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1

Schupack, Helaine. Reading, writing and spelling: The multisensory structured language approach. 2nd ed. Baltimore, Md: International Dyslexia Association, 2001.

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2

1958-, Franco Lynda, ed. Language first!: A multisensory program for English language development : Travel. Emeryville, CA: LeapFrog Schoolhouse, 2002.

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3

DuBard, Etoile. Teaching language-deficient children: Theory and application of the association method for multisensory teaching. Cambridge, Mass: Educators Pub. Service, 1994.

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4

Rubtsov, Nickolai, Mikhail Alymov, Alexander Kalinin, Alexey Vinogradov, Alexey Rodionov, and Kirill Troshin. Remote studies of combustion and explosion processes based on optoelectronic methods. au: AUS PUBLISHERS, 2022. http://dx.doi.org/10.26526/monography_62876066a124d8.04785158.

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The main objective of this book is to acquaint the reader with the main modern problems of the multisensor data analysis and opportunities of the hyperspectral shooting being carried out in the wide range of wavelengths from ultraviolet to the infrared range, visualization of the fast combustion processes of flame propagation and flame acceleration, the limit phenomena at flame ignition and propagation. The book can be useful to students of the high courses and scientists dealing with problems of optical spectroscopy, vizualisation, digital recognizing images and gaseous combustion. The main goal of this book is to bring to the attention of the reader the main modern problems of multisensory data analysis and the possibilities of hyperspectral imaging, carried out in a broad wave-length range from ultraviolet to infrared by methods of visualizing fast combustion processes, propagation and flames acceleration, and limiting phenomena during ignition and flame propagation. The book can be useful for students of higher courses and experimental scientists dealing with problems of optical spectroscopy, visualization, pattern recognition and gas combustion.
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5

B, Sridhar, and Ames Research Center, eds. A parallel implementation of a multisensor feature-based range-estimation method. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1993.

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6

B, Sridhar, and Ames Research Center, eds. A parallel implementation of a multisensor feature-based range-estimation method. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1993.

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7

Networked multisensor decision and estimation fusion: Based on advanced mathematical methods. Boca Raton, FL: Taylor & Francis, 2012.

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8

1954-, Docampo D., Figueiras-Vidal A. R, and Pérez-González F. 1967-, eds. Intelligent methods in signal processing and communications. Boston: Birkhäuser, 1997.

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9

Stone, Celia. Reading Success 4: A Multisensory Reading Intervention Program. LDA, 2001.

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10

Northrup, Peggy S. The Literacy Link: A Multisensory Approach to Sound-Symbol Connections. Thinking Publications, 2002.

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11

Merabet, Lotfi, and Alvaro Pascual-Leone. Studies of Crossmodal Functions with TMS. Edited by Charles M. Epstein, Eric M. Wassermann, and Ulf Ziemann. Oxford University Press, 2012. http://dx.doi.org/10.1093/oxfordhb/9780198568926.013.0029.

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In the brain, information from all the senses interacts and is integrated in order to create a unified sensory percept. Some percepts appear unimodal, and some, cross modal. Unimodal percepts can be modified by crossmodal interactions given that our brains process multiple streams of sensory information in parallel and promote extensive interactions. TMS can provide valuable insights on the neural substrates associated with multisensory processing in humans. TMS is commonly described as a ‘relatively painless’ method of stimulating the brain noninvasively. However, TMS itself is strong multisensory and this should be considered while interpreting the results. With regard to the crossmodal sensory changes that follow sensory deprivation, these changes can be revealed using a variety of methods including the combination of TMS with neuroimaging.
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12

Multisensory Landscapes: Theories and Methods. Springer Fachmedien Wiesbaden GmbH, 2023.

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13

Catechist's Companion: Multisensory Methods in Catechesis. Our Sunday Visitor, 2007.

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14

National Aeronautics and Space Administration (NASA) Staff. Parallel Implementation of a Multisensor Feature-Based Range-Estimation Method. Independently Published, 2018.

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15

Bruno, Nicola, and Francesco Pavani. Perception. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198725022.001.0001.

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Perception: A Multisensory Perspective examines multisensory interactions as the key process behind how we perceive our own body, control its movements, perceive and recognize objects, respond to edible objects, perceive space, and perceive time. In addition, the book discusses multisensory processing in synaesthesia, multisensory attention, and the role of multisensory processing in learning. Multisensory phenomena in these domains are used to identify general principles, to introduce formal models, to present experimental methods, to discuss pathologies, and to illustrate applications within the domain of multisensory processing. The book is written to be understandable to the educated non-specialist and will be of interest to professionals who need to take into account multisensory processing in domains such as, for instance, physiotherapy and neurological rehabilitation, human–computer interfaces, or marketing. As the chapters address topics that are mostly left out of standard perception or medical textbooks, this book will also serve as a useful reference for the specialist perception scientist and for clinicians specialized in the treatment of sensory deficits.
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16

Multisensory Landscape Design: A Designer's Guide for Seeing. Taylor & Francis Group, 2022.

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17

Roehr, Daniel. Multisensory Landscape Design: A Designer's Guide for Seeing. Taylor & Francis Group, 2022.

