Perspectives on Science 13 (1):49-73.
    : This paper offers a preliminary analysis of conceptual change between event concepts. It begins with a brief review of the major findings of cognitive studies on event knowledge. The script model proposed by Schank and Abelson was the first attempt to represent event knowledge. Subsequent cognitive studies indicated that event knowledge is organized in the form of dimensional organizations in which temporally successive actions are related causally. This paper proposes a frame representation to capture and outline the internal structure (...)
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  18.  21
    Local Incommensurability and Communicability.Xiang Chen - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:67 - 76.
    Kuhn regards local incommensurability as an unavoidable result of changes in worldview, but his account fails to explain both historical cases in which rivals with different paradigms obtained consensus, and psychological experiments in which people with different cultural backgrounds accurately presented other points of view. Although the conditions required to generate local incommensurability were present in the dispute between Brewster and Herschel on light absorption, they succeeded in communicating. Ultimately Brewster understood his opponent's position, in the same way that subjects (...)
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  19. The rule of reproducibility and its applications in experiment appraisal.Xiang Chen - 1994 - Synthese 99 (1):87 - 109.
  20.  53
    A different kind of revolutionary change: transformation from object to process concepts.Xiang Chen - 2010 - Studies in History and Philosophy of Science Part A 41 (2):182-191.
    I propose a new perspective with which to understand scientific revolutions. This is a conversion from an object-only perspective to one that properly treats object and process concepts as distinct kinds. I begin with a re-examination of the Copernican revolution. Recent findings from the history of astronomy suggest that the Copernican revolution was a move from a conceptual framework built around an object concept to one built around a process concept. Drawing from studies in the cognitive sciences, I then show (...)
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  21.  3
    Experiment and Conceptual Change-Kuhn, Cognitive Science, and Conceptual Change-Continuity Through Revolutions: A Frame-Based Account of Conceptual Change During Scientific Revolutions.Nancy Nerssessian, Xiang Chen & Peter Barker - 2000 - Philosophy of Science 67 (3):S208-S223.
    In this paper we examine the pattern of conceptual change during scientific revolutions by using methods from cognitive psychology. We show that the changes characteristic of scientific revolutions, especially taxonomic changes, can occur in a continuous manner. Using the frame model of concept representation to capture structural relations within concepts and the direct links between concept and taxonomy, we develop an account of conceptual change in science that more adequately reflects the current understanding that episodes like the Copernican revolution are (...)
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  22.  13
    Edouard Machery: Doing Without Concepts.Xiang Chen - 2013 - Science & Education 22 (5):1253-1255.
  23.  33
    Cognitive appraisal and power: David Brewster, Henry Brougham, and the tactics of the emission—Undulatory controversy during the early 1850s.Xiang Chen & Peter Barker - 1992 - Studies in History and Philosophy of Science Part A 23 (1):75-101.
    Previous studies of the history of optics reveal that the confrontation between the emission theory of light and the undulatory theory of light in Britain occupied a considerable period during the early nineteenth century. After the majority of British physicists accepted the undulatory theory in the mid-1830s a few emissionists in Britain did not immediately surrender. They continued to fight a rear-guard action against the undulatory theory, hoping that someday they could reinstate their theory.’ The longevity of the confrontation between (...)
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  24.  38
    Reconstruction of the Optical Revolution: Lakatos vs. Laudan.Xiang Chen - 1988 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1988:103 - 109.
    According to Lakatos's theory of scientific change, the victory of the wave theory in the nineteenth-century optical revolution was due to its empirical successes. However, historical facts do not support this opinion. Based on Laudan's theory of scientific change, this paper presents a different orientation to reconstruct the optical revolution. By comparing the conceptual problems that both optical theories had, this paper argues that it was the inferior status of the corpuscular theory in dealing with conceptual problems that constituted the (...)
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  25. Pathogenesis and research progress in leukoaraiosis.Lingqi Sun, Lin Hui, Yi Li, Xian Chen, Rong Liu & Ji Ma - 2022 - Frontiers in Human Neuroscience 16.
    Leukoaraiosis is a common imaging marker of cerebral small vessel disease. In recent years, with the continuous advances in brain imaging technology, the detection rate of leukoaraiosis is higher and its clinical subtypes are gradually gaining attention. Although leukoaraiosis has long been considered an incidental finding with no therapeutic necessity, there is now growing evidence linking it to, among other things, cognitive impairment and a high risk of death after stroke. Due to different research methods, some of the findings are (...)
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  26. The Emergence and Development of Causal Representations.Xiang Chen - 2015 - In Woosuk Park, Ping Li & Lorenzo Magnani (eds.), Philosophy and Cognitive Science Ii: Western & Eastern Studies. Cham: Springer Verlag.
     
