“虽然来自WBV的生化和生理学改善作为一项模拟锻炼是不容置疑的,但WBV如何达到这样的效果很可能有多方面原因,在很大程度上是未知的。”来自奥古斯塔大学的儿科整形外科医师余杰克在一篇新论文中解释说。
To investigate WBV's effects on metabolism, Yu and his team studied a mouse model of type 2 diabetes: mice engineered with a leptin deficiency mutation, lacking a protein that protects against obesity, insulin resistance, and type 2 diabetes.
为了研究WBV对新陈代谢的作用,余医师和他的团队研究了患2型糖尿病的老鼠模型:转基因消瘦素缺陷变异老鼠缺少防止肥胖、胰岛素抵抗和2型糖尿病的蛋白质。
These animals – along with healthy controls – were subjected to WBV for 20 minutes a day for a period of four weeks. After the experiments, researchers analysed samples of the mice's abdominal adipose tissues, and also stool samples.
这些动物以及健康对照组每天进行20分钟的全身振动,持续4周。实验后,研究人员分析老鼠腹部脂肪组织以及粪便样本。
What they found was that WBV appeared to alter the distribution and makeup of macrophage immune cells in the mice.
他们发现全身振动似乎能改变老鼠体内的巨噬免疫细胞的分布和组成。
The results might offer a promising new lead into research looking at fighting inflammation in human patients with type 2 diabetes, although the researchers emphasise there's still a lot we don't know about the mechanisms involved here.
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