Brain Displacements and Deformations

Brain Displacements and Deformations
Author: S. M. Blinkov
Publisher: Springer Science & Business Media
Total Pages: 314
Release: 2012-12-06
Genre: Medical
ISBN: 1468418009

In writing our book we had in mind both practicing physicians and scientif ic personnel. We hope that the former will benefit from an analysis of clinical symptoms and changes in the morphological substrate which produce them, and that the latter will be interested in facts illustrating the resistance of nervous tissue to compression and displacement, and in our concept of the primary role played by blood supply in the functional disturbances of a deformed brain stem. Although only a short time has elapsed since the first edition of the book, it has been necessary to introduce a number of addenda and corrections into the present edition. The chapter "Roentgenological Manifestations of Brain Displacements," written by N. S. Plevako and Z. N. Polyanker, has also been expanded. We are glad that a competent publishing house such as Plenum Press has undertaken the American publication of the book; we offer our sincere thanks to Mr. George Onischenko for his excellent translation; and we express our gratitude to Mezhdunarodnaya Kniga, the Soviet Book Export Agency, in the person of Galina Aleksandrovna Khudozhnikova, for their cooperation.

Sports-Related Concussions in Youth

Sports-Related Concussions in Youth
Author: National Research Council
Publisher: National Academies Press
Total Pages: 215
Release: 2014-02-04
Genre: Medical
ISBN: 0309288037

In the past decade, few subjects at the intersection of medicine and sports have generated as much public interest as sports-related concussions - especially among youth. Despite growing awareness of sports-related concussions and campaigns to educate athletes, coaches, physicians, and parents of young athletes about concussion recognition and management, confusion and controversy persist in many areas. Currently, diagnosis is based primarily on the symptoms reported by the individual rather than on objective diagnostic markers, and there is little empirical evidence for the optimal degree and duration of physical rest needed to promote recovery or the best timing and approach for returning to full physical activity. Sports-Related Concussions in Youth: Improving the Science, Changing the Culture reviews the science of sports-related concussions in youth from elementary school through young adulthood, as well as in military personnel and their dependents. This report recommends actions that can be taken by a range of audiences - including research funding agencies, legislatures, state and school superintendents and athletic directors, military organizations, and equipment manufacturers, as well as youth who participate in sports and their parents - to improve what is known about concussions and to reduce their occurrence. Sports-Related Concussions in Youth finds that while some studies provide useful information, much remains unknown about the extent of concussions in youth; how to diagnose, manage, and prevent concussions; and the short- and long-term consequences of concussions as well as repetitive head impacts that do not result in concussion symptoms. The culture of sports negatively influences athletes' self-reporting of concussion symptoms and their adherence to return-to-play guidance. Athletes, their teammates, and, in some cases, coaches and parents may not fully appreciate the health threats posed by concussions. Similarly, military recruits are immersed in a culture that includes devotion to duty and service before self, and the critical nature of concussions may often go unheeded. According to Sports-Related Concussions in Youth, if the youth sports community can adopt the belief that concussions are serious injuries and emphasize care for players with concussions until they are fully recovered, then the culture in which these athletes perform and compete will become much safer. Improving understanding of the extent, causes, effects, and prevention of sports-related concussions is vitally important for the health and well-being of youth athletes. The findings and recommendations in this report set a direction for research to reach this goal.

Analysis and Modeling of the Biomechanics of Brain Injury Under Impact

Analysis and Modeling of the Biomechanics of Brain Injury Under Impact
Author: Hong Zou
Publisher:
Total Pages: 252
Release: 2007
Genre:
ISBN:

To better understand brain injury mechanisms and better predict brain injuries under impact, this work focuses on the analysis of experimental brain motion data and the development of brain injury models. An analytical method is used to separate the measured brain motion into rigid body displacement and brain deformation with a minimum total squared error. Under mild impact, it is found that the whole brain has nearly pure rigid body displacement, having a magnitude of 4 to 5 mm in translation and +/-5 degrees in rotation. As the impact becomes more severe, the rigid body displacement is limited in magnitude for both translation and rotation, while the increased brain motion primarily is due to brain deformation, which is largest in the superior region of the brain.

Translational Research in Traumatic Brain Injury

Translational Research in Traumatic Brain Injury
Author: Daniel Laskowitz
Publisher: CRC Press
Total Pages: 388
Release: 2016-04-21
Genre: Medical
ISBN: 1498766579

Traumatic brain injury (TBI) remains a significant source of death and permanent disability, contributing to nearly one-third of all injury related deaths in the United States and exacting a profound personal and economic toll. Despite the increased resources that have recently been brought to bear to improve our understanding of TBI, the developme

Continuum Mechanical Analysis of Space and Time Dependent Deformation Pattern of Brain with Blunt Injury

Continuum Mechanical Analysis of Space and Time Dependent Deformation Pattern of Brain with Blunt Injury
Author: Chen Miao
Publisher:
Total Pages: 60
Release: 2016
Genre:
ISBN:

Deformation of human brain due to acceleration impact has been widely accepted as the direct connection to the Trauma Brain Injury (TBI). However, the limitation of obtaining deformation data of TBI is a major obstacle to understanding TBI mechanism. This experiment mainly focuses on developing a method to measure deformation pattern of brain with blunt injury. First of all, displacement data of markers on sagittal plane of an injury head model was collected using 3D reconstruction software after an impact test. Second, the displacement data was used to calculate 2D Lagrangian strain tensor and the principal strain. The temporal and spatial results of principal strain under different variables including impact velocity (5 mile/hour, 3 mile/ hour), impact location (crown head, front head) and concentration of gel used to build the brain model (10%, 20%) were compared. The results shown larger strain values within the variables of higher impact velocity, crown head impact location and 10% gel. The spatial location results shown clearly the difference in terms of deformation pattern of different impact locations.