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Updated: Feb 3, 2026

Quantification of Levator Ani Hiatus Enlargement by Magnetic Resonance Imaging in Males and Females with Pelvic Organ Prolapse
Published on: April 17, 2019
Abdominal organ perfusion and inflammation in experimental sepsis: a magnetic resonance imaging study
Silvia Marchesi1, Francisco Ortiz Nieto2, Kerstin M Ahlgren1
1Hedenstierna Laboratoriet, Department of Surgical Science, Uppsala University , Uppsala , Sweden.
Abstract:
Diffusion-weighted magnetic resonance imaging (DW-MRI) uses water as contrast and enables the study of perfusion in many organs simultaneously in situ. We used DW-MRI in a hypodynamic sepsis model, comparing abdominal organ perfusion with global hemodynamic measurements and inflammation. Sixteen anesthetized piglets were randomized into 3 groups: 2 intervention (sepsis) groups: HighMAP (mean arterial pressure, MAP > 65 mmHg) and LowMAP (MAP between 50 and 60 mmHg), and a Healthy Control group (HC). Sepsis was obtained with endotoxin and the desired MAP maintained with norepinephrine. After 6 h, DW-MRI was performed. Acute inflammation was assessed with IL-6 and TNFα in abdominal organs, ascites, and blood and by histology of intestine (duodenum). Perfusion of abdominal organs was reduced in the LowMAP group compared with the HighMAP group and HC. Liver perfusion was still reduced by 25% in the HighMAP group compared with HC. Intestinal perfusion did not differ significantly between the intervention groups. Cytokine concentrations were generally higher in the LowMAP group but did not correlate with global hemodynamics. However, cytokines correlated with regional perfusion and, for liver and intestine, also with intra-abdominal pressure. Histopathology of intestine worsened with decreasing perfusion. In conclusion, although a low MAP (≤60 mmHg) indicated impeded abdominal perfusion in experimental sepsis, it did not predict inflammation, nor did other global measures of circulation. Decreased abdominal perfusion partially predicted inflammation but intestine, occupying most of the abdomen, and liver were also affected by intra-abdominal pressure. NEW & NOTEWORTHY The study increases the knowledge of abdominal perfusion during sepsis. We used diffusion weighted imaging to assess perfusion simultaneously and noninvasively in different abdominal organs. The technique has not been used in a sepsis model before. Cytokine concentrations were measured in different abdominal organs and vascular beds and related to regional perfusion. Decreased abdominal perfusion, but not global measures of circulation, predicted inflammation. Intestine, occupying most of the abdomen, and liver were also affected by intra-abdominal pressure.
Insights
In experimental sepsis, low mean arterial pressure (MAP) indicated reduced abdominal organ perfusion. However, decreased regional perfusion, not global hemodynamics, partially predicted inflammation, with intra-abdominal pressure affecting the liver and intestine.
Area of Science:
- Medical Imaging
- Sepsis Research
- Physiology
Background:
- Diffusion-weighted magnetic resonance imaging (DW-MRI) offers simultaneous, in situ perfusion assessment of multiple organs.
- Hypodynamic sepsis models are crucial for understanding circulatory dysfunction and organ perfusion.
- Assessing abdominal organ perfusion in sepsis is vital for targeted interventions.
Purpose of the Study:
- To investigate abdominal organ perfusion using DW-MRI in a hypodynamic sepsis model.
- To compare regional perfusion with global hemodynamic measurements and inflammatory markers.
- To evaluate the impact of intra-abdominal pressure on organ perfusion and inflammation.
Main Methods:
- Anesthetized piglets were randomized into sepsis (HighMAP, LowMAP) and healthy control groups.
- Sepsis was induced with endotoxin, and mean arterial pressure (MAP) was maintained with norepinephrine.
- Diffusion-weighted MRI was performed after 6 hours, alongside measurements of cytokines (IL-6, TNFα) and intestinal histology.
Main Results:
- LowMAP group showed reduced abdominal organ perfusion compared to HighMAP and controls.
- Liver perfusion was reduced by 25% in the HighMAP group versus controls.
- Cytokine levels correlated with regional perfusion and intra-abdominal pressure, particularly in the liver and intestine.
- Intestinal histopathology worsened with decreasing perfusion.
Conclusions:
- Low MAP in sepsis correlates with impaired abdominal perfusion but does not predict inflammation.
- Regional abdominal perfusion, not global hemodynamics, partially predicts inflammation.
- Intra-abdominal pressure significantly influences liver and intestinal perfusion and inflammation in sepsis.
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