What Is Addiction? History, Terminology, and Core Concepts

2022 ◽  
Vol 106 (1) ◽  
pp. 1-12
Author(s):  
Yngvild Olsen
Keyword(s):  
2008 ◽  
Author(s):  
Christopher Layne ◽  
Abigail Gewirtz ◽  
Chandra Ghosh Ippen ◽  
Renee Dominguez ◽  
Robert Abramovitz ◽  
...  
Keyword(s):  
The Core ◽  

Author(s):  
Pooja Pathak ◽  
Anand Singh Jalal ◽  
Ritu Rai

Background: Breast cancer represents uncontrolled breast cell growth. Breast cancer is the most diagnosed cancer in women worldwide. Early detection of breast cancer improves the chances of survival and increases treatment options. There are various methods for screening breast cancer such as mammogram, ultrasound, computed tomography, Magnetic Resonance Imaging (MRI). MRI is gaining prominence as an alternative screening tool for early detection and breast cancer diagnosis. Nevertheless, MRI can hardly be examined without the use of a Computer-Aided Diagnosis (CAD) framework, due to the vast amount of data. Objective: This paper aims to cover the approaches used in CAD system for the detection of breast cancer. Method: In this paper, the methods used in CAD systems are categories in two classes: the conventional approach and artificial intelligence (AI) approach. The conventional approach covers the basic steps of image processing such as preprocessing, segmentation, feature extraction and classification. The AI approach covers the various convolutional and deep learning networks used for diagnosis. Conclusion: This review discusses some of the core concepts used in breast cancer and presents a comprehensive review of efforts in the past to address this problem.


Jumping, climbing and suspensory locomotion are specialized locomotor mechanisms used on land and in the air. Jumping is used for rapid launches from substrates. Climbing and suspensory movements enable locomotion up, under and through vertically-structured habitats, such as forests. Elastic energy storage is particularly important for jumping and catapult systems and we address the core concepts of power amplification that are exemplified in nature’s extreme jumpers. We examine the diverse mechanisms of attachment that characterize animals that can grasp and adhere to a diversity of structures. We conclude the chapter by examining the integration of biological capabilities with engineering innovations in these systems.


Author(s):  
Erik Jentges

The Leadership Capital Index utilizes the conceptual terminology of Pierre Bourdieu’s field theory. This chapter presents the groundwork for the LCI as it clarifies Bourdieu’s key concepts and traces the evolution from political capital to leadership capital. With an overview of Bourdieu’s three core concepts of economic, cultural, and social capital, plus the more elusive symbolic capital, the chapter assists with an appreciation of the analytical potential of the concept of political capital. The notion of leadership capital integrates many (but not all) aspects of Bourdieu’s field-specific notion of political capital and the LCI succeeds in translating his complex conceptualization into a manageable set of ten indicators. The chapter explains how together Bourdieu’s political sociology and the approach suggested through the LCI create numerous synergies and are promising and useful endeavors in the analysis of political leadership.


Author(s):  
Frank S. Levin

Surfing the Quantum World bridges the gap between in-depth textbooks and typical popular science books on quantum ideas and phenomena. Among its significant features is the description of a host of mind-bending phenomena, such as a quantum object being in two places at once or a certain minus sign being the most consequential in the universe. Much of its first part is historical, starting with the ancient Greeks and their concepts of light, and ending with the creation of quantum mechanics. The second part begins by applying quantum mechanics and its probability nature to a pedagogical system, the one-dimensional box, an analog of which is a musical-instrument string. This is followed by a gentle introduction to the fundamental principles of quantum theory, whose core concepts and symbolic representations are the foundation for most of the subsequent chapters. For instance, it is shown how quantum theory explains the properties of the hydrogen atom and, via quantum spin and Pauli’s Exclusion Principle, how it accounts for the structure of the periodic table. White dwarf and neutron stars are seen to be gigantic quantum objects, while the maximum height of mountains is shown to have a quantum basis. Among the many other topics considered are a variety of interference phenomena, those that display the wave properties of particles like electrons and photons, and even of large molecules. The book concludes with a wide-ranging discussion of interpretational and philosophic issues, introduced in Chapters 14 by entanglement and 15 by Schrödinger’s cat.


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