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This volume is the first electronics and instrumentation for audiology text and provides information on the variety of applications of electronics and audiology that are often omitted from science and engineering books. The book explains the operation of various instruments used in audiology applications, and it contains pertinent equations, numerical examples, and practice exercises. It also addresses fine details of electronics and instrumentation not often found in other texts, including the difficult concepts of electrical impedance and acoustic impedance. Additionally, it incorporates precise language and high quality drawings to explain electronic concepts clearly and accurately. This textbook is ideal for graduate-level courses on applications of modern electronics in both hearing aids and diagnostic instruments. It is an indispensable resource for students and researchers of audiology, and a valuable reference for practicing audiologists.
This volume is the first electronics and instrumentation for audiology text and provides information on the variety of applications of electronics and audiology that are often omitted from science and engineering books. The book explains the operation of various instruments used in audiology applications, and it contains pertinent equations, numerical examples, and practice exercises. It also addresses fine details of electronics and instrumentation not often found in other texts, including the difficult concepts of electrical impedance and acoustic impedance. Additionally, it incorporates precise language and high quality drawings to explain electronic concepts clearly and accurately. This textbook is ideal for graduate-level courses on applications of modern electronics in both hearing aids and diagnostic instruments. It is an indispensable resource for students and researchers of audiology, and a valuable reference for practicing audiologists.
Understanding the array and complexity of instrumentation available to audiologists and hearing scientists is important to students, beginning clinicians, and even seasoned professionals. The second edition of Instrumentation for Audiology and Hearing Science: Theory and Practice is a comprehensive and accessible look at instrumentation used in these fields for research and clinical purposes. The expert authors introduce the laws of physics as they relate to audiology and hearing science and explain a range of concepts in electronics directly related to instrumentation used in audiology and hearing science, such as filtering and immittance (involving admittance and impedance), explain the fundamental instrumentation concepts in mathematics, physics, and electronics in a systematic manner including only the necessary formulae and basic scientific principles. This unique professional text presents the fundamentals of the evolution of communication systems from analog to digital, including such concepts as digital signals, sound resolution, sampling, quantization and their applications to current technology such as video calls and noise canceling head phones. In addition, the authors comprehensively cover calibration of test and research equipment and stimuli used in audiology and hearing science. They also clearly describe elements of electronics and digital technology as they apply to our everyday lives and experiences, as well as to the fields of audiology and hearing sciences. New to the Second Edition * New chapters on amplification, assistive listening devices, and vestibular assessment (electronystagmography and videonystagmography), geared toward audiology and hearing science students and professionals * Extensive reorganization for a smoother flow of information * Expanded focus on evidence-based practice * Informed by the authors’ teaching, research, and clinical experiences, the original chapters have either been eliminated or completely updated to reflect current scientific and clinical theories * Accompanying videos for the construction of direct- and alternating-current electrical circuits, as well as the construction of high-pass, low-pass, and band-pass filters
Assessment of the central auditory nervous system; pseudohypacusis; occupational hearing loss prevention; and instrumentation and calibration. For hearing professionals and others looking for the latest information on contemporary hearing assessment.
Paranormal Technology is the first book to provide a scientific method for ghost hunting, which includes in-depth explanations of what the collected data means. Paranormal Technology offers new techniques, answers questions, and provides experiments, which will help bridge the gap between the paranormal and science. Written in everyday language, it offers keen insights into the nature of paranormal phenomena, the protocols required for collecting evidence that will stand up to scientific scrutiny, and the possible theories that may explain the source of Ghosts. Currently employed test equipment is examined and proper use is covered in great detail. Paranormal Technology is an indispensible aid to any scientific researcher or ghost hunting group, whether you are a beginner, or with many years of experience. This book is not a means to an end, but rather, an invitation to a fresh begining.
Brimming with more than more than 1700 references, this reader-friendly and extensively revised Fourth Edition will prove invaluable to instructors and students alike-providing a unified approach to the anatomical, physiological, and perceptual aspects of audition with updated chapters on the latest developments in the field.
Overviews electricity and electronics as well as equipment and technology from a practical/intuitive perspective, for undergraduate and graduate students majoring in speech-language pathology and audiology. Coverage includes circuits, power supplies, oscillators, microprocessors, and combining circ
This textbook provides a comprehensive presentation of all aspects of hearing science, including acoustics, psychoacoustics, anatomy and physiology, and related topics such as introduction to digital signal processing and instrumentation in hearing science. It is designed to supplement in-class instruction with both remedial and advanced material for students with different academic backgrounds, and is ideally suited for speech pathology and audiology students at the undergraduate and introductory graduate levels. Online student resources on thePoint will include video demonstrations, a quiz bank, labeling exercises for images in the book, PDFs for selected chapters, Web links, and audio clips. Online instructor resources on thePoint will include PowerPoint slides, a test generator, an image bank, and homework assignments with answers.
Medical Physics and Biomedical Engineering provides broad coverage appropriate for senior undergraduates and graduates in medical physics and biomedical engineering. Divided into two parts, the first part presents the underlying physics, electronics, anatomy, and physiology and the second part addresses practical applications. The structured approach means that later chapters build and broaden the material introduced in the opening chapters; for example, students can read chapters covering the introductory science of an area and then study the practical application of the topic. Coverage includes biomechanics; ionizing and nonionizing radiation and measurements; image formation techniques, processing, and analysis; safety issues; biomedical devices; mathematical and statistical techniques; physiological signals and responses; and respiratory and cardiovascular function and measurement. Where necessary, the authors provide references to the mathematical background and keep detailed derivations to a minimum. They give comprehensive references to junior undergraduate texts in physics, electronics, and life sciences in the bibliographies at the end of each chapter.
Second Edition addresses all the topics critical to understanding the hearing sciences: acoustics, anatomy and physiology of the auditory and vestibular systems, psychoacoustics, and basic instrumentation. Written in a straightforward approach, each chapter opens with an introduction of the key concepts and ends with a concise summary. The practical nature of the book is demonstrated in the "Clinical Correlates" examples, which relate elements of the hearing sciences to patient care and engage students in the concepts. The textbook is designed for undergraduate students the more advanced chapters are useful supplementary material in graduate audiology programs but through this book, students will gain invaluable insight into the hearing sciences before ever taking a course in audiology.