一种同步视觉和脑电图测试的新型耳机系统,用于脑震荡和其他脑损伤的快速评估和诊断

David Edquilang, Jeff Feng
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摘要

仅在美国,每年就会发生数百万次脑震荡。这些脑震荡中很大一部分是由于高冲击力运动损伤造成的。目前,还没有办法快速监测大脑功能,并测试遭受创伤性脑损伤的个体的动眼肌功能,以诊断他们是否遭受了脑震荡。目前诊断脑震荡的方法是CT扫描或核磁共振成像,这是一个冗长的程序,需要安排、设置和实施;此外,需要额外的时间来分析结果,以达到诊断。这种诊断过程的延长本质上是有问题的,因为从受伤到诊断的时间越长,决定和行动的风险就越大,这可能会加重对大脑的损害。越早诊断出脑震荡,就能越早更好地进行康复治疗。为了改善这一问题,我们寻求开发一种设备,以更快速和及时的方式执行大脑活动的诊断和监测功能。对前庭和眼脑功能的解剖进行了文献综述;以及对这些前庭和眼功能的各种测试和监测方法的研究。其中一种已被证明是可靠的诊断方法是前庭眼运动筛查(VOMS),这是一种由医生对患者进行的视觉和平衡测试。研究人员还对现有技术进行了进一步的研究,这些技术的功能将使该设备能够进行大脑监测、视觉测试和最终诊断;即脑电图,虚拟现实和红外眼动追踪。目前,市场上很少有设备将这些技术结合起来用于医疗用途。将这些技术结合在一起的设备将允许更一致的视觉测试管理和实时监测大脑活动。有了一个功能原型,用户测试将被执行,以评估设备的功能和可行性。
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A Novel Headset System Synchronizing Vision and EEG testing for a Rapid Assessment and Diagnosis of Concussions and Other Brain Injuries
Millions of concussions happen each year in the US alone. A proportionally large number of these concussions are due to high impact sports injury. Currently, there exists no solution to quickly monitor brain functions and test the oculomotor functions of individuals who have suffered a traumatic brain injury in order to diagnose them as having suffered a concussion. What is presently done to diagnose concussions is a CT scan or MRI, which are lengthy procedures to schedule, set up, and conduct; and furthermore, takes additional time to analyze the results in order to arrive at a diagnosis. This prolongation of the diagnosing process is inherently problematic since the longer time it takes between time of injury and time of diagnosis, there is greater risk of decisions and actions which can worsen damage to the brain. The sooner a concussion can be diagnosed, the sooner and better the treatment can be performed for recovery. In order to ameliorate this issue, we seek to develop a device to perform the function of diagnosis and monitoring of brain activity in a more rapid and timely manner. Literature review into the anatomy of vestibular and ocular brain functions was performed; as well as research into various testing and monitoring methodologies of these vestibular and ocular functions. One such method that has proven to be a reliable method for diagnosis is Vestibular Ocular Motor Screening (VOMS), which is a visual and balance test performed by a doctor with a patient. Further research was also done into existing technologies whose functionalities would allow the device in order to perform brain monitoring, visual testing, and ultimately diagnosis; namely EEG, VR, and infrared eye tracking. Currently, very few devices on the market take advantage of these technologies together for medical uses. A device incorporating these technologies together allows would allow for more consistent administering of visual tests and real-time monitoring of brain activity. With a functional prototype, user testing is to be performed in order to assess the function and viability of the device.
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