Am J Vet Res. 2021 Mar;82(3):230-236. doi: 10.2460/ajvr.82.3.230.
To examine whether glucocorticoid (GC) administration alters hippocampal cerebral blood flow (CBF) or volume in dogs.
6 clinically normal adult Beagles.
Each dog underwent CT and MRI to measure the CBF in the hippocampus, basal ganglia, thalamus, and cerebral cortex and the volume of the hippocampus in each hemisphere of the brain before (day 0) and during (days 7 and 21) a 21-day treatment with prednisolone (1.0 mg/kg, PO, q 24 h) and famotidine (0.5 mg/kg, PO, q 12 h). Results for hippocampal volume, anesthesia-related variables, and semiquantitative measurements of CBF (hemisphere-specific ratios of the CBF in the hippocampus, basal ganglia, and thalamus relative to the CBF in the ipsilateral cerebral cortex and the left cerebral cortex CBF-to-right cerebral cortex CBF ratio) were compared across assessment time points (days 0, 7, and 21).
The ratios of CBF in the right hippocampus and right thalamus to that in the right cerebral cortex on day 21 were significantly lower than those on day 0. No meaningful differences were detected in results for the hippocampal volume in either hemisphere or for the anesthesia-related variables across the 3 time points.
Results indicated that GC administration reduced CBF in the hippocampus and thalamus in dogs of the present study, similar to that which occurs in humans. Research on GC-related brain alteration in dogs could potentially contribute to advancements in understanding Alzheimer disease in humans and neurodegenerative conditions in dogs.
研究糖皮质激素(GC)给药是否会改变犬的海马脑血流(CBF)或体积。
6 只临床正常的成年比格犬。
每只狗都接受 CT 和 MRI 检查,以测量海马体、基底节、丘脑和大脑皮质的 CBF,以及大脑每侧半球海马体的体积,在接受 21 天泼尼松龙(1.0mg/kg,PO,q24h)和法莫替丁(0.5mg/kg,PO,q12h)治疗前(第 0 天)和治疗期间(第 7 天和第 21 天)。比较了海马体体积、与麻醉相关的变量以及 CBF 的半定量测量结果(海马体、基底节和丘脑的 CBF 与同侧大脑皮质的 CBF 比值以及左大脑皮质 CBF 与右大脑皮质 CBF 比值)在各个评估时间点(第 0、7 和 21 天)之间的差异。
第 21 天右侧海马体和右侧丘脑的 CBF 与右侧大脑皮质的 CBF 比值明显低于第 0 天。在左右侧海马体体积或与麻醉相关的变量方面,在 3 个时间点之间未检测到有意义的差异。
结果表明,GC 给药降低了本研究中犬的海马体和丘脑的 CBF,与人类的情况相似。对犬类 GC 相关的脑改变的研究可能有助于深入了解人类的阿尔茨海默病和犬类的神经退行性疾病。