이 연구는 수중 운동, 균형 훈련과 복합 운동이 파킨슨 유발 흰쥐 모델에 미치는 영향을 관찰하기 위해 수산화도파민(6-hydroxydopamine)을 흰쥐의 좌측 내측전뇌다발에 주사하여 파킨슨 모델을 제작하였다. 실험동물은 수중 운동을 적용한 실험군 I, 균형 훈련을 적용한 실험군 II, 복합 운동(수중 운동+균형 훈련)을 적용한 실험군 III, 수술 후 표준사육장에서 운동을 적용하지 않은 대조군으로 배치하였다. 수술 후 7일, 14일, 21일에 실험동
The objective of this study was to determine the effect of exercise on a hemiparkinsonian rat model. Nigrostriatal dopamine cell lesions were produced by injecting 6-hydroxydopamine at the left medial forebrain bundle of rats. In this study, the rats were divided into the following 4 groups: the control group without any exercise, experimental group I with aqua-exercise (Exp I), experimental group II with balance exercise (Exp II) and experimental group III with complex exercise (aqua-exercise+balance exercise; (Exp III)). Exercises were applied to all the experimental groups after the operation. In order to observe the dopaminergic cell loss, we assessed the level of tyrosine hydroxylase (TH) expression in the midbrain of rats, and performed the apomorphine-induced rotation test at postoperative days (PDs) 7, 14, and 21. Experimental groups had significantly higher TH-immunoreactivity and behavioral performance than the control group. However, there was no difference in TH-immunoreactivity and behavioral performance across the experimental groups. These results suggest that the application of aqua-exercise and balance exercise could suppress dopaminergic cell loss in the substantia nigra of rat brains and could increase behavioral recovery in hemiparkinsonian rats.