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Starling/CRRT Observational Study

Starling Continuous Renal Replacement Therapy (CRRT) Observational Study

Status
Withdrawn
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05729048
Enrollment
0
Registered
2023-02-15
Start date
2023-07-15
Completion date
2025-03-14
Last updated
2023-07-14

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hemodynamic Monitoring

Keywords

Cardiac Index (CI), Stroke Volume (SV), Stroke Volume Index (SVI), Stroke Volume Variation (SVV), Heart Rate (HR), Ventricular Ejection Time (VET), Total Peripheral Resistance (TPR), Total Peripheral Resistance Index (TPRI), Cardiac Power (CP), Cardiac Power Index (CPI), Blood Oxygenation (SPO2), Oxygen Delivery Index (DO2I), Electrical impedance of the chest cavity (Z0), Thoracic Fluid Content (TFC), Thoracic Fluid Content change from preset time period (TFCd), Thoracic Fluid Content from baseline (TFCd0), Changes in SV, CO and other hemodynamic parameters which are derived by Bioreactance® as a result of posture

Brief summary

Hemodynamic optimization of critically ill patients is a goal for clinicians in order to afford the patient the best possible outcomes. Being able to precisely and rapidly determine patient fluid responsiveness provides the bedside physician and nursing staff the information needed to make critical decisions in regard to the patient's fluid status and management of additional fluids and medications. As fluid management and cardiac output determination are linked to better decision-making and improved outcomes in ICU, the use of a dynamic assessment of fluid responsiveness becomes a key tool for patient management. This study is designed to collect treatment and outcome data on patients that have undergone hemodynamic monitoring during CRRT therapy.

Interventions

DEVICEStarling

Starling is a portable, non-invasive, cardiac output detector system. The Starling monitor measures the cardiac output by employing electrical bioreactance. Bioreactance is a measure of the electrical characteristics of a volume of tissue and fluid. In the case of cardiac output measurements, the relevant tissue includes the heart and the immediate surrounding volume of the thorax. The relevant fluid is blood. The Starling electrode is a double electrode sensor. Within each sensor, one electrode is used to transmit a high frequency sine wave into the body, while the resulting voltage is measured at the adjacent electrode. This information is used to determine cardiac output. The Starling monitor also measures and displays associated hemodynamic parameters based on calculations of measurements already incorporated into the Starling monitor.

Sponsors

Baxter Healthcare Corporation
Lead SponsorINDUSTRY

Study design

Observational model
CASE_ONLY
Time perspective
RETROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 95 Years
Healthy volunteers
No

Inclusion criteria

1. ≥18 to 95 years of age. 2. Patient has undergone hemodynamic monitoring with the Starling monitor during a CRRT treatment. 3. Hemodynamic monitoring was completed no earlier than 2018

Exclusion criteria

1. Patients did not have an arterial line in place during CRRT treatment 2. Patients on extracorporeal membrane oxygenation (ECMO) or left ventricular assist device (LVAD) 3. Patients with end-stage kidney disease on chronic dialysis 4. Hemodynamic monitoring with Starling did not occur during CRRT treatment 5. Data from Starling, CRRT machine, or arterial line cannot be retrieved

Design outcomes

Primary

MeasureTime frameDescription
Change in lactate after fluid removalDay 1 (during CRRT)Perfusion parameter adjusted to net ultrafiltration intensities (ml/kg/h)
Changes in mean arterial pressure (MAP) from beginning to end of CRRTDay 1 (Begin CRRT) through Day 1 (End of CRRT)
Changes in systolic blood pressure (SBP) from beginning to end of CRRTDay 1 (Begin CRRT) through Day 1 (End of CRRT)
Change in stroke volume (SV) after CRRT initiationDay 1 (during CRRT)
Change in cardiac output (CO) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in cardiac index (CI) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in stroke volume (SV) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in stroke volume index (SVI) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in Thoracic Fluid Content (TFC) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in heart rate (HR) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in systolic blood pressure (SBP) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in diastolic blood pressure (DBP) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in central venous pressure (CVP) after fluid removalDay 1 (during CRRT)Cardiac physiology adjusted to net ultrafiltration intensities (ml/kg/h)
Change in mixed venous oxygen saturation (SVO2) after fluid removalDay 1 (during CRRT)Perfusion parameter adjusted to net ultrafiltration intensities (ml/kg/h)
Changes in diastolic blood pressure (DBP) from beginning to end of CRRTDay 1 (Begin CRRT) through Day 1 (End of CRRT)

Secondary

MeasureTime frameDescription
Incidence of intradialytic hypotension (IDH) free time during CRRTDay 1 (during CRRT)
Incidence of time to resolution in intradialytic hypotension (IDH) during CRRTDay 1 (during CRRT)
Changes in intake and output (I/O) during CRRTDay 1 (during CRRT)Fluid balance parameter
Changes in hourly/daily fluid balance during CRRTDay 1 (during CRRT)
Changes in cumulative fluid balance during CRRTDay 1 (during CRRT)
Changes in percent fluid overload during CRRTDay 1 (during CRRT)Fluid balance parameter
Changes in ultrafiltration parameters and net ultrafiltration (UFnet) during CRRTDay 1 (during CRRT)
Incidence of ultrafiltration failure during CRRTDay 1 (during CRRT)Including prescribed/archived, time to fluid balance
Blood flow rate during CRRTDay 1 (during CRRT)
CRRT dose/modalityDay 1 (during CRRT)
Estimate the contribution degree of certain patient conditions, clinical characteristics, fluid, and CRRT parameters in predicting the IDH risk during CRRTDay 1 (during CRRT)
Identify sub-phenotypes of patients at risk of IDH during CRRTDay 1 (during CRRT)
Incidence of intradialytic hypotension (IDH) during CRRTDay 1 (during CRRT)

Countries

United States

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026