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传导性听力损失不影响中年豚鼠的空间学习和记忆。

Conductive hearing loss does not affect spatial learning and memory in middle-aged guinea pigs.

作者信息

Barry K M, Jimena J C J, Tarawneh H Y, Johnsen W, Osmanbasic A, Rodger J, Mulders W H A M

机构信息

School of Human Sciences, University of Western Australia, Crawley, WA, 6009, Australia.

Ear Science Institute Australia, Subiaco, WA, Australia.

出版信息

Sci Rep. 2024 Dec 28;14(1):31103. doi: 10.1038/s41598-024-82408-5.

Abstract

Hearing loss (HL) in mid-life has been suggested as a risk factor for cognitive decline. It is unclear whether this relationship is due to deprivation of auditory input alone, degenerative processes, or a combination. Animal models are useful to investigate underlying neural mechanisms as human studies can be confounded by various factors. However, most animal studies use young animals and often exclude females. We used middle-aged guinea pigs of both sexes to investigate whether 8 weeks of auditory deprivation due to conductive HL caused spatial learning and memory impairments. Forty guinea pigs (20 M, 20 F, ~ 12 months) were tested in the Morris Water Maze (MWM) to assess baseline spatial learning and memory. In 20 of these animals (10 M, 10 F) the ear canal was plugged and 8 weeks later, animals were again assessed in MWM. No deficits in spatial learning or memory were observed in either sex. HL caused a small decline in body weight suggesting some stress associated with conductive HL, although adrenal weight, corrected for body weight, did not change. Our data suggest that auditory input deprivation alone does not affect spatial cognition in middle-age, in line with recent human data suggesting that additional risk factors need to be present.

摘要

中年听力损失(HL)被认为是认知能力下降的一个风险因素。目前尚不清楚这种关系是否仅归因于听觉输入的剥夺、退行性过程或两者的结合。由于人类研究可能会受到各种因素的干扰,动物模型对于研究潜在的神经机制很有用。然而,大多数动物研究使用的是幼龄动物,并且常常排除雌性动物。我们使用了中年雌雄豚鼠来研究由于传导性HL导致的8周听觉剥夺是否会引起空间学习和记忆障碍。40只豚鼠(20只雄性,20只雌性,约12个月大)在莫里斯水迷宫(MWM)中进行测试,以评估基线空间学习和记忆能力。在这些动物中的20只(10只雄性,10只雌性)中,耳道被堵塞,8周后,再次在MWM中对动物进行评估。在任何一个性别中均未观察到空间学习或记忆方面的缺陷。HL导致体重略有下降,这表明与传导性HL相关存在一些应激,尽管校正体重后的肾上腺重量没有变化。我们的数据表明,仅听觉输入剥夺不会影响中年人的空间认知,这与最近的人类数据一致,即还需要存在其他风险因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e60a/11680780/8200740a52d1/41598_2024_82408_Fig1_HTML.jpg

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