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Non-Invasive Pneumothorax Detector

Non-Invasive Pneumothorax Detector
无创气胸检测仪
批准号:
7434353
负责人:
WILLIAM A HUDGINS
金额:
$79.17万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-09-30 至 2010-04-30
关键词:
Accident and Emergency departmentAirAir PressureAlgorithmsAltitudeAnimal ModelBlunt TraumaBrain hemorrhageBusinessesCardiac Surgery proceduresCardiopulmonaryCaringCessation of lifeChestChest TubesClinicalClinical ResearchComputer softwareComputersConditionCost SavingsCritical CareCustomDataData CollectionDetectionDevelopmentDevice or Instrument DevelopmentDevicesDiagnosisDistressDocumentationElectronicsEmergency Medical TechniciansEmergency SituationEnsureEnvironmental MonitoringFamily suidaeFeedbackFrequenciesFundingGenerationsGoalsHealth PersonnelHematomaHospitalsHourHousingHumanIntensive Care UnitsInvasiveLabelLaboratoriesLeftLegal patentLength of StayLifeLocationLungLung CapacityManualsMarketingMechanicsMedicalMedicineMethodsMilitary PersonnelMiniaturizationMonitorNoiseNon-Invasive Cancer DetectionNumbersOutputPatient MonitoringPatientsPersonsPhasePhysiciansPhysiologic pulsePleuralPleural cavityPneumothoraxPostoperative PeriodProcessPulse takingQualifyingRadarRadiationRadioRangeReportingResearchResearch InfrastructureResearch PersonnelResolutionResourcesRespiratory distressSafetySalesScoreShippingShipsSideSignal TransductionSiteSmall Business Funding MechanismsSmall Business Innovation Research GrantSpeedStagingStandards of Weights and MeasuresSurgeonSystemTechnologyTestingThoracic Surgical ProceduresTimeTraumaUnited States Food and Drug AdministrationUnited States National Institutes of HealthUniversity HospitalsValidationVenousVisualWorkX-Ray Computed Tomographybaseclinical research siteclinically significantcollegecommercializationcomputerized data processingcostcritical care nursingdata acquisitiondaydesigndetectordigitalemergency service respondergraphical user interfacelaptoplung volumemanufacturing facilitymillimeterminiaturizenovelperformance testsportabilitypressureprogramsprototypepulmonary functionresponserib bone structurescale upsoftware developmentsuccesstrauma centers

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DESCRIPTION (provided by applicant): Pneumothorax is an accumulation of air in the pleural cavity, often as the result of a blunt trauma causing a partial collapse of the lung. While a pneumothorax is easily treatable, it can become life threatening if not detected at an early stage. Current methods for diagnosing pneumothorax (chest x-ray, chest CT scan) are not possible for emergency squads or battlefield medics and not practical for long-term monitoring of critical care patients. It is especially important for first responders to properly diagnose and treat a pneumothorax when an airlift evacuation is considered, as the reduced pressures could result in an expansion of the pneumothorax and death. A portable handheld pneumothorax detector that is inexpensive, accurate, and non-invasive therefore would be a great benefit. Working with Lawrence Livermore National Labs, BIOMEC has developed prototype pneumothorax detection devices based on patented Micropower Impulse Radar (MIR) technology. This device emits very low power radio frequency impulses of a very high frequency and broad spectrum (1-4 GHz). The resultant echoes are collected by extremely high-speed circuitry and analyzed by a proprietary software algorithm. Funded in part by the Phase I and Phase II NIH SBIR program, we have demonstrated the ability of these devices to accurately detect the presence or absence of a suspected pneumothorax in over 40 patients at two metro-Detroit hospital emergency departments. While originally based on a laptop computer for data collection and analysis, BIOMEC is currently in the process of miniaturizing the electronics and completely interfacing the device with a handheld PDA. The next steps in commercialization of this device are to complete the miniaturization and integration with the PDA, complete the clinical study, and apply to the FDA for 510(k) clearance to market. In parallel to these efforts, BIOMEC will apply for additional patent coverage, begin manufacturing scale-up, and identify the appropriate market channels. The markets for this device include both the civilian emergency response teams (EMTs and ER staff) as well as military battlefield medics. Longer-term markets include continuous monitoring for pneumothorax, for example in an intensive care unit after cardiac surgery. BIOMEC has had significant discussions with physicians and support staff in both the civilian and military markets and received extremely positive feedback regarding the value and need for this device. A full time business development person is now required to develop these channels to support the commercialization of this device into these markets. A handheld inexpensive pneumothorax detector will be commercially attractive to emergency medical personnel and trauma clinicians along with battlefield medics. Also, it would be useful for patient monitoring in a cardio-thoracic ICU or critical care units. The combined market for these applications is quite large. With further development, the device may be able to detect other trauma conditions, such as hematoma and hemorrhagic stroke.
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湍流和化学交互作用对H2-Air-H2O微混燃烧中NO生成的影响研究
  • 批准号:
    51976048
  • 项目类别:
    面上项目
  • 资助金额:
    61.0万元
  • 批准年份:
    2019
  • 负责人:
    邱朋华
  • 依托单位: