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一只行为正常的创伤性脑损伤Wistar大鼠出现睡眠障碍和严重脑积水

Sleep Disturbance and Severe Hydrocephalus in a Normally Behaving Wistar Rat With Traumatic Brain Injury.

作者信息

Kyyriäinen Jenni, Andrade Pedro, Hämäläinen Elina, Pitkänen Asla

机构信息

A.I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, Kuopio, Finland.

出版信息

Neurotrauma Rep. 2023 Jun 19;4(1):384-395. doi: 10.1089/neur.2022.0090. eCollection 2023.

Abstract

We report on a case study of a Wistar rat that was investigated in detail because it exhibited no N3 sleep in electroencephalography (EEG) after lateral fluid-percussion injury (FPI)-induced traumatic brain injury (TBI). The rat (#112) belonged to a cohort of 28 adult Wistar rats exposed to lateral FPI. Rats were monitored by continuous video EEG for 30 days to follow-up on the evolution of sleep disturbances. The beam walking test was used to measure post-TBI functional recovery. Severity of the cortical lesion area, total brain volume, and cortical volume were measured from histological brain sections. Rat #112 had a normal body and skull appearance. Its baseline body weight did not differ from that of the rest of the cohort. At baseline, rat #112 crossed the beam in 6.3 sec (score range for the rest of the cohort, 4.7-44.3) and showed no evident slipping of the paws, scoring a 5.3 (score range for the rest of cohort, 4.3-6.0). On day 30 post-TBI, however, rat #112 was the only rat with a score of 0 on the beam. Histological analysis at 30 days post-TBI revealed a small 0.6-mm post-TBI lesion in the somatosensory cortex (lesion size range for the rest of the cohort, 1.2-10.9). The brain volume of rat #112 was 2-fold larger than the mean volume of the rest of the cohort (1592 vs. 758 mm), the ventricles were remarkably enlarged, and the layered cerebral cortex was very thin. Analysis of the sleep EEG revealed that rat #112 had rapid eye movement sleep and wakefulness, but no N3 sleep, during the 72-h EEG epoch analyzed. This case report demonstrates that brain abnormalities presumably unrelated to the impact-induced cortical lesion, such as presumed pre-existing hydrocephalus, may worsen TBI-induced behavioral and electrographical outcome measures and complicate the assessment of the cause of the abnormalities.

摘要

我们报告了一例Wistar大鼠的案例研究,该大鼠因在侧方流体冲击伤(FPI)诱导的创伤性脑损伤(TBI)后脑电图(EEG)中未出现N3睡眠而受到详细研究。这只大鼠(#112)属于一组28只接受侧方FPI的成年Wistar大鼠。通过连续视频EEG对大鼠进行30天监测,以跟踪睡眠障碍的演变。采用光束行走试验来测量TBI后的功能恢复情况。从组织学脑切片测量皮质病变区域的严重程度、全脑体积和皮质体积。大鼠#112的身体和颅骨外观正常。其基线体重与该组其他大鼠无差异。在基线时,大鼠#112在6.3秒内穿过光束(该组其他大鼠的得分范围为4.7 - 44.3),且爪子无明显打滑,得分为5.3(该组其他大鼠的得分范围为4.3 - 6.0)。然而,在TBI后第30天,大鼠#112是该组中唯一在光束试验中得分为0的大鼠。TBI后30天的组织学分析显示,体感皮质有一个0.6毫米的小TBI后病变(该组其他大鼠的病变大小范围为1.2 - 10.9)。大鼠#112的脑体积比该组其他大鼠的平均体积大2倍(1592对758立方毫米),脑室明显扩大,分层的大脑皮质非常薄。睡眠EEG分析显示,在分析的72小时EEG时段内,大鼠#112有快速眼动睡眠和觉醒,但没有N3睡眠。本病例报告表明,可能与撞击引起的皮质病变无关的脑部异常,如推测预先存在的脑积水,可能会使TBI诱导的行为和电生理结果指标恶化,并使异常原因的评估复杂化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a72d/10282974/0ab15db319ad/neur.2022.0090_figure1.jpg

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