{"title":"猫舌头突出和侧边运动的皮质控制。","authors":"Hisao Hiraba, Takako Sato, Satoshi Nishimura, Masaru Yamaoka, Hisako Ishiyama, Koichiro Ueda","doi":"10.3109/08990220.2013.771119","DOIUrl":null,"url":null,"abstract":"<p><p>Based on area P lesion experiments, we hypothesized that tongue protrusion adapted for licking might be regulated by the lateral wall of the presylvian sulcus (bilateral areas P) of the cerebral cortex (Hiraba H, Sato T, Nakakawa K, Ueda K. 2009. Cortical control of appropriate tongue protrusion during licking in cats--Increase in regional cerebral blood flow (rCBF) of the contralateral area P and in tongue protrusion after the unilateral area P lesion. Somatosens Mot Res 26:82-89). We propose that the right and left lingual muscles are dominated by the right and left hypoglossal nucleus, respectively, and that right and left pyramidal cells projecting to the right and left hypoglossal nucleus, respectively, exist in unilateral area P. These cells project via an inhibitory interneuron relay to the lateral branches toward the left or right pyramidal cells in contralateral area P. In this study, we aimed to demonstrate the existence of inhibitory interneurons using injections of a gamma-aminobutyric acid (GABA) agonist (muscimol), a GABA antagonist (bicuculline), and kainic acid into unilateral area P, followed by examination of tongue protrusion and lateral movements during trained licking and changes in regional cerebral blood flow (rCBF) values in the contralateral area P. We found disordered protrusion toward both sides and a marked decrease in rCBF values in the contralateral area P after bicuculline injection. We also found abnormal tongue protrusion toward the front and a marked increase in rCBF values after muscimol and kainic acid injections. These results suggest that cortical networks between the bilateral areas P are relayed by inhibitory interneurons.</p>","PeriodicalId":94211,"journal":{"name":"Somatosensory & motor research","volume":" ","pages":"96-108"},"PeriodicalIF":0.0000,"publicationDate":"2013-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.3109/08990220.2013.771119","citationCount":"1","resultStr":"{\"title\":\"Cortical control of tongue protrusion and lateral movements in the cat.\",\"authors\":\"Hisao Hiraba, Takako Sato, Satoshi Nishimura, Masaru Yamaoka, Hisako Ishiyama, Koichiro Ueda\",\"doi\":\"10.3109/08990220.2013.771119\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Based on area P lesion experiments, we hypothesized that tongue protrusion adapted for licking might be regulated by the lateral wall of the presylvian sulcus (bilateral areas P) of the cerebral cortex (Hiraba H, Sato T, Nakakawa K, Ueda K. 2009. Cortical control of appropriate tongue protrusion during licking in cats--Increase in regional cerebral blood flow (rCBF) of the contralateral area P and in tongue protrusion after the unilateral area P lesion. Somatosens Mot Res 26:82-89). We propose that the right and left lingual muscles are dominated by the right and left hypoglossal nucleus, respectively, and that right and left pyramidal cells projecting to the right and left hypoglossal nucleus, respectively, exist in unilateral area P. These cells project via an inhibitory interneuron relay to the lateral branches toward the left or right pyramidal cells in contralateral area P. In this study, we aimed to demonstrate the existence of inhibitory interneurons using injections of a gamma-aminobutyric acid (GABA) agonist (muscimol), a GABA antagonist (bicuculline), and kainic acid into unilateral area P, followed by examination of tongue protrusion and lateral movements during trained licking and changes in regional cerebral blood flow (rCBF) values in the contralateral area P. We found disordered protrusion toward both sides and a marked decrease in rCBF values in the contralateral area P after bicuculline injection. We also found abnormal tongue protrusion toward the front and a marked increase in rCBF values after muscimol and kainic acid injections. 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引用次数: 1
摘要
基于P区损伤实验,我们假设适应舔舐的舌突可能受大脑皮层前庭沟(双侧P区)侧壁的调节(Hiraba H, Sato T, Nakakawa K, Ueda K. 2009)。猫舔舐时适当的舌头突出的皮质控制——对侧P区区域脑血流量(rCBF)和单侧P区病变后舌头突出的增加。申命记26:82-89)。我们认为,左右舌肌分别由左右舌下核控制,单侧p区分别存在向左右舌下核投射的左右锥体细胞。这些细胞通过抑制性神经元间中继向对侧p区左右锥体细胞的侧支投射。我们的目的是通过在单侧P区注射γ -氨基丁酸(GABA)激动剂(muscimol)、GABA拮抗剂(bicuculline)和kainic酸来证明抑制性中间神经元的存在。然后检查训练舔舌时舌突和侧边运动,以及对侧P区区域脑血流(rCBF)值的变化。我们发现,注射双丘兰后,对侧P区区域脑血流(rCBF)值明显下降。我们还发现异常舌向前方突出,注射muscimol和kainic酸后rCBF值显着增加。这些结果表明双侧P区之间的皮质网络是由抑制性中间神经元传递的。
Cortical control of tongue protrusion and lateral movements in the cat.
Based on area P lesion experiments, we hypothesized that tongue protrusion adapted for licking might be regulated by the lateral wall of the presylvian sulcus (bilateral areas P) of the cerebral cortex (Hiraba H, Sato T, Nakakawa K, Ueda K. 2009. Cortical control of appropriate tongue protrusion during licking in cats--Increase in regional cerebral blood flow (rCBF) of the contralateral area P and in tongue protrusion after the unilateral area P lesion. Somatosens Mot Res 26:82-89). We propose that the right and left lingual muscles are dominated by the right and left hypoglossal nucleus, respectively, and that right and left pyramidal cells projecting to the right and left hypoglossal nucleus, respectively, exist in unilateral area P. These cells project via an inhibitory interneuron relay to the lateral branches toward the left or right pyramidal cells in contralateral area P. In this study, we aimed to demonstrate the existence of inhibitory interneurons using injections of a gamma-aminobutyric acid (GABA) agonist (muscimol), a GABA antagonist (bicuculline), and kainic acid into unilateral area P, followed by examination of tongue protrusion and lateral movements during trained licking and changes in regional cerebral blood flow (rCBF) values in the contralateral area P. We found disordered protrusion toward both sides and a marked decrease in rCBF values in the contralateral area P after bicuculline injection. We also found abnormal tongue protrusion toward the front and a marked increase in rCBF values after muscimol and kainic acid injections. These results suggest that cortical networks between the bilateral areas P are relayed by inhibitory interneurons.