研究生: |
顧文欣 Ku, Wen-hsin |
---|---|
論文名稱: |
貓延腦吻端腹外側與疑核間神經徑路之電生理研究 Electrophysiological study of the neural projection from the rostral ventrolateral medulla to the nucleus ambiguus in cats |
指導教授: |
黃基礎
Hwang, Ji-Chuu |
學位類別: |
碩士 Master |
系所名稱: |
生命科學系 Department of Life Science |
論文出版年: | 2000 |
畢業學年度: | 88 |
語文別: | 中文 |
論文頁數: | 59 |
中文關鍵詞: | 延腦吻端腹外側 、疑核 、逆向傳導鑑定 、貓 、細胞外記錄 |
英文關鍵詞: | rostral ventrolateral medulla, nucleus ambiguus, antidromic identification, cats, extracellular recording |
論文種類: | 學術論文 |
相關次數: | 點閱:155 下載:1 |
分享至: |
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
本研究的目的是以逆向傳導鑑定(antidromic identification)來驗證延腦吻端腹外側(rostral ventrolateral medulla; rVLM)是否有神經纖維直接投射至疑核(nucleus ambiguus; NA)。以麻醉成貓為實驗材料,切斷兩側迷走神經,用肌肉麻痺劑麻痺後,以人工呼吸器維持其生命。在延腦吻端腹外側進行細胞外記錄(extracellular recording),當記錄到單一神經元神經訊號時,即在疑核給予電刺激,進行逆向傳導鑑定。
本研究記錄到的70個神經元中,49個是呼吸相關神經元,其中吸氣神經元(I)佔10%,呼氣神經元(E)佔27%,吸氣—呼氣神經元(IE)佔12%,呼氣—吸氣神經元(EI)佔12%,連續放電神經元(T)的比例最高,佔39%。在延腦吻端腹外側49個位置進行逆向傳導鑑定,有一個神經元可在疑核進行電刺激時激起逆向動作電位。其證據包括,以50 Hz電刺激能引發逆向動作電位,又能與正向動作電位相撞。有一個神經元在刺激後記錄到正向動作電位,另外還有15個記錄點能記錄到刺激後的誘發電位。此外,在對7個呼吸相關神經元進行提高呼氣末二氧化碳濃度的測試時,有6個有放電頻率增加的現象。
本研究結果顯示,貓延腦吻端腹外側可能有神經纖維投射至疑核,並藉此調控疑核中神經元的呼吸相關活動,進而影響自疑核起源的周邊神經呼吸活動。
The purpose of the present study was to examine the existence of the neural pathway projecting from the rostral ventrolateral medulla (rVLM) to the nucleus ambiguus (NA) by a technique of antidromic identification. Adult cats were anesthetized with pentobarbital sodium (30 mg/kg, i.p.). Bilateral vagotomy, paralyzation, and artificial ventilation were performed. Animals were maintained at normocapnia or hypercapnia in hyperoxia. Single unit activity in the rVLM was explored extracellularly. Electrical current (0.3 ms pulse duration, 1 Hz, and a variety of current intensity) was delivered to the NA once a single rVLM unit was verified by displaying the same amplitude and shape of the action potential on the oscilloscope. Of the 70 neurons examined, 49 neurons showed respiratory-related discharge pattern (10% inspiratory, 27% expiratory, 12% inspiratory-expiratory, 12% expiratory-inspiratory, and 39% tonic). Of the 49 recording sites tested, 1 unit could be activated antidromically by the delivery of current to the NA. This antidromic spike followed a 50 Hz repetition rate and could be collided with an orthodromic spike. Another unit could be activated orthodromically from the NA. In addition, there were evoked potentials in 15 recording sites. Moreover, 6 of the 7 respiratory-related neurons examined showed a tendency to increase their discharge rate in response to hypercapnia in hyperoxia.
The present results demonstrate that the neurons in the rVLM may send axonal projections to the NA. These neural pathways may modulate the respiratory-related neuron activities in the NA which, in turn, influence the respiratory-related activities of the peripheral nerves originating from the NA.
Andrezik, J. A., V. Chan-Palay, and S. L. Palay. The nucleus paragigantocellularis lateralis in the rat. Demonstration of afferents by the retrograde transport of horseradish peroxidase. Anat. Embryol. 161: 373-390, 1981.
Badoer, E. M., J. McKinley, B. J. Oldfield, and R. M. McAllen. Localization of barosensitive neurons in the caudal ventrolateral medulla which project to the rostral ventrolateral medulla. Brain Res. 657: 256-268, 1994.
Barillot, J. C., L. Grelot, S. Reddad, and A. L. Bianchi. Discharge pattern of laryngeal motoneurons in the cat: an intracellular study. Brain Res. 509(1): 99-106, 1990.
