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Of all concepts used by family therapists, the family development framework is among the least studied, in spite of its relevance to understanding spontaneous family change and to facilitating therapeutic intervention. The notion that a "developmental difficulty" underlies the appearance of clinical symptoms has become a time-honored tradition in family therapy just as it has been in individual therapy. Yet, unlike the well-established and well-researched models of child and adult development, those in family development are rudimentary. Despite increasing interest in the family life cycle as a framework for family therapy, relatively little has been done to elucidate the specific dimensions and processes of spontaneous and therapeutically-induced change over the family life cycle. This volume gathers original contributions of some of the most prominent family theorists, researchers, and clinicians of our time to improve our understanding of these important and hitherto neglected domains. The book opens with a comprehensive overview by the editor that outlines contributions to the family life cycle framework from family sociology, and crisis theory. This is followed by a comparative analysis of developmental thinking, explicit or implicit, in the theory and interventions of the major family therapy approaches. Then divided into four parts, FAMILY TRANSITIONS introduces new conceptual models that integrate the temporality of the life cycle approach with systems theory.By their very nature, these models cut across therapeutic orientations and have important clinical applications. In Part II, family therapy's views of development are freed from the confines of the therapist's office, and placed in the context of other disciplines. Chapters provide analysis of changing--or static--sociocultural values that can affect conceptions of development; potential misuse of the concept of "cultural identity" in health, mental health, and education; how "family identity" operates as a vehicle for cultural transmission over generations; and family therapists assumptions about women's development. The role of expected and unexpected events in the family life cycle is the focus of Part III. Chapters on clinical approaches geared to dislocations of life cycle occurrences due to unexpected crises, chronic illnesses, loss, or drug abuse provide illustrations of interventions that utilize, enhance, or potentially detract from the family's developmental flow. Part IV explores the articulation of the life cycle framework within four major family therapy orientations: intergenerational, structural, systemic, and symbolic-experiential. Each of these chapters endeavors to elucidate: what is the place of family development in each orientation; concepts of continuity and change; use of the concept of stages, transitions, or developmental tasks; the specific dimensions that change in most families over time; and the links between family dysfunction and life cycle issues. Finally, each chapter illustrates through clinical example assessment strategies, formulation of treatment goals and interventions as these emerge from a particular life cycle model. FAMILY TRANSITIONS presents a significant advance in our understanding of functional and dysfunctional family development and offers a range of interventions to promote developmental change. It is an invaluable resource for clinical psychologists, psychiatrists, social workers, and counselors that will also interest human development professionals, family sociologists, and family researchers. FAMILY TRANSITIONS can serve as a developmentally oriented textbook for teaching family therapy in academic and professional settings.
Auditory Brainstem Evoked Potentials: Clinical and Research Applications provides a solid foundation of the theoretical principles of auditory evoked potentials. This understanding is important for both the development of optimal clinical test strategies, and interpretation of test results. Developed for graduate-level audiology students, this comprehensive text aims to build a fundamental understanding of auditory evoked brainstem responses (ABR), and their relationship to normal and impaired auditory function, as well as its various audiologic and neurootologic applications. In addition to covering the classical onset ABR, the book provides a thorough review of sustained brainstem responses elicited by complex sounds, including auditory steady state response (ASSR), envelope following response (EFR), and frequency following response (FFR), and the growing clinical and research applications of these responses. By exploring why certain stimulus manipulations are required to answer specific clinical questions, the author provides the resources needed for students and clinicians to make reasoned decisions about the optimal protocol to use in a given situation. Key Features: * A full chapter devoted to laboratory exercises * Numerous illustrations to help explain key concepts * Description of neural bases underlying amplitude and latency changes * Troubleshooting techniques * End-of-chapter summaries
Written by experts with extensive clinical and scientific experience, this comprehensive textbook presents the state of the art in auditory evoked potentials. Opening chapters explain the nature of electrical fields that generate surface recorded potentials, summarize the imaging modalities that complement evoked potential studies, and review acoustics and instrumentation. Major sections examine the anatomy and physiology of the auditory periphery, brainstem, and cortex and the principles and clinical applications of auditory, myogenic, visual, somatosensory, and vestibular evoked potentials. Chapters present hands-on laboratory exercises and clinical case studies. A full-color insert includes 3D images from multi-channel evoked potentials and functional imaging.
Authored by a leading clinical audiologist, the text is both complex and accessible, offering extensive review of test principles, protocols, and procedures for clinical application.
This book reviews how we can record the human brain's response to sounds, and how we can use these recordings to assess hearing. These recordings are used in many different clinical situations--the identification of hearing impairment in newborn infants, the detection of tumors on the auditory nerve, the diagnosis of multiple sclerosis. As well they are used to investigate how the brain is able to hear--how we can attend to particular conversations at a cocktail party and ignore others, how we learn to understand the language we are exposed to, why we have difficulty hearing when we grow old. This book is written by a single author with wide experience in all aspects of these recordings. The content is complete in terms of the essentials. The style is clear; equations are absent and figures are multiple. The intent of the book is to make learning enjoyable and meaningful. Allusions are made to fields beyond the ear, and the clinical importance of the phenomena is always considered.
Evoked potentials are potentials that are derived from the peripheral or central nervous system. They are time locked with an external stimulus and can be influenced by subjective intentions. Evoked potentials have become increasingly popular for clinical diagnosis over the last few years. Evoked potentials from the visual system are used by ophthalmologists in order to localize the abnormalities in the visual pathway. The otologists are mainly involved in brainstem auditory evoked potentials, while the pediatricians, neonatologists, neurologists and clinical neurophysiologists make use of multimodal stimulation. The psychiatrists and psychologists, generally, examine the slow potentials such as P300 and CNV. Anesthesiologists use short latency somatosensory and visual evoked potentials in order to monitor the effectiveness of the anesthesia. Pharmaco evoked potentials are very promising measures for the quan tification of the effectiveness of drug action on the cerebral cortex. Urologists are more and more involved in pudendal somatosensory evoked potentials and in the intensive care unit evoked potentials are used in order to monitor the functional state of the central nervous system of the patient. This overwhelming number of examinations and exam ina tors clearly demonstrates the need for guidelines and standardization of the methods used. The evoked potential metholody is restricted by the relative poor signal to noise ratio. In many diseases this signal to noise ratio decrease rapidly during the progression of the illness. Optimal technical equipment and methodology are therefore essential.
Millions of Americans experience some degree of hearing loss. The Social Security Administration (SSA) operates programs that provide cash disability benefits to people with permanent impairments like hearing loss, if they can show that their impairments meet stringent SSA criteria and their earnings are below an SSA threshold. The National Research Council convened an expert committee at the request of the SSA to study the issues related to disability determination for people with hearing loss. This volume is the product of that study. Hearing Loss: Determining Eligibility for Social Security Benefits reviews current knowledge about hearing loss and its measurement and treatment, and provides an evaluation of the strengths and weaknesses of the current processes and criteria. It recommends changes to strengthen the disability determination process and ensure its reliability and fairness. The book addresses criteria for selection of pure tone and speech tests, guidelines for test administration, testing of hearing in noise, special issues related to testing children, and the difficulty of predicting work capacity from clinical hearing test results. It should be useful to audiologists, otolaryngologists, disability advocates, and others who are concerned with people who have hearing loss.
Written for auditory clinicians and researchers alike, this is the first monograph on this important area of auditory science that traces the international research effort from its origins in the 1970s to the present day. Comprising contributions from experts in a range of disciplines including auditory physiology, engineering, medicine and audiology, the book presents comprehensive and authoritative coverage of the generation and recording of the ASSR and the clinical applications of the response.