The Ohio State University College of Medicine, Columbus, Ohio, USA.
Center for Regenerative Medicine, The Abigail Wexner Research Institute, Nationwide Children's Hospital, Columbus, Ohio, USA.
Anat Histol Embryol. 2024 Nov;53(6):e13114. doi: 10.1111/ahe.13114.
Dorset sheep (Ovis aries) are common models in translational cardiovascular research due to physiologic and anatomic similarities to humans. While employing ovine subjects to study single-ventricle physiology, we repeatedly observed position-based changes in central venous pressure (CVP) which could not be explained by hydrostatic (gravitational) effects. Inferior vena cava (IVC) narrowing or compression has been demonstrated in numerous species, and we hypothesised that this phenomenon might explain our observations in O. aries. This study aimed to characterise position-dependent morphology of the IVC in O. aries using catheter-based hemodynamic and dimensional measurements, three-dimensional MRI reconstruction and histological analysis. Baseline measurements revealed a significant reduction in IVC dimensions at the level of the diaphragm (dVC) compared to the abdominal vena cava (aVC) and thoracic vena cava (tVC). We also observed a transdiaphragmatic pressure gradient along the IVC, with higher pressures in the aVC compared to the tVC. We found that variation of position and fluid status altered IVC haemodynamics. Histological data showed variable muscularity along the length of the IVC, with greater smooth muscle content in the aVC than the tVC. These findings will improve understanding of baseline ovine physiology, help refine experimental protocols and facilitate the translation of findings to the clinic.
多塞特绵羊(Ovis aries)由于其生理和解剖结构与人类相似,是转化心血管研究中的常见模型。在使用绵羊研究单心室生理学的过程中,我们反复观察到基于位置的中心静脉压(CVP)变化,这些变化不能用静水力学(重力)效应来解释。在许多物种中都已经证明下腔静脉(IVC)变窄或受压,我们假设这种现象可能解释了我们在 O. aries 中观察到的现象。本研究旨在使用基于导管的血流动力学和尺寸测量、三维 MRI 重建和组织学分析来描述 O. aries 中 IVC 的位置依赖性形态。基线测量显示,与腹腔静脉(aVC)和胸腔静脉(tVC)相比,膈下腔静脉(dVC)的 IVC 尺寸明显减小。我们还观察到 IVC 上存在跨膈压梯度,aVC 中的压力高于 tVC。我们发现位置和液体状态的变化改变了 IVC 的血液动力学。组织学数据显示 IVC 长度上的肌肉变化,aVC 中的平滑肌含量高于 tVC。这些发现将提高对基线绵羊生理学的理解,有助于完善实验方案,并促进研究结果向临床转化。