首页> 外文期刊>Acta Neurochirurgica >Changes in number of water-filled vesicles of choroid plexus in early and late phase of experimental rabbit subarachnoid hemorrhage model; The role of petrous ganglion of glossopharyngeal nerve
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Changes in number of water-filled vesicles of choroid plexus in early and late phase of experimental rabbit subarachnoid hemorrhage model; The role of petrous ganglion of glossopharyngeal nerve

机译:实验性兔蛛网膜下腔出血模型早期和晚期脉络丛充水囊泡数量的变化;舌咽神经小神经节的作用

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Background: Cerebrospinal fluid (CSF) secretion may be increased in the early phases of subarachnoid hemorrhage (SAH), possibly via ischemic glossopharyngeal nerve discharges, and decreased due to glossopharyngeal nerve degeneration in the late phase of SAH; but this reflex pathway has not been definitively investigated. We studied the relationship between petrous ganglion of the glossopharyngeal nerve (GPN) and water vesicles of the choroid plexus (CP) in the early and late phases of SAH. Methods: This study was conducted on 30 rabbits, divided into four groups, with five rabbits in the control group (group I), five rabbits in the sham group (Group II), and 20 rabbits in the SAH group. In the SAH group, five of the animals were decapitated after 4 days of cisternal blood injections (Group III), and the other 15 animals were decapitated after 20 days of injections (Group IV). The Petrous Ganglia and CPs of lateral ventricles were removed and stained for stereological analysis. Results: The mean number of follicles per cubic millimeter was 5.3±1.2 the in control group (Group I), 4.5±0.9 in the sham group (Group II), 16.60±3.77 the in early decapitated group (Group III), and 4.30±0.84 in the late decapitated group (Group IV). The mean number of degenerated neuron density of petrous ganglions was 6±2, 50±6, 742±96, and 2.420±350 in the control (Group I), sham (Group II), early decapitated (Group III), and late decapitated group (Group IV), respectively. The mean number of water vesicles was statistically different after SAH between the early decapitated group (group III) and the late decapitated group (group IV) (P<0.05). Conclusions: We studied the relationship between petrous ganglion cells of the GPN and water vesicles of CP in the early and late phases of SAH, and found that CP vesicles are increased in the early phase of SAH due to irritation of GPN, and decreased in the late phase due to ischemic insult of the petrous ganglion and parasympathetic innervation of the CP.
机译:背景:蛛网膜下腔出血(SAH)早期,可能通过缺血性舌咽神经放电引起脑脊液(CSF)分泌增加,而由于SAH晚期舌咽神经变性导致脑脊液分泌减少。但是该反射途径尚未得到明确研究。我们研究了SAH早期和晚期舌咽神经小神经节(GPN)与脉络神经丛(CP)的水囊之间的关系。方法:本研究对30只家兔进行了研究,分为四组,对照组(第一组)为五只兔子,假手术组(第二组)为五只兔子,而SAH组为二十只。在SAH组中,有5只动物在进行了4天的胸骨血注入后被断头(第III组),其他15只动物在经过了20天的注入后被断头(IV组)。去除侧脑室的Petrous Ganglia和CP,并进行染色以进行立体分析。结果:对照组(I组)的平均卵泡数为5.3±1.2,假手术组(II组)的平均卵泡数为4.5±0.9,早期断头组(III组)的平均卵泡数为16.60±3.77,以及4.30晚期断头组(IV组)为±0.84。对照组(I组),假(II组),早期断头(III组)和晚期的神经节的退化神经元密度的平均数分别为6±2、50±6、742±96和2.420±350。斩首组(IV组)。 SAH后早期断头组(III组)和晚期断头组(IV组)的水囊平均数量有统计学差异(P <0.05)。结论:我们研究了SAH早期和晚期GPN的小神经节细胞与CP的水囊的关系,发现SAH早期CP囊泡由于GPN的刺激而增加,而在GSH刺激时则减少。晚期是由于神经节的缺血性损伤和CP的副交感神经支配。

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