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Effect of Ketamine Assisted Analgesia on Oxygen Supply and Oxygen Consumption in Patients After Cardiac Surgery

Effect of Ketamine Assisted Analgesia on Oxygen Supply and Oxygen Consumption in Patients After Cardiac Surgery

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04906915
Enrollment
112
Registered
2021-05-28
Start date
2021-05-08
Completion date
2022-05-31
Last updated
2021-05-28

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

Conditions

Intensive Care Unit

Keywords

Ketamine, Extracorporeal circulation, Oxygen Supply, Oxygen Consumption

Brief summary

After cardiopulmonary bypass heart surgery, with the rewarming of body temperature, the metabolic capacity of the body is enhanced, the microcirculation is opened, and tissue perfusion is increased. At the same time, the body pays off the oxygen debt formed by the low temperature and reduced blood flow in cardiopulmonary bypass, so that the tissue oxygen demand increases and oxygen consumption increases.Analgesia and sedation are important treatment measures for patients after cardiopulmonary bypass. S-isomer of ketamine and eselamine enhanced the sedation and enhanced the analgesic effect, but whether it can improve the imbalance of oxygen supply and oxygen consumption after cardiopulmonary bypass is unknown.

Detailed description

After cardiopulmonary bypass, the body usually appears in a state of hypermetabolism. In addition to anesthesia resuscitation and recovery of spontaneous respiration, chills, pain and anxiety can increase oxygen demand, increased oxygen consumption is also related to a series of neuroendocrine reactions.At the same time, the body needs to repay the oxygen debt formed by low temperature and reduced blood flow in extracorporeal circulation, so that the tissue oxygen demand increases, and the systemic oxygen consumption is significantly higher than the normal physiological state. Sedation and analgesia treatment is one of the important early treatment measures for patients after heart surgery. Patients with heart disease are prone to anxiety and restlessness due to reduced cardiac function reserve, severe surgical trauma and extracorporeal circulation, which can lead to hemodilution, tissue edema, ischemia and reperfusion injury, etc. In addition, patients with high preoperative mental stress are prone to anxiety and restlessness.Appropriate sedation and analgesia treatment is very important to reduce stress response, reduce oxygen consumption and maintain the stability of hemodynamics. The application of ketamine in sedation and analgesia has the characteristics of high controllability, and it does not inhibit respiration and mildly excites circulation, but whether it can improve the imbalance of oxygen supply and demand in patients after cardiopulmonary bypass is unknown.Therefore, it is of great significance to investigate the effect of ketamine on oxygen supply and oxygen consumption of patients after cardiopulmonary bypass surgery.

Interventions

DRUGKetamine

The efficacy of ketamine was assessed by calculating oxygen supply and consumption

Sponsors

First People's Hospital of Chenzhou
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

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

Inclusion criteria

* Consecutive adult (\>18years)patients after heart surgery

Exclusion criteria

* Chronic kidney disease (CKD); ECMO or IABP assistance is required; Malignant tumor; Acquired immunodeficiency syndrome; receive psychiatric medication.

Design outcomes

Primary

MeasureTime frameDescription
Oxygen Supply and Oxygen Consumption0-48 hoursAfter the patient was admitted to ICU, femoral artery puncture and catheterization were performed to establish PICCO connection access. At 0h, 4h, 8h, 12h, 16h, 20h, 24h, 32h, 40h and 48h after surgery, ice saline injection was used to measure CO, and central vein and peripheral blood samples were collected for blood gas examination.According to the formula, the patient's oxygen supply and oxygen consumption were calculated: DO2=CO×CaO2×10;CaO2 = 1.34 \* SaO2 + 0.003 \* Hb PaO2;VO2 = CI x (CaO2 - CvO2).

Countries

China

Contacts

Primary ContactMei XM Mei
17742594539@163.com86-17742594539

Outcome results

None listed

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