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Fmr1 KO2 小鼠在诱发反应电位中听觉和视觉感觉处理表型基本未受影响。

Largely unaffected auditory and visual sensory processing phenotypes in the evoked potentials of Fmr1 KO2 mice.

机构信息

Groningen Institute for Evolutionary Life Sciences (GELIFES), University of Groningen, Groningen, The Netherlands.

出版信息

Eur J Neurosci. 2022 Oct;56(8):5260-5273. doi: 10.1111/ejn.15808. Epub 2022 Sep 1.

Abstract

Sensory sensitivity symptoms are common in autism spectrum disorders and fragile X syndrome. Mainly in the auditory modality, disturbed processing has been found in both fragile X patients and the corresponding genetic mouse model, the Fmr1 knockout mouse. Here, we tried to replicate the auditory deficits and assess whether also visual processing is affected, using electroencephalography readouts under freely behaving conditions in the second-generation Fmr1 knockout mice. No differences between wild-type and knockout animals were found in single auditory and visual evoked potentials in response to pure sine tones and full-field light flashes. Visual sensory gating was enhanced in the early but not the late components of the evoked potentials, but no changes were found in auditory sensory gating. The higher harmonics of the synchronisation response to flickering visual stimuli seemed to be reduced with 10, but not 20 or 40 Hz, stimulation. However, this effect was not reproduced in an independent second cohort of animals. No synchronisation differences were found in response to a chirp stimulus, of which the frequency steadily increased. Taken together, this study could not reproduce earlier reported increased amplitudes in auditory responses, nor could it convincingly show that synchronisation deficits found to be present in the auditory modality also existed in the visual modality. The discrepancies within this study as well as between various studies assessing sensory processing in the Fmr1 KO raise questions about the external validity of these phenotypes and warrant careful interpretation of these phenotypes.

摘要

感觉敏感性症状在自闭症谱系障碍和脆性 X 综合征中很常见。主要在听觉模式下,脆性 X 患者和相应的基因敲除小鼠模型(Fmr1 敲除小鼠)中发现了干扰的处理。在这里,我们试图复制听觉缺陷,并评估视觉处理是否也受到影响,使用第二代 Fmr1 敲除小鼠在自由行为条件下的脑电图读数。在对纯正弦音和全视野光闪光的反应中,野生型和敲除动物的单听和视觉诱发电位没有差异。视觉感觉门控在早期增强,但在后期成分中没有变化,但听觉感觉门控没有变化。对闪烁视觉刺激的同步反应的更高谐波似乎随着 10Hz 而减少,但不是 20 或 40Hz 刺激。然而,这种效果在第二个独立动物队列中没有重现。在对啁啾刺激的反应中没有发现同步差异,其频率稳定增加。总的来说,这项研究无法重现以前报道的听觉反应中振幅增加,也无法令人信服地表明在听觉模式中发现的同步缺陷也存在于视觉模式中。本研究中的差异以及评估 Fmr1 KO 中感觉处理的各种研究之间的差异,引发了对这些表型的外部有效性的质疑,并需要对这些表型进行仔细解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/437f/9826194/1d4f65565829/EJN-56-5260-g005.jpg

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