「内側視索前野」の版間の差分

編集の要約なし
編集の要約なし
編集の要約なし
25行目: 25行目:


 MPOAには複数の細胞集積が認められるが、視床下部の「核」と異なり、必ずしも境界は鮮明ではない。中央部に位置する性的二型核(sexually dimorphic nucleus of the preoptic area, SDN-POA, (Gorski et al., 1978))はニッスル染色で比較的鮮明に描出され、ラット雄が雌より多数のニューロンを擁する (Orikasa et al., 2002)。この核はハムスター、フェレット、テンジクネズミ、ヒツジ、サル、ヒトで認められ(文献はOrikasa & Sakuma, 2010)、長年にわたりマウスではこの核が存在しないとする主張(Young, 1982など)は、calbindin 28k を標識タンパクとして用いて2010年に複数の系統で反駁・立証された(Orikasa & Sakuma, 2010)。<BR>
 MPOAには複数の細胞集積が認められるが、視床下部の「核」と異なり、必ずしも境界は鮮明ではない。中央部に位置する性的二型核(sexually dimorphic nucleus of the preoptic area, SDN-POA, (Gorski et al., 1978))はニッスル染色で比較的鮮明に描出され、ラット雄が雌より多数のニューロンを擁する (Orikasa et al., 2002)。この核はハムスター、フェレット、テンジクネズミ、ヒツジ、サル、ヒトで認められ(文献はOrikasa & Sakuma, 2010)、長年にわたりマウスではこの核が存在しないとする主張(Young, 1982など)は、calbindin 28k を標識タンパクとして用いて2010年に複数の系統で反駁・立証された(Orikasa & Sakuma, 2010)。<BR>
その他の細胞集積には、第3脳室に接する傍室部で吻側から終板器官、前腹側傍室核、腹内側視索前野核、正中視索前核(以下MnPO)、傍室視索前核などが同定されている。内側部では内側視索前核が中心部に大きな体積を占め、そのほかに傍分界条核、後背側視索前核、腹外側視索前核、中隔視床下部核といった細胞集積がある。マウスMPOA前額断の概要は<a href="http://connectivity.brain-map.org/static/referencedata" target="blank">Allen Brain Atlas</a> (2004)に見ることができる。<BR>
その他の細胞集積には、第3脳室に接する傍室部で吻側から終板器官、前腹側傍室核、腹内側視索前野核、正中視索前核(以下MnPO)、傍室視索前核などが同定されている。内側部では内側視索前核が中心部に大きな体積を占め、そのほかに傍分界条核、後背側視索前核、腹外側視索前核、中隔視床下部核といった細胞集積がある。マウスMPOA前額断の概要は[http://connectivity.brain-map.org/static/referencedata" Allen Brain Atlas (2004)]に見ることができる。<BR>


<BR>==機能 ==
<BR>==機能 ==
70行目: 70行目:
AGMO, A. 1997. Male rat sexual behavior. Brain Res Brain Res Protoc, 1, 203-9.<BR>
AGMO, A. 1997. Male rat sexual behavior. Brain Res Brain Res Protoc, 1, 203-9.<BR>
BLACKSHAW, S., SCHOLPP, S., PLACZEK, M., INGRAHAM, H., SIMERLY, R. & SHIMOGORI, T. 2010. Molecular pathways controlling development of thalamus and hypothalamus: from neural specification to circuit formation. J Neurosci, 30, 14925-30.<BR>
BLACKSHAW, S., SCHOLPP, S., PLACZEK, M., INGRAHAM, H., SIMERLY, R. & SHIMOGORI, T. 2010. Molecular pathways controlling development of thalamus and hypothalamus: from neural specification to circuit formation. J Neurosci, 30, 14925-30.<BR>
BRUCH, H. 1939. The Fröhlich syndrome: Report of the original case. Am J Dis Child,1939; 58(6):128, 58, 1282-1289<BR>
BRUCH, H. 1939. The Fröhlich syndrome: Report of the original case. Am J Dis Child, 1939; 58(6):128, 58, 1282-1289<BR>
BRUDZYNSKI, S. M. & MOGENSON, G. J. 1986. Decrease of locomotor activity by injections of carbachol into the anterior hypothalamic/preoptic area of the rat. Brain Res, 376, 38-46.<BR>
BRUDZYNSKI, S. M. & MOGENSON, G. J. 1986. Decrease of locomotor activity by injections of carbachol into the anterior hypothalamic/preoptic area of the rat. Brain Res, 376, 38-46.<BR>