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18

Roehr, Daniel. Multisensory Landscape Design: A Designer's Guide for Seeing. Taylor & Francis Group, 2022.

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19

Zhu, Yunmin, Jie Zhou, Xiaojing Shen, Enbin Song, and Yingting Luo. Networked Multisensor Decision and Estimation Fusion: Based on Advanced Mathematical Methods. Taylor & Francis Group, 2012.

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20

Zhu, Yunmin, Jie Zhou, Xiaojing Shen, Enbin Song, and Yingting Luo. Networked Multisensor Decision and Estimation Fusion: Based on Advanced Mathematical Methods. Taylor & Francis Group, 2012.

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21

Zhu, Yunmin. Networked Multisensor Decision and Estimation Fusion: Based on Advanced Mathematical Methods. Taylor & Francis Group, 2012.

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22

Zhu, Yunmin, Jie Zhou, Xiaojing Shen, Enbin Song, and Yingting Luo. Networked Multisensor Decision and Estimation Fusion: Based on Advanced Mathematical Methods. Taylor & Francis Group, 2012.

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23

and, Bruno. Perceiving Food. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198725022.003.0005.

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How we perceive edible objects is one of the most important perceptual functions served by our brains, both for its adaptive and hedonic implications. The perception of the flavour of foods is perhaps the quintessential multisensory experience, and in this chapter we will detail how flavour depends not only on coding taste in the mouth, but also on olfaction, vision, somatosensation, and even hearing. Multisensory interactions in the perception of food provide another important domain to illustrate principles of multisensory perception, are fundamental to understand methods of sensory analysis in the production of food, and provide an exciting new direction for analyses of culinary art.
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24

Lœvenbruck, H., R. Grandchamp, L. Rapin, L. Nalborczyk, M. Dohen, P. Perrier, M. Baciu, and M. Perrone-Bertolotti. A Cognitive Neuroscience View of Inner Language. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198796640.003.0006.

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The nature of inner language has long been under the scrutiny of humanities, through the practice of introspection. The use of experimental methods in cognitive neurosciences provides complementary insights. This chapter focuses on wilful expanded inner language, bearing in mind that other forms coexist. It first considers the abstract vs. concrete (or embodied) dimensions of inner language. In a second section, it argues that inner language should be considered as an action-perception phenomenon. In a third section, it proposes a revision of the “predictive control” account, fitting with our sensory-motor view. Inner language is considered as deriving from multisensory goals, generating multimodal acts (inner phonation, articulation, sign) with multisensory percepts (in the mind’s ear, tact, and eye). In the final section, it presents a landscape of the cerebral substrates of wilful inner verbalization, including multisensory and motor cortices as well as cognitive control networks.
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25

Järviluoma, Helmi, and Noora Vikman. On Soundscape Methods and Audiovisual Sensibility. Edited by John Richardson, Claudia Gorbman, and Carol Vernallis. Oxford University Press, 2013. http://dx.doi.org/10.1093/oxfordhb/9780199733866.013.019.

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This article appears in theOxford Handbook of New Audiovisual Aestheticsedited by John Richardson, Claudia Gorbman, and Carol Vernallis. Soundscape concepts have been employed for more than 20 years to enrich audiovisual studies. They have also been debated extensively. This chapter addresses soundscape as shifting, processual, historical, and produced in contingent situations. It focuses on a specific aspect of methodology that is useful for considering how to advance research on the audiovisual: methods in motion. Soundscape studies have stressed that researchers sometimes need to leave the “laboratory” and venture into fieldwork. Some of the recent developments in the “marriage” of soundscape and audiovisual studies are described, with three goals: (1) to direct attention to soundscape studies as the art and scholarly study of listening, (2) to introduce the sensory memory walk, and (3) to introduce the listening walk. Sound studies are increasingly employed as a basis for developing multisensory methodologies of studying times, spaces, and materialities to relocate sensate users of space at the center of the researcher’s attention.
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26

Hari, MD, PhD, Riitta, and Aina Puce, PhD. MEG-EEG Primer. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780190497774.001.0001.

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This book provides newcomers and more experienced researchers with the very basics of magnetoencephalography (MEG) and electroencephalography (EEG)—two noninvasive methods that can inform about the neurodynamics of the human brain on a millisecond scale. These two closely related methods are addressed side by side, starting from their physical and physiological bases and then advancing to methods of data acquisition, analysis, visualization, and interpretation. Special attention is paid to careful experimentation, guiding the readers to differentiate brain signals from various biological and non-biological artifacts and to ascertain that the collected data are reliable. The strengths and weaknesses of MEG and EEG are presented relative to each other and to other available brain-imaging methods. Necessary instrumentation and laboratory set-ups, as well as potential pitfalls in data collection and analysis are discussed. Spontaneous brain rhythms and evoked responses to sensory and multisensory stimulation are covered and examined both in healthy individuals and in various brain disorders, such as epilepsy. MEG/EEG signals related to motor, cognitive, and social events are discussed as well. The integration of MEG and EEG information with other methods to assess human brain function is discussed with respect to the current state-of-the art in the field. The book ends with a look to future developments in equipment design, and experimentation, emphasizing the role of accurate temporal information for human brain function.
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