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SBIR Phase I: Novel Low-Profile Miniature Wireless Pressure Sensor

SBIR Phase I: Novel Low-Profile Miniature Wireless Pressure Sensor
SBIR 第一阶段:新型薄型微型无线压力传感器
批准号:
1214819
负责人:
Alexander Chimbayo
金额:
$14.96万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-07-01 至 2012-12-31

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中文摘要
翻译
这个小型企业创新研究第一阶段项目致力于开发一种新型的小型微型无线压力传感系统,该系统专为需要小尺寸、低成本、小型(平板)传感器的工业和医疗应用而定制。这些微型无线传感器将在一个小系统中包含所有系统组件(传感器、电子设备、电感线圈)。这种无线传感器的制造工艺也被设计成比现有的传感器更简单、更容易制造。建议传感器最重要的医疗应用是神经压力监测,即创伤性脑损伤(TBI)患者的颅内压传感器以及脑积水患者的分流压力监测器。这项技术将提供安全、慢性、快速、详细、实时、连续、全面的颅内压测量,并支持家庭健康监测的趋势,有可能彻底改变患者的治疗方式。拟议的微型无线系统的优势是:(A)超薄(扁平)--非常适合神经压力监测应用中的微创放置,(B)将所有系统组件集成到一个小封装中的微型无线系统,(C)低成本、坚固耐用和可制造,(D)易于为各种压力监测应用定制,这项小型企业创新研究计划的潜在商业价值将体现在几个领域。最终目标是将拟议的无线压力监测系统商业化,用于工业和医疗应用。商业应用包括任何需要无线压力传感的领域;例如,航空航天、汽车和工业应用。拟议中的传感器的更大市场是医疗应用。医疗市场是神经压力监测产品,即用于创伤性脑损伤(TBI)患者的颅内压传感器以及用于脑积水患者的分流压力监测器。大约有140万人因头部受伤而接受治疗,其中超过25万人是中度或重度受伤。在美国,每年约有70,000人死于脑外伤,另有80,000名患者患有严重的长期残疾。脑积水是最常见的出生缺陷之一,每1000名婴儿中就有一人受到影响,许多成年人也会受到影响。每年约有7万名被诊断为脑积水的患者出院。S每年接受近36,000例分流相关手术,相当于1亿美元的医疗费用。
英文摘要
This Small Business Innovation Research Phase I project addresses the development of a novel low-profile miniature wireless pressure sensing system, customized for industrial and medical applications where a small-sized, low cost, low-profile (flat) sensor is required. These miniature wireless sensors will contain all system components (sensor, electronics, inductor coil) in one small system. The fabrication process for this wireless sensor is also designed to be simpler and easier to manufacture than existing sensors. The most important medical application being targeted for the proposed sensors is for neurological pressure monitoring, namely intracranial pressure sensors for patients with traumatic brain injury (TBI) as well as shunt pressure monitors for patients with hydrocephalus. This technology will provide safe, chronic, fast, detailed, real time, continuous, comprehensive, intracranial pressure measurements, and supports the trend towards home health monitoring, with the potential to revolutionize the way patients are treated. The advantages of the proposed miniature wireless systems are: (a) low profile (flat) - ideal for minimally invasive placement in neurological pressure monitoring applications, (b) miniature wireless system which integrates all system components in one small package, (c) low cost, robust, and manufacturable, (d) easily customized for a variety of pressure monitoring applicationsThe potential commercial value of this Small Business Innovation Research proposal will be in several areas. The final goal is the commercialization of the proposed wireless pressure monitoring systems for use in industrial and medical applications. Commercial applications include any area that is in need of wireless pressure sensing; for example, aerospace, automotive and industrial applications. The larger market for the proposed sensors is for medical applications. The medical markets are neurological pressure monitoring products, namely intracranial pressure sensors for patients with traumatic brain injury (TBI) as well as shunt pressure monitors for patients with hydrocephalus. Approximately 1.4 million people are treated for head injuries, with over a quarter million being moderate or severe injuries. TBI accounts for approximately 70,000 deaths each year in America, with an additional 80,000 patients having severe long-term disabilities. Hydrocephalus is among the most common birth defects, affecting 1 in 1000 babies, as well as many adults. Approximately 70,000 patients are discharged from hospitals with the diagnosis of hydrocephalus each year. Nearly 36,000 shunt-related procedures a year translates to $100's million dollars worth of medical expense.
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