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临床试验/NCT02262507
NCT02262507已完成不适用

Concussion Device Audiological Measures

Children's Hospital Medical Center, Cincinnati0 个研究点目标入组 410 人开始时间: 2013年9月最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
410
主要终点
Number of Participants Undergoing Acoustic Reflectance

研究概览

简要总结

Significant morbidity, mortality, and related costs are caused by traumatic brain injury (TBI). A simple, effective, and lightweight device worn by athletes or war fighters in the field, designed to mitigate TBI resulting from blast trauma or concussive events, would save lives, and the huge costs currently being experienced for life-treatment of surviving victims. An externally-worn medical device that applies mild jugular compression according to the principle of the Queckenstedt Maneuver (the Device) is being developed by Q30 Labs, LLC (Q30). Initial research suggests that the Device has the potential to reduce the likelihood of TBI. The rationale for testing wideband absorbance and Oto-acoustics emissions (OAE) is that the investigators need a physiologic, non-invasive method to evaluate the brain responses to mild jugular compression across multiple age groups. To determine this with MR imaging is currently cost prohibitive. The investigators pilot data from the parent IRB indicates a consistent response measured via wideband absorbance in young adults. Therefore, a preliminary step to evaluate the safety and efficacy of the neck collar device is to employ this technology across a wide range of ages.

详细描述

For the testing sessions, subjects may either come to our testing site or the investigators may bring the testing to their location (e.g. schools, work). The subjects will be fitted with a device around your neck, like a neck tie. The Device incorporates two bulges localized over the site of the internal jugular veins bilaterally. Experiments performed with jugular Doppler ultrasound demonstrate that while wearing the Device, flows within the jugular veins are reduced, while flow within the carotid arteries and all portions of the cerebrum are preserved (JA Fisher, unpublished data). Thus, application of the Device to the subject will not cause any untoward health risks (IRB# 2013-2240 safety testing performed on this Device). The pressure exerted by the Device on the region of the neck superficial to the internal jugular vein is akin to the pressure felt when a person yawns or wears a snugly fitting necktie. The methods are utilized in prior approved IRB (2013-2240)..

Station I: Consent to Participate Each participant will review the Institutional Review Board approved consent to participate form prior to data collection. They will be given an adequate amount of time to ask questions to the study coordinator, or the person obtaining consent, and then make their decision to participate or not participate. If they wish to participate, they will be asked to sign the informed consent form. For middle school and high school subjects recruited via the investigators relationship with the schools, this station will be designated to review consent and assent forms to ensure that proper signatures have been obtained.

Station II: Device Fitting and Ultrasound The subjects will be outfitted with the device by a staff member appropriately trained in fitting the device in the proper location.

Station III: Wideband Absorbance and Oto-Acoustic Emissions This station will help determine the effectiveness of the device by measuring the auditory response of a clicking noise that will be non-invasively imparted into the subject's outer ear. For both tests, a soft silicone tip is placed into the outer ear, and sounds are delivered via a miniature speaker. For the wideband absorbance test, absorbed acoustic responses will be monitored to provide information on the operation of the collar device. These are measured as changes in the acoustic absorbance of the ear. For the oto-acoustic emission test, tones or clicks will be presented to the ear with the same soft ear probe and recording microphones pick up the oto-acoustic emission coming back from the outer hair cells of the inner ear. The computer averages and processes the responses in reference to a noise floor across a specified frequency range, displaying the results on the computer screen for the tester. The oto-acoustic emissions test also provides a brief hearing screening to determine if hearing is normal.

Evidence indicates that wideband absorbance and oto-acoustic emissions will be altered with increased intracranial pressure, thus this simple, non-invasive exam will provide feedback on the effectiveness of the device.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Other
盲法
None

入排标准

年龄范围
8 Years 至 65 Years(Child, Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • • Normal healthy volunteer
  • Able to provide written consent

排除标准

  • • Unable to provide written consent
  • History of neurological deficits, previous cerebral infarction, or head trauma
  • Hydrocephalus
  • Known carotid hypersensitivity
  • Known increased intracranial pressure
  • Central vein thrombosis
  • Active concussion symptoms
  • Ventricular shunt or neurologic condition
  • Internal or external hardware that has been surgically placed in the neck
  • Any altered level of consciousness
  • Inability to sit still for 10 minutes

结局指标

主要结局

Number of Participants Undergoing Acoustic Reflectance

时间窗: within single day

Number of participants undergoing acoustic reflectance with and without the compression collar

次要结局

未报告次要终点

研究者

申办方类型
Other
责任方
Sponsor

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