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首页> 外文期刊>Journal of Neuroscience Methods >A technique for long-term implantation of a microcatheter into the third ventricle of post-pubertal Chinese Meishan pigs based on ventriculography.
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A technique for long-term implantation of a microcatheter into the third ventricle of post-pubertal Chinese Meishan pigs based on ventriculography.

机译:基于心室描记法将微导管长期植入青春期后的中国眉山猪第三脑室的技术。

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The objectives of this study were to implant a microcatheter into the third ventricle of post-pubertal Chinese Meishan pigs, and to maintain the microcatheter for a long time without causing stress. Fourteen pigs (45-60kg BW) were used. Each pig was anesthetized and the head was orientated on the stereotaxic apparatus. A radiopaque dye was placed into the ventricle via a guide cannula inserted 3.5mm forward of the bregma. A microcatheter was inserted into the third ventricle using ventriculography, and fixed with dental cement to a metal-mesh protector and screw anchors embedded into the skull. The opposite end of the microcatheter was externalized from the dorsal neck so that corticotropin-releasing hormone (CRH) could be injected easily. Simultaneously, a catheter was fitted in the jugular vein, and the free end of the catheter was externalized from the dorsal neck. Microcatheter-implanted pigs showed a normal progesterone concentration profile, and a constant cortisol level during at least two estrous cycles. Furthermore, intracerebroventricular injections of CRH (25microg/500microl) resulted in an increased plasma cortisol concentration ( [Formula: see text] ). Thus, the technique developed in this study enables us to approach the third ventricle in post-pubertal freely-moving pigs effectively over a long time, without causing stress.
机译:这项研究的目的是将微导管植入青春期后的中国眉山猪的第三脑室,并在不引起压力的情况下长时间保持微导管。使用了14头猪(45-60kg体重)。麻醉每只猪,并将头对准立体定位仪。将不透射线的染料通过在前reg前方3.5mm处插入的引导套管放入心室。使用心室描记术将微导管插入第三脑室,并用牙骨水泥将其固定在金属网保护器上,并将锚钉锚固在颅骨中。微导管的另一端从背颈外在,因此可以轻松注射促肾上腺皮质激素释放激素(CRH)。同时,在颈静脉中安装导管,并将导管的自由端从背颈外露。植入微导管的猪在至少两个发情周期内表现出正常的孕酮浓度曲线和恒定的皮质醇水平。此外,脑室内注射CRH(25microg / 500microl)导致血浆皮质醇浓度升高([公式:参见正文])。因此,这项研究中开发的技术使我们能够长时间有效地接近青春期后自由活动的猪的第三脑室,而不会引起压力。

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