SBIR-STTR Award

Noninvasive Optoacoustic Monitoring Of Intrapartum Fetal Cerebral Hypoxia
Award last edited on: 3/12/13

Sponsored Program
SBIR
Awarding Agency
NIH : NICHD
Total Award Amount
$194,367
Award Phase
1
Solicitation Topic Code
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Principal Investigator
Graham Randall

Company Information

Noninvasix Inc

1700 Strand Street Suite 1200
Galveston, TX 77555
   (409) 539-2230
   info@noninvasix.com
   www.noninvasix.com
Location: Single
Congr. District: 14
County: Galveston

Phase I

Contract Number: 1R43HD075551-01
Start Date: 2/1/13    Completed: 1/30/14
Phase I year
2013
Phase I Amount
$194,367
Fetal distress (including cerebral hypoxia) during labor represents a risk factor for death or severe neurologic complications (e.g., cerebral palsy). More than 4,000,000 babies are born annually in the United States and are candidates for monitoring during labor. Although fetal heart rate monitoring provides an indirect indicator of fetal oxygenation, to date, there are no commercially available monitors that directly monitor the adequacy of fetal cerebral blood flow. Thus, the need for noninvasive measurement of cerebral oxygenation in fetuses is particularly pressing. In this SBIR Phase I application, we propose to develop a fetal interface for a prototype system that we have developed for monitoring cerebral oxygenation in patients with traumatic brain injury. The system will provide accurate, noninvasive measurement of cerebral venous blood oxygen saturation in fetuses during late stage labor through the open anterior fontanelle or through the thin cranial bones. Cerebral venous oxygen saturation, an established monitor in patients with severe traumatic brain injury, provides in a single number an assessment of the ability of cerebral blood flow and cerebral blood oxygen content to meet cerebral oxygen requirements. In our previous works, we described, built and tested in experimental animals, adult volunteers and very-low-birth-weight neonates an optoacoustic device for noninvasive monitoring of cerebral venous oxygen saturation. Our optoacoustic system provides accurate measurement of oxygen saturation (R2 = 0.990), specifically in the superior sagittal sinus, because high (optical) contrast and high (ultrasound) resolution permit direct probing of blood vessels. The specific aims of the proposed project are: 1) to develop for use in fetuses during late stage labor a clinical prototype patient interface that is compatible with our optoacoustic platform; and 2) to test the system in vivo in fetuses during late-stage labor. After implementation of the proposed project, we will build and test a manufacturing-ready prototype and secure 510k clearance from the FDA.

Public Health Relevance:
In the proposed project, we will develop and test a noninvasive optacoustic monitor designed for measurements of cerebral blood oxygenation in fetuses. To date, there are no commercially available monitors for measurement of this critically important parameter in fetuses. Successful development of this monitor will reduce the incidence of cerebral palsy and the incidence of unnecessary cesarean section.

Public Health Relevance Statement:
In the proposed project, we will develop and test a noninvasive optacoustic monitor designed for measurements of cerebral blood oxygenation in fetuses. To date, there are no commercially available monitors for measurement of this critically important parameter in fetuses. Successful development of this monitor will reduce the incidence of cerebral palsy and the incidence of unnecessary cesarean section.

Project Terms:
Acceleration; Accounting; Acids; Adult; Animals; Anterior; Area; Asphyxia; base; Birth; Blood; Blood Vessels; bone; Businesses; Cardiopulmonary Bypass; Cephalic; Cerebral Hypoxia; Cerebral Palsy; Cerebrovascular Circulation; Cerebrum; Cervix Uteri; Cesarean section; Cessation of life; Clinical; Consult; design; Development; developmental disease/disorder; Devices; Emerging Technologies; engineering design; fetal; Fetal Distress; Fetal Heart Rate; Fetal Monitoring; Fetus; Funding; Gold; Grant; Head; Image; In Vitro; in vivo; Incidence; Injury; innovation; intrapartum; Laboratories; Lead; Legal patent; Licensing; Location; Low Birth Weight Infant; mature animal; Measurement; Measures; Medical; meetings; Modification; Monitor; Neonatal; neonatal human; neonate; Neurologic; Newborn Infant; Optics; Oxygen; Oxygen saturation measurement; Patients; Phase; placental membrane; programs; prototype; research clinical testing; Resolution; Risk; Risk Factors; Rupture; Secondary to; Secure; Seeds; Services; Small Business Innovation Research Grant; Social Welfare; Staging; Structure of fontanel of skull; Superior sagittal sinus; System; TBI Patients; Techniques; Technology; Testing; Texas; Thick; Traumatic Brain Injury; Ultrasonography; United States; Universities; Ursidae Family; Vagina; Venous; Very Low Birth Weight Infant; volunteer; Work

Phase II

Contract Number: ----------
Start Date: 00/00/00    Completed: 00/00/00
Phase II year
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Phase II Amount
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