Bertrand, F., A. Hugelin, and J. F. Vubert. Quantitative study of anatomical distribution of respiration related neurons in the pons. Exp. Brain Res. 16: 383-389, 1973.
Bianchi, A. L., M. Denavit-Saubie, and J. Champagnat. Control of Breathing in mammals: neuronal circuitry, membrane properties, and neurotranzmitters. Physiol. Rev. 75(1): 1-45, 1995.
Bongianni, F., M. Lorda, G. A. Fontana, and T. Pantaleo. Reciprocal connections between rostrolateral medulla and inspiration-related medullary areas in the cat. Brain Res. 565: 171-174, 1991.
Bongianni, F., M. Lorda, G. A. Fontana, and T. Pantaleo. Excitatory and depressant respiratory responses to chemical stimulation of the rostral ventrolateral medulla in the cat. Acta. Physiol. Scand. 148: 315-325, 1993.
Budzinska, K., C. von Euler, F. F. Kao, T. Pantaleo, and Y. Yamamoto. Effects of graded focal cold block in rostral areas of the medulla. Acta Physiol. Scand. 124: 329-340, 1985.
Ciriello, J., and M. M. Caverson. Bidirection cardiovascular connections between ventrolateral medulla and nucleus of solitary tract. Brain Res. 367: 273-281, 1986.
Connelly, C. A., H. H. Ellenberger, and J. L. Feldman. Respiratory activity in retrotrapezoid nucleus in cat. Am. J. Physiol. 158: L33-L44, 1990.
Dampney, P. A. L. The subretrofacial nucleus: its pivotal role in cardiovascular regulation. NIPS 5: 63-67, 1990.
Delgado-Garcia, J. M., J. Lopez-Barneo, R. Serra, and S. Gonzalez-Baron. Electrophysiological and functional identification of different neuronal types within the nucleus ambiguus in the cat. Brain Res. 277: 231-240, 1983.
Duffin, J., K. Ezure, and J. Lipski. Breathing rhythm generation: fucus on the rostral ventrolateral medulla. NIPS 10: 133-140, 1995.
Feldman, J. L. Neurophysiology of breathing in mammals. In: Handbook of Physiology. The Nervous System. Intrinsic Regulatory System in the Brain. Washington, DC: Am. Physiol. Soc., 1986, sect. 1, vol.IV, chapt. 9, p. 463-524.
Gang, S., A. Mizuguchi, and M. Aoki. Axonal projections from the pontine pneumotaxic region to the nucleus raphe magnus in cats. Respir. Physiol. 85: 329-339, 1991.
Haselton, J. R., and P. G. Guyenet. Central respiratory modulation of medullary sympatho-excitatory neurons in rat. Am. J. Physiol. 256 (Regulatouy Integrative Comp. Physiol. 25): R739-R750, 1989.
Hilaire, G., and B. Duron. Maturation of the mammalian respiratory system. Physiol. Rev. 79: 325-360, 1999.
Hisa, Y., F. Sato, K. Fukui, Y. Ibata, and O. Mizuokoshi. Nucleus ambiguus motoneurons innervating the canine intrinsic laryngeal muscles by the fluorescent labeling technique. Exp. Neurol. 84(2): 441-449,1984.
Hwang, J. C., L. K. Su, C. T. Yen, and C. Y. Chai. Presence of neuronal cell bodies in the sympathetic pressor areas of dorsal and ventrolateral medulla inhibiting phrenic nerve discharge in cats. Clin. Auton. Res. 2:189-196, 1992.
Larnicol, N., F. Wallois, P. Berquin, F. Gros, and D. Rose. c-fos-like immunoreactivity in the cat’s neuraxis following moderate hypoxia or hypercapnia. J. Physiol. (Paris) 88(1): 81-8, 1994.
Li, L., Y. Zheng, and M. Xu. Patterns and distribution of the sponataneously discharges neurons in the nucleus paragigantocellularis lateralis of rats. Journal of West China University of Medical Sciences. 27(3): 249-53, 1996.
Lipski, J. Antidromic activiation of neuron as an analytic tool in the study of the central nervous system. J. Neurosci. Methods 4: 1-32, 1981.
Lobera, B., R. Pasaro, S. Gonzalez-Baron, and J. M. Delgado-Garcia. A morphological study of ambiguous nucleus motoneurons innervating the laryngeal muscles of the rat and cat. Neurosci. Lett. 23: 125-130, 1981.
Loewy, A. D., and H. Burton. Nuclei of the solitary tract: efferent projections to the lower brain stem and spinal cord of the cat. J. Comp. Neurol. 181: 421-449, 1978.
Mcallen, R. M. Location of neurons with cardiovascular and respiratory functions at the ventral surface of the cat’s medulla. Neurosci 18: 43-49, 1986.
Millhorn, D. E., P. Guyenet, and J.P. Kiley. Neurobiology of brain stem cardiopulmonary control mechanisms. J.Appl. Physiol. 69: 1916-1920, 1990.