CHUNG, S., WEBER, F., ZHONG, P., TAN, C. L., NGUYEN, T. N., BEIER, K. T., HORMANN, N., CHANG, W. C., ZHANG, Z., DO, J. P., YAO, S., KRASHES, M. J., TASIC, B., CETIN, A., ZENG, H., KNIGHT, Z. A., LUO, L. & DAN, Y. 2017. Identification of preoptic sleep neurons using retrograde labelling and gene profiling. Nature, 545, 477-481.<BR>
CHUNG, S., WEBER, F., ZHONG, P., TAN, C. L., NGUYEN, T. N., BEIER, K. T., HORMANN, N., CHANG, W. C., ZHANG, Z., DO, J. P., YAO, S., KRASHES, M. J., TASIC, B., CETIN, A., ZENG, H., KNIGHT, Z. A., LUO, L. & DAN, Y. 2017. Identification of preoptic sleep neurons using retrograde labelling and gene profiling. Nature, 545, 477-481.<BR>
84行目: 84行目:
HASEGAWA, T., TAKEO, T., AKITSU, H., HOSHINA, Y. & SAKUMA, Y. 1991. Interruption of the lordosis reflex of female rats by ventral midbrain stimulation. Physiol Behav, 50, 1033-8.<BR>
HASEGAWA, T., TAKEO, T., AKITSU, H., HOSHINA, Y. & SAKUMA, Y. 1991. Interruption of the lordosis reflex of female rats by ventral midbrain stimulation. Physiol Behav, 50, 1033-8.<BR>
HERBISON, A. E. 1997. ESTROGEN REGULATION OF GABA TRANSMISSION IN RAT PREOPTIC AREA. Brain Res Bull, 44, 321-326.<BR>
HERBISON, A. E. 1997. ESTROGEN REGULATION OF GABA TRANSMISSION IN RAT PREOPTIC AREA. Brain Res Bull, 44, 321-326.<BR>
HERBISON, A. E., HEAVENS, R. P., DYE, S. & DYER, R. G. 1991. Acute Action of Oestrogen on Medial Preoptic Gamma- Aminobutyric Acid Neurons - Correlation with Oestrogen Negative Feedback on Luteinizing Hormone Secretion. J Neuroendocrinol, 3, 101-106.<BR>
HERBISON, A. E., HEAVENS, R. P., DYE, S. & DYER, R. G. 1991. Acute action of oestrogen on medial preoptic gamma-aminobutyric acid neurons: correlation with oestrogen negative feedback on luteinizing hormone secretion. J Neuroendocrinol, 3, 101-106.<BR>
HOSHINA, Y., TAKEO, T., NAKANO, K., SATO, T. & SAKUMA, Y. 1994. Axon-sparing lesion of the preoptic area enhances receptivity and diminishes proceptivity among components of female rat sexual behavior. Behav Brain Res, 61, 197-204.<BR>
HOSHINA, Y., TAKEO, T., NAKANO, K., SATO, T. & SAKUMA, Y. 1994. Axon-sparing lesion of the preoptic area enhances receptivity and diminishes proceptivity among components of female rat sexual behavior. Behav Brain Res, 61, 197-204.<BR>
HOU, X. H., HYUN, M., TARANDA, J., HUANG, K. W., TODD, E., FENG, D., ATWATER, E., CRONEY, D., ZEIDEL, M. L., OSTEN, P. & SABATINI, B. L. 2016. Central Control Circuit for Context-Dependent Micturition. Cell, 167, 73-86 e12.<BR>
HOU, X. H., HYUN, M., TARANDA, J., HUANG, K. W., TODD, E., FENG, D., ATWATER, E., CRONEY, D., ZEIDEL, M. L., OSTEN, P. & SABATINI, B. L. 2016. Central control circuit for context-dependent micturition. Cell, 167, 73-86 e12.<BR>
LARSSON, K. & HEIMER, L. 1964. Mating Behaviour of Male Rats after Lesions in the Preoptic Area. Nature, 202, 413-4.<BR>