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  27.  31
    Analysis of linear electrode array EMG for assessment of hemiparetic biceps brachii muscles.Bo Yao, Xu Zhang, Sheng Li, Xiaoyan Li, Xiang Chen, Cliff S. Klein & Ping Zhou - 2015 - Frontiers in Human Neuroscience 9.
  28.  3
    The debate on the “polarity of light” during the optical revolution.Xiang Chen - 1997 - Archive for History of Exact Sciences 50 (3-4):359-393.
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  29.  33
    Young and Lloyd on the Particle Theory of Light: A Response to Achinstein.Xiang Chen - 1990 - Studies in History and Philosophy of Science Part A 21 (4):665.
  30.  11
    Predictive Trajectory-Based Mobile Data Gathering Scheme for Wireless Sensor Networks.Fan Chao, Zhiqin He, Renkuan Feng, Xiao Wang, Xiangping Chen, Changqi Li & Ying Yang - 2021 - Complexity 2021:1-17.
    Tradition wireless sensor networks transmit data by single or multiple hops. However, some sensor nodes close to a static base station forward data more frequently than others, which results in the problem of energy holes and makes networks fragile. One promising solution is to use a mobile node as a mobile sink, which is especially useful in energy-constrained networks. In these applications, the tour planning of MS is a key to guarantee the network performance. In this paper, a novel strategy (...)
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  31.  3
    A brain-like classification method for computed tomography images based on adaptive feature matching dual-source domain heterogeneous transfer learning.Yehang Chen & Xiangmeng Chen - 2022 - Frontiers in Human Neuroscience 16:1019564.
    Transfer learning can improve the robustness of deep learning in the case of small samples. However, when the semantic difference between the source domain data and the target domain data is large, transfer learning easily introduces redundant features and leads to negative transfer. According the mechanism of the human brain focusing on effective features while ignoring redundant features in recognition tasks, a brain-like classification method based on adaptive feature matching dual-source domain heterogeneous transfer learning is proposed for the preoperative aided (...)
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  32.  4
    A New Syllogism Closer to the Reality of Human Thinking -- On Lei Ma’s Substitution Logic.Xiangqun Chen - 2022 - International Journal of Philosophy 10 (4):159.
    The follow-up research of Aristotle’s syllogism has different approaches. The traditional syllogism follows Aristotle’s conceptual system and hopes to make improvements within Aristotle’s theory. Mathematical logic proposes a new conceptual system to accurately interpret Aristotle’s syllogism. Lei Ma puts forward an extended syllogism whose conceptual system is different from Aristotelian logic and mathematical logic. He thinks that Aristotle’s syllogism and traditional syllogism have tedious figures, moods, and reasoning rules, which are difficult for us to memorize. It is a theoretical conclusion (...)
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  33.  19
    A Novel User Emotional Interaction Design Model Using Long and Short-Term Memory Networks and Deep Learning.Xiang Chen, Rubing Huang, Xin Li, Lei Xiao, Ming Zhou & Linghao Zhang - 2021 - Frontiers in Psychology 12.
    Emotional design is an important development trend of interaction design. Emotional design in products plays a key role in enhancing user experience and inducing user emotional resonance. In recent years, based on the user's emotional experience, the design concept of strengthening product emotional design has become a new direction for most designers to improve their design thinking. In the emotional interaction design, the machine needs to capture the user's key information in real time, recognize the user's emotional state, and use (...)
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  34. Bei zhi jie di Makesi.Xianda Chen (ed.) - 1990 - Shanghai: Shanghai ren min chu ban she.
     
