Preclinical Imaging Scientific Research Facility, Department of Oncology, University of Oxford, Oxford OX3 7DQ, UK.
Department of Materials, Quantum Information Processing Interdisciplinary Research Collaboration, University of Oxford, Parks Road, Oxford OX1 3PH, UK.
Tomography. 2021 Feb 7;7(1):39-54. doi: 10.3390/tomography7010004. eCollection 2021 Mar.
Standardisation of animal handling procedures for a wide range of preclinical imaging scanners will improve imaging performance and reproducibility of scientific data. Whilst there has been significant effort in defining how well scanners should operate and how in vivo experimentation should be practised, there is little detail on how to achieve optimal scanner performance with best practices in animal welfare. Here, we describe a system-agnostic, adaptable and extensible animal support cradle system for cardio-respiratory-synchronised, and other, multi-modal imaging of small animals. The animal support cradle can be adapted on a per application basis and features integrated tubing for anaesthetic and tracer delivery, an electrically driven rectal temperature maintenance system and respiratory and cardiac monitoring. Through a combination of careful material and device selection, we have described an approach that allows animals to be transferred whilst under general anaesthesia between any of the tomographic scanners we currently or have previously operated. The set-up is minimally invasive, cheap and easy to implement and for multi-modal, multi-vendor imaging of small animals.
标准化广泛的临床前成像扫描仪的动物处理程序将提高成像性能和科学数据的可重复性。虽然已经有很大的努力来定义扫描仪应该如何运行以及如何进行体内实验,但关于如何在动物福利的最佳实践中实现最佳的扫描仪性能,细节很少。在这里,我们描述了一种与系统无关、适应性强且可扩展的动物支撑摇篮系统,用于对小动物进行心脏-呼吸同步和其他多模态成像。动物支撑摇篮可以根据应用进行调整,具有集成的麻醉和示踪剂输送管、电动直肠温度维持系统以及呼吸和心脏监测。通过仔细的材料和设备选择,我们描述了一种方法,允许在全身麻醉下将动物从我们当前或之前操作过的任何断层扫描仪之间转移。该设置微创、便宜且易于实施,可用于小型动物的多模态、多供应商成像。