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Visually Situated Language Comprehension has been compiled as a state-of the-art introduction to real-time language processing in visually-situated contexts. It covers the history of this emergent field, explains key methodological developments and discusses the insights these methods have enabled into how language processing interacts with our knowledge and perception of the immediate environment. Scientists interested in how language users integrate what they know with their perception of objects and events will find the book a rewarding read. The book further covers lexical, sentence, and discourse level processes, as well as active visual context effects in both non-interactive and interactive tasks and thus present a well-balanced view of the field. It is aimed at experienced researchers and students alike in the hopes of attracting new talent to the field. Thanks to its in-depth methodological introduction and broad coverage it constitutes an excellent course book.
Recent evidence has shown many ways in which our bodies and the environment influence cognition. In this Research Topic we aim to develop our understanding of cognition by considering the diverse and dynamic relationship between the language we use, our bodily perceptions, and our actions and interactions in the broader environment. There are already many empirical effects illustrating the continuity of mind- body-environment: manipulating body posture influences diverse areas such as mood, hormonal responses, and perception of risk; directing attention to a particular sensory modality can affect language processing, signal detection, and memory performance; placing implicit cues in the environment can impact upon social behaviours, moral judgements, and economic decision making. This Research Topic includes papers that explore the question of how our bodies and the environment influence cognition, such as how we mentally represent the world around us, understand language, reason about abstract concepts, make judgements and decisions, and interact with objects and other people. Contributions focus on empirical, theoretical, methodological or modelling issues as well as opinion pieces or contrasting perspectives. Topic areas include, perception and action, social cognition, emotion, language processing, modality-specific representations, spatial representations, gesture, atypical embodiment, perceptual simulation, cognitive modelling and perspectives on the future of embodiment.
This image-rich book explores the practice as well as the theory of visual representation and presents us with the importance of designing appropriate images for communication to specific target audiences. This includes the appropriate choice of high-tech digital or low-tech analogue technologies in image-making for communication within the medical education, biological research and community health contexts. We hear from medical students about the value of using clay modelling in their understanding of anatomy, from educators and curriculum designers about visual affordances in medical education and from a community-driven project in South Africa about their innovative use of locally designed images and culture-specific narratives for communicating important health information to marginalised communities. A chapter explores the evolution of scientific visualisation and representation of big data to a variety of audiences, and another presents the innovative 3D construction of internal cellular structures from microscopic 2D slices. As we embrace blended learning in anatomy education, a timely chapter prompts us to think further about and contribute to the ongoing discourse around important ethical considerations in the use and sharing of digital images of body donors. This book will appeal to educators, medical illustrators, curriculum designers, post-graduate students, community health practitioners and biomedical researchers.
As a whole, the essays in this book address theoretical and empirical issues related to children's learning and cognition. The first essay, titled Learning in Cognitive Niches, treats the process of sense making on a theoretical level, discussing the complexity of factors that give rise to children's learning. It is followed by an essay, titled Using the Dynamics of a Person-Context System to Describe Children's Understanding of Air Pressure, that applies ideas from complexity science and dynamics-systems theory to children's learning about science. The next four essays summarize and synthesize already published findings, in an effort to go beyond individual viewpoints and present a more nuanced picture of children's sense making. In particular, two of these summaries, Preschoolers Learning Science: Myth or Reality? and The Emergence of Scientific Reasoning, focus on children's ability to make sense of their physical environment. The essay Cognition and the Child Witness: Understanding the Impact of Cognitive Development in Forensic Contexts seeks to shed light on children's sense making relevant to forensic issues. And the essay Beyond the Black-and-White of Autism: How Cognitive Performance Varies with Context ventures in the area of autism, a disorder that demonstrates atypical processes of combining pieces of information. The final two essays provide original data to add to the discussion of what factors affect cognitive functioning. In particular, the essay Cognitive Fitness in Young Adult Video Game Players seeks to re-assess the often-assumed relation between video gaming and various aspects of thinking, memory, intelligence, and visual-spatial abilities. And the essay Impact of Moving Away from Home on Undergraduate Metacognitive Development explicitly connects life circumstances to the ability to monitor and control one's thinking. Together, the collection of essays are a further step towards understanding the process of sense making as children and young adults interact with their environment.
Includes subconference "Prestigious Applications of Intelligent Systems (PAIS 2008)."
Traditionally, research on human language has taken speech and written language as the only domains of investigation. However, there is now a wealth of empirical studies documenting visual aspects of language, ranging from rich studies of sign languages, which are self-contained visual language systems, to the field of gesture studies, which examines speech-associated gestures, facial expressions, and other bodily movements related to communicative expressions. But despite this large body of work, sign language and gestures are rarely treated together in theoretical discussions. This volume aims to remedy that by considering both types of visual language jointly in order to transcend (artificial) theoretical divides, and to arrive at a comprehensive account of the human language faculty. This collection seeks to pave the way for an inherently multimodal view of language, in which visible actions of the body play a crucial role. The 19 papers in this volume address four broad and overlapping topics: (1) the multimodal nature of language; (2) multimodal representation of meaning; (3) multimodal and multichannel prosody; and (4) acquisition and development of visual language in children and adults.
This title provides an innovative compilation of research that lies at the intersection of language and social psychology. The contributors address the role of social processes in language, the linguistic underpinnings of social psychological processes, the creation of meaning, and the important role played by language and social psychology in applied topics.
The purpose of this Research Topic is to reflect and discuss links between neuroscience, psychology, computer science and robotics with regards to the topic of cross-modal learning which has, in recent years, emerged as a new area of interdisciplinary research. The term cross-modal learning refers to the synergistic synthesis of information from multiple sensory modalities such that the learning that occurs within any individual sensory modality can be enhanced with information from one or more other modalities. Cross-modal learning is a crucial component of adaptive behavior in a continuously changing world, and examples are ubiquitous, such as: learning to grasp and manipulate objects; learning to walk; learning to read and write; learning to understand language and its referents; etc. In all these examples, visual, auditory, somatosensory or other modalities have to be integrated, and learning must be cross-modal. In fact, the broad range of acquired human skills are cross-modal, and many of the most advanced human capabilities, such as those involved in social cognition, require learning from the richest combinations of cross-modal information. In contrast, even the very best systems in Artificial Intelligence (AI) and robotics have taken only tiny steps in this direction. Building a system that composes a global perspective from multiple distinct sources, types of data, and sensory modalities is a grand challenge of AI, yet it is specific enough that it can be studied quite rigorously and in such detail that the prospect for deep insights into these mechanisms is quite plausible in the near term. Cross-modal learning is a broad, interdisciplinary topic that has not yet coalesced into a single, unified field. Instead, there are many separate fields, each tackling the concerns of cross-modal learning from its own perspective, with currently little overlap. We anticipate an accelerating trend towards integration of these areas and we intend to contribute to that integration. By focusing on cross-modal learning, the proposed Research Topic can bring together recent progress in artificial intelligence, robotics, psychology and neuroscience.
In the past few years, there has been an explosion of eye movement research in cognitive science and neuroscience. The Oxford Handbook of Eye Movements provides the first comprehensive review of the entire field of eye movement research. This book is the definitive reference work in this field.