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成年大鼠中对喘息表达至关重要的延髓位点。

Medullary loci critical for expression of gasping in adult rats.

作者信息

Fung M L, Wang W, St John W M

机构信息

Department of Physiology, Dartmouth Medical School, Dartmouth-Hitchcock Medical Center, Lebanon, NH 03755.

出版信息

J Physiol. 1994 Nov 1;480 ( Pt 3)(Pt 3):597-611. doi: 10.1113/jphysiol.1994.sp020387.

Abstract
  1. Our purpose was to define whether a region of medulla could be identified that is critical for the expression of gasping. 2. Decerebrate, vagotomized, paralysed and ventilated adult rats were used. The pattern of phrenic activity was reversibly altered from eupnoea to gasping by exposure to hypoxia or anoxia. 3. Gasping was irreversibly eliminated following unilateral electrolytic lesions of the lateral tegmental field of the medulla. The eupnoeic rhythm continued after these lesions. 4. Injections of kainic acid into the lateral tegmental field also eliminated gasping. Phrenic activity in eupnoea was not altered. 5. Lesions outside the lateral tegmental field caused marked changes in the eupnoeic rhythm, including expiratory apnoea. Upon exposure to hypoxia or anoxia, gasping was still induced. 6. This region for the neurogenesis of gasping in rats is identical to the region that serves a comparable function in cats. Moreover, it overlaps with the 'pre-Bötzinger' complex which has been described for the in vitro brainstem preparation of the neonatal rat. Our results raise doubts that this complex plays a role in the neurogenesis of eupnoea.
摘要
  1. 我们的目的是确定延髓中是否存在一个对喘息表达至关重要的区域。2. 使用成年去大脑、切断迷走神经、麻痹并通气的大鼠。通过暴露于低氧或缺氧环境,膈神经活动模式从正常呼吸可逆地转变为喘息。3. 延髓外侧被盖区单侧电解损伤后,喘息被不可逆地消除。这些损伤后,正常呼吸节律仍持续存在。4. 向外侧被盖区注射 kainic 酸也消除了喘息。正常呼吸时的膈神经活动未改变。5. 外侧被盖区以外的损伤导致正常呼吸节律发生显著变化,包括呼气性呼吸暂停。暴露于低氧或缺氧环境时,仍可诱发喘息。6. 大鼠喘息神经发生的这个区域与猫中具有类似功能的区域相同。此外,它与新生大鼠体外脑干制备中描述的“前包钦格复合体”重叠。我们的结果对该复合体在正常呼吸神经发生中发挥作用提出了质疑。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c117/1155832/86137a9c2108/jphysiol00339-0196-a.jpg

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