Nattie, E. E., and A. H. Li. Fluorescence location of RVLM kainate microinjections that alter the control of breathing. J. Appl. Physiol. 68(3): 1157-66, 1990.
Nattie, E. E., A. H. Li, and W. M. St. John. Lesions in retrotrapezoid nucleus decrease ventilatory output in anesthetized or decerebrate cats. J. Appl. Physiol. 71(4): 1364-1375, 1991.
Nattie, E. E., M. L. Fung, A. Li, and W. M. St. John. Responses of respiratory modulated and tonic units in the retrotrapezoid nucleus to CO2. Respir. Physiol. 94(1): 35-50, 1993.
Nattie, E. E., and A. Li. Retrotrapezoid nucleus lesions decrease phrenic activety and CO2 sensitivity in rats. Respir. Physiol. 97(1): 63-77, 1994.
Okubo, J., S. Kitamura, K. Ogata, and A. Sakai. Localization of rabbit laryngeal motoneurons in the nucleus ambiguus. Exp. Neurol. 96(3): 528-539,1987.
Pasaro, R., B. Lobera, S. Gonzalez-Baron, and J. M. Delgado-Garcia. Cytoarchitectonic organization of laryngeal motoneurons within the nucleus ambiguus of the cat. Exp. Neurol. 82(3): 623-634,1983.
Pearce, R. A., R. L. Stornetta, and P. G. Guyenet. Retrotrapezoid nucleus in the rat. Neurosci. Lett. 101: 138-142, 1989.
Richter, D. W., K. Ballanyi, and S. W. Schwarzacher. Mechanisms of respiratory rhythm generation. Curr.Opin. Neurobiol. 281: 788-793, 1992.
Smith, J. C., D. E. Morrison, H. H. Ellenberger, M. R. Otto, and J. L. Feldman. Brainstem projections to the major respiratory neuron populations in the medulla of the cat. J. Comp. Neurol. 281(1): 69-96,1989
Taber, E. The cutourchitecture of the brain stem of the cat. 1. Brain stem nuclei of the cat. J. Comp. Neurol. 116: 27-69, 1961.
Takeshi, O., and M. Miura. Projections of supraspinal structures to the phrenic motor nucleus in cats studied by a horseradish peroxidase microinjection method. J. Auto. Nervous Sys. 16: 61-77, 1986.
Teppema, L. J., A. Berkenbosch, J. G. Veening, and C. N. Olievier. Hypercapnia induces c-fos expression in neurons of retrotrapezoid nucleus in cats. Brain Res. 635(1-2): 353-6, 1994.
Tian, G. F., Z. W. Qian, Q. F. Su, and J. R. Zhang. Neural structural relations between the chemosensitive areas of the ventrolateral medullary surface and the medullary nuclei in rats. Sheng Li Hsueh Pao-Acta Physiologica Sinica. 47(5): 491-7, 1995.
Tian, G. F., J. H. Peever, and J. Duffin. Botzinger-complex, bulbospinal expiratory neurons monosynaptically inhibit ventral-group respiratory neurons in the decerebrate rat. Exp. Brain Res. 124: 173-180, 1999.
Wang, W., Y. Zheng, and M. Xu. Effect of microinjection of lidocaine and L-glutamate into the nucleus paragigantocellularis lateralis on the respiration and arterial blood pressure in the rat. Journal of West China University of Medical Sciences. 25(3): 266-70, 1994.
Wu, J-S, and J-C Hwang. Respiratory- related facial nerve activity in response to activation of the rostral ventrolateral medulla in the cat. Chinese. J. Physiol. 40(2): 97-105,1997.
Yajima, Y., and Y. Hayashi. Identification of motoneurons in the nucleus ambiguous by antidromic stimulation of the superior and recurrent laryngeal nerves in rats. Brain Res. 288: 302-306, 1983.
古立其 貓延腦吻端背側區呼吸相關神經元特性之研究 國立臺灣師範大學生物學系碩士論文 1999。
吳忠信 貓延腦吻端腹外側對舌下神經呼吸活動的影響 國立臺灣師範大學生物學研究所碩士論文 1995。
郭昶志 貓延腦吻端腹外側對喉返神經呼吸活動的影響 國立臺灣師範大學生物學系碩士論文 1996。
陳玉玲 大鼠延腦吻端腹外側與呼吸循環相關核區之神經徑路研究 國立臺灣師範大學生物學研究所碩士論文 2000。
黃基礎 逆向傳導鑑定法 神經科學技術研習會手冊 1989。
張建鴻 大鼠延腦吻端腹外側對顏面神經呼吸活動的影響 國立臺灣師範大學生物學研究所碩士論文 1995。
簡佩玉 貓延腦吻端縫合核有關呼吸方面單一神經細胞的探討 國立臺灣大學動物學研究所碩士論文 1991。