LARSSON, K. & HEIMER, L. 1964. Mating behaviour of male rats after lesions in the preoptic area. Nature, 202, 413-4.<BR>
LE GROS CLARK, W. E. & MEYER, R., M. 1950. Anatomical relationships between the cerebral cortex and the hypothalamus. Brit Med Bull, 6, 341-344.<BR>
LE GROS CLARK, W. E. & MEYER, R., M. 1950. Anatomical relationships between the cerebral cortex and the hypothalamus. Brit Med Bull, 6, 341-344.<BR>
MORENO, N. & GONZÁÁLEZ, A. 2011. The non-evaginated secondary prosencephalon of vertebrates. Frontiers in Neuroanatomy.<BR>
MORENO, N. & GONZÁÁLEZ, A. 2011. The non-evaginated secondary prosencephalon of vertebrates. Front Neuroanat. [https://doi.org/10.3389/fnana.2011.00012]<BR>
MORI, S., MATSUYAMA, K., KOHYAMA, J., KOBAYASHI, Y. & TAKAKUSAKI, K. 1992. Neuronal constituents of postural and locomotor control systems and their interactions in cats. Brain Dev., 14 Suppl., S109-S120.<BR>
MORI, S., MATSUYAMA, K., KOHYAMA, J., KOBAYASHI, Y. & TAKAKUSAKI, K. 1992. Neuronal constituents of postural and locomotor control systems and their interactions in cats. Brain Dev., 14 Suppl., S109-S120.<BR>
NAKAYAMA, T., SUZUKI, M. & ISHIZUKA, N. 1975. Action of progesterone on preoptic thermosensitive neurones. Nature, 258, 80.<BR>
NAKAYAMA, T., SUZUKI, M. & ISHIZUKA, N. 1975. Action of progesterone on preoptic thermosensitive neurones. Nature, 258, 80.<BR>
101行目: 101行目:
ORIKASA, C. & SAKUMA, Y. 2010. Estrogen configures sexual dimorphism in the preoptic area of C57BL/6J and ddN strains of mice. J Comp Neurol, 518, 3618-29.<BR>
ORIKASA, C. & SAKUMA, Y. 2010. Estrogen configures sexual dimorphism in the preoptic area of C57BL/6J and ddN strains of mice. J Comp Neurol, 518, 3618-29.<BR>
PARHAR, I. S. 2004. Laser-captured single digoxigenin-labeled neurons of gonadotropin-releasing hormone types reveal a novel G protein-coupled receptor (Gpr54) during maturation in cichlid fish. Endocrinology, 145, 3613-3618.<BR>
PARHAR, I. S. 2004. Laser-captured single digoxigenin-labeled neurons of gonadotropin-releasing hormone types reveal a novel G protein-coupled receptor (Gpr54) during maturation in cichlid fish. Endocrinology, 145, 3613-3618.<BR>
PARHAR, I. S., OGAWA, S. & SAKUMA, Y. 2004. Laser-captured single digoxigenin-labeled neurons of gonadotropin-releasing hormone types reveal a novel G protein-coupled receptor (Gpr54) during maturation in cichlid fish. Endocrinology, 145, 3613-3618.<BR>
PARHAR, I. S., OGAWA, S. & SAKUMA, Y. 2004. Laser-captured single digoxigenin-labeled neurons of gonadotropin-releasing hormone types reveal a novel G protein-coupled receptor (GPR54) during maturation in cichlid fish. Endocrinology, 145, 3613-3618.<BR>
PUELLES, L. & RUBENSTEIN, J