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  35. Bian zheng wei wu zhu yi jiang hua.Xiangrong Chen - 1986 - [Canton]: Guangdong sheng xin hua shu dian fa xing. Edited by Xianming Wei.
     
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  36. Chen Xianzhang ji.Xianzhang Chen - 1987 - Beijing: Xin hua shu dian Beijing fa xing suo fa xing. Edited by Tonghai Sun.
     
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  37.  5
    Chen Xianda wen ji.Xianda Chen - 1995 - Beijing: Xin hua shu dian Beijing fa xing suo jing xiao.
    陈先达(1930~ ),江西波阳人,中国人民大学哲学系主任、教授、博士生导师,国务院学位评议委员会哲学组成员.
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  38.  11
    Chen Xianda zi xuan ji =.Xianda Chen - 2007 - Beijing Shi: Xue xi chu ban she.
    本书收入了作者的“处在世纪转换中的马克思主义”、“马克思主义在当代的新课题”、“实施马克思主义理论研究和建设工程的迫切性和重要意义”、“马克思主义哲学与现时代的关系"等文章。.
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  39.  3
    Chu zai jia feng zhong de zhe xue: zou xiang 21 shi ji de Makesi zhu yi zhe xue.Xianda Chen - 2004 - Beijing: Beijing shi fan da xue chu ban she.
    本书分为上、中、下三篇,分别为“夹缝中的哲学”、“世纪转换中的马克思主义”、“哲学社会科学繁荣之路”。.
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  40.  17
    Dispersion, experimental apparatus, and the acceptance of the wave theory of light.Xiang Chen - 1998 - Annals of Science 55 (4):401-420.
    This paper concentrates on a debate over dispersion in the second half of the 1830s, in which both sides utilized the same set of experimental data to test a proposed wave account of dispersion, but could not agree on how these data should be used. The conflict regarding experimental data was caused by differences in instruments. In the debate, optical instruments in many ways functioned like paradigms, shaping scientists' opinions. Instruments also led the debate into an impasse, because no apparatus (...)
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  41.  21
    Experimental Skills and Experiment Appraisal.Xiang Chen - 1994 - In Peter Achinstein & Laura J. Snyder (eds.), Scientific Methods: Conceptual and Historical Problems. Krieger Pub. Co.. pp. 45--66.
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  42. Gong chan zhu yi si xiang pin de gai lun.Xiangyuan Chen & Jihua Liu (eds.) - 1985 - Lanzhou: Gansu sheng xin hua shu dian fa xing.
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  43. Gongsun Longzi qiu zhen.Xianyou Chen - 1990 - Beijing: Xin hua shu dian Beijing fa xing suo fa xing. Edited by Long Gongsun.
     
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  44.  2
    Hui gui sheng huo.Xianda Chen - 2013 - Beijing: Beijing shi fan da xue chu ban she.
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  45.  73
    Instrumental unification: Optical apparatus in the unification of dispersion and selective absorption.Xiang Chen - 1999 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 30 (4):519-542.
  46.  23
    Instrumental Unification: Optical Apparatus in the Unification of Dispersion and Selective Absorption.Xiang Chen - 1999 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 30 (4):519-542.
  47.  4
    Jue ce zhi hui yu li shi bo yi.Xiangling Chen - 2010 - Beijing Shi: Guo fang da xue chu ban she.
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  48.  3
    Jing yuan lun cong.Xianda Chen - 2000 - Beijing: Zhongguo ren min da xue chu ban she.
    本书收的是90年代特别是后半期的文章,分哲学、马克思主义与文化两部分,包括:《跨世纪的中国哲学走向》、《处在世纪转换中的马克思主义》等。.
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  49.  1
    Jing yuan ye yu: zhe xue sui si lu.Xianda Chen - 2006 - Beijing: Zhongguo ren min da xue chu ban she.
    本书收录了的文章以中国历史、哲学、文学著作中的名言为引子, 结合现实生活, 并以个人的生活经验和哲学体悟相结合的方式, 阐述作者本人的哲学观点.
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  50.  2
    Jing yuan ye yu.Xianda Chen - 2013 - Beijing: Beijing shi fan da xue chu ban she.
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