CareTaker Medical
Developer of a wearable multimodal wireless hemodynamic monitoring platform that provides continuous beat-by-beat blood pressure, cardiac output and related hemodynamic metrics in noninvasive and minimally invasive configurations. The company emphasizes clinical validation and evidence generation, interoperability with bedside monitoring systems and EHRs, regulatory clearances for market access, and development of predictive analytics using continuous physiologic signals. The platform has received CE marking for European access and U.S. FDA 510(k) clearance for a minimally invasive arterial-line interface.
Industries
Nr. of Employees
small (1-50)
CareTaker Medical
Charlottesville, Virginia, United States
Patents
Self-calibrating systems and methods for blood pressure wave form analysis and diagnostic support
US-12048566-B2
View DetailsSelf-calibrating systems and methods for blood pressure wave form analysis and diagnostic support
US-11207034-B2
View Details
Self-calibrating systems and methods for blood pressure wave form analysis and diagnostic support
US-12048566-B2
View DetailsSelf-calibrating systems and methods for blood pressure wave form analysis and diagnostic support
US-11207034-B2
View DetailsProducts
Wearable multimodal wireless hemodynamic monitoring platform
A wireless monitoring platform that provides continuous hemodynamic surveillance in wearable noninvasive and minimally invasive arterial-line-connected configurations and streams continuous data to bedside monitoring systems and EHRs.
Wearable multimodal wireless hemodynamic monitoring platform
A wireless monitoring platform that provides continuous hemodynamic surveillance in wearable noninvasive and minimally invasive arterial-line-connected configurations and streams continuous data to bedside monitoring systems and EHRs.
Services
On-site or remote demonstrations and technical evaluations of the wearable multimodal hemodynamic monitoring platform for clinical teams.
Institutional return-on-investment studies and economic modeling to quantify potential cost and operational impacts of continuous hemodynamic monitoring.
Access to clinical specialists for implementation planning, staff training and integration into existing clinical workflows.
On-site or remote demonstrations and technical evaluations of the wearable multimodal hemodynamic monitoring platform for clinical teams.
Institutional return-on-investment studies and economic modeling to quantify potential cost and operational impacts of continuous hemodynamic monitoring.
Access to clinical specialists for implementation planning, staff training and integration into existing clinical workflows.
Expertise Areas
- Continuous hemodynamic monitoring
- Wearable medical sensor design and wireless telemetry
- Physiologic waveform analysis and model-based parameter estimation
- Interoperability and clinical data integration with bedside systems and EHRs
Key Technologies
- Continuous noninvasive blood pressure measurement
- High-resolution arterial pulse waveform decomposition
- Continuous cardiac output estimation from pulse waveforms
- Wearable wireless sensor telemetry
News & Updates
Participation / presence at a professional meeting (program listing referenced).
Conference participation listing for critical care professional meeting.
Discussion of clinical pathway support and monitoring guidance to enable rapid identification of cardiogenic shock in patients with ST-elevation myocardial infarction.
Awarded a Virginia Catalyst grant to develop physiologic and biobehavioral AI models and advance the wearable hemodynamic monitoring platform to reduce readmission risk.
Comparative analysis of intermittent cuff measurement, invasive arterial line, and noninvasive continuous monitoring approaches, including performance and setup time comparisons.
Discussion of continuous noninvasive monitoring as an alternative to techniques that require continuous IV fluid infusion during supply shortages.
Participation / presence at a professional meeting (program listing referenced).
Conference participation listing for critical care professional meeting.
Discussion of clinical pathway support and monitoring guidance to enable rapid identification of cardiogenic shock in patients with ST-elevation myocardial infarction.
Awarded a Virginia Catalyst grant to develop physiologic and biobehavioral AI models and advance the wearable hemodynamic monitoring platform to reduce readmission risk.
Comparative analysis of intermittent cuff measurement, invasive arterial line, and noninvasive continuous monitoring approaches, including performance and setup time comparisons.
Discussion of continuous noninvasive monitoring as an alternative to techniques that require continuous IV fluid infusion during supply shortages.