Related Experiment Video
Updated: Jan 1, 2026

Imaging and Quantification of the Hepatic Vasculature of Mice Using Ultrafast Doppler Ultrasound
Published on: July 19, 2024
Monitoring of systemic and hepatic hemodynamic parameters in mice
Chichi Xie1, Weiwei Wei2, Tao Zhang2
1Department of General, Visceral and Vascular Surgery, Jena University Hospital; Reproductive Medicine Center, The First Affiliated Hospital of Wenzhou Medical University.
Abstract:
The use of mouse models in experimental research is of enormous importance for the study of hepatic physiology and pathophysiological disturbances. However, due to the small size of the mouse, technical details of the intraoperative monitoring procedure suitable for the mouse were rarely described. Previously we have reported a monitoring procedure to obtain hemodynamic parameters for rats. Now, we adapted the procedure to acquire systemic and hepatic hemodynamic parameters in mice, a species ten-fold smaller than rats. This film demonstrates the instrumentation of the animals as well as the data acquisition process needed to assess systemic and hepatic hemodynamics in mice. Vital parameters, including body temperature, respiratory rate and heart rate were recorded throughout the whole procedure. Systemic hemodynamic parameters consist of carotid artery pressure (CAP) and central venous pressure (CVP). Hepatic perfusion parameters include portal vein pressure (PVP), portal flow rate as well as the flow rate of the common hepatic artery (table 1). Instrumentation and data acquisition to record the normal values was completed within 1.5 h. Systemic and hepatic hemodynamic parameters remained within normal ranges during this procedure. This procedure is challenging but feasible. We have already applied this procedure to assess hepatic hemodynamics in normal mice as well as during 70% partial hepatectomy and in liver lobe clamping experiments. Mean PVP after resection (n= 20), was 11.41 ± 2.94 cmH2O which was significantly higher (P<0.05) than before resection (6.87 ± 2.39 cmH2O). The results of liver lobe clamping experiment indicated that this monitoring procedure is sensitive and suitable for detecting small changes in portal pressure and portal flow rate. In conclusion, this procedure is reliable in the hands of an experienced micro-surgeon but should be limited to experiments where mice are absolutely needed.
Insights
This study details a novel surgical monitoring technique for measuring systemic and hepatic hemodynamics in mice. The procedure, though challenging, provides reliable data for hepatic physiology research in this small animal model.
Area of Science:
- * Experimental physiology and surgical techniques.
- * Small animal models in biomedical research.
Background:
- * Mouse models are crucial for studying liver physiology and disease.
- * Technical challenges exist in monitoring hemodynamic parameters in small animals like mice.
- * Previous methods for rats were adapted for mice, a species ten times smaller.
Purpose of the Study:
- * To demonstrate a procedure for acquiring systemic and hepatic hemodynamic parameters in mice.
- * To establish normal hemodynamic values in mice using this technique.
- * To validate the procedure's applicability in experimental settings like partial hepatectomy and liver lobe clamping.
Main Methods:
- * Adaptation of a rat hemodynamic monitoring procedure for mice.
- * Instrumentation for recording vital signs (body temperature, respiratory rate, heart rate).
- * Measurement of systemic parameters (carotid artery pressure, central venous pressure) and hepatic parameters (portal vein pressure, portal flow rate, hepatic artery flow rate).
Main Results:
- * Successful instrumentation and data acquisition within 1.5 hours.
- * Systemic and hepatic hemodynamic parameters remained within normal ranges during the procedure.
- * Significantly increased portal vein pressure observed after 70% partial hepatectomy (11.41 ± 2.94 cmH2O vs. 6.87 ± 2.39 cmH2O).
- * Procedure demonstrated sensitivity in detecting small changes in portal pressure and flow rate during liver lobe clamping.
Conclusions:
- * The described procedure is technically feasible and reliable for assessing mouse hemodynamics.
- * It is suitable for various experimental conditions, including surgical interventions.
- * The technique is recommended for experienced micro-surgeons and essential mouse studies.

