Institute of Scientific Instruments of the Czech Academy of Sciences, Brno, Czech Republic.
Department of Condensed Matter Physics, Faculty of Science, Masaryk University, Brno, Czech Republic.
World J Biol Psychiatry. 2023 Jun;24(5):414-428. doi: 10.1080/15622975.2022.2124450. Epub 2022 Sep 28.
Pilot study validating the animal model of depression - the bilateral olfactory bulbectomy in rats - by two nuclear magnetic resonance methods, indirectly detecting the metabolic state of the brain. Furthermore, the study focussed on potential differences in brain laterality.
Arterial spin labelling assessed cerebral brain flow in prefrontal, sensorimotor, and piriform cortices, nucleus accumbens, hippocampus, thalamus, circle of Willis, and whole brain. Proton magnetic resonance spectroscopy provided information about relative metabolite concentrations in the cortex and hippocampus.
Arterial spin labelling found no differences in cerebral perfusion in the group comparison but revealed lateralisation in the thalamus of the control group and the sensorimotor cortex of the bulbectomized rats. Lower Cho/tCr and Cho/NAA levels were found in the right hippocampus in bulbectomized rats. The differences in lateralisation were shown in the hippocampus: mI/tCr in the control group, Cho/NAA, NAA/tCr, Tau/tCr in the model group, and in the cortex: NAA/tCr, mI/tCr in the control group.
Olfactory bulbectomy affects the neuronal and biochemical profile of the rat brain laterally and, as a model of depression, was validated by two nuclear magnetic resonance methods.
通过两种磁共振方法验证双侧嗅球切除术大鼠抑郁动物模型,间接检测大脑的代谢状态。此外,本研究还关注了大脑偏侧性的潜在差异。
动脉自旋标记法评估前额叶、感觉运动和梨状皮质、伏隔核、海马体、丘脑、大脑Willis 环和全脑的脑血流。质子磁共振波谱提供了皮质和海马体中相对代谢物浓度的信息。
动脉自旋标记法在组间比较中未发现脑灌注差异,但在对照组的丘脑和去嗅球大鼠的感觉运动皮质中发现了偏侧化。去嗅球大鼠右侧海马体中的 Cho/tCr 和 Cho/NAA 水平较低。偏侧化的差异在海马体中表现为 mI/tCr 在对照组,Cho/NAA、NAA/tCr、Tau/tCr 在模型组,在皮质中表现为 NAA/tCr、mI/tCr 在对照组。
嗅球切除术会影响大鼠大脑的神经和生化特征,并呈现偏侧化,作为抑郁模型,已通过两种磁共振方法得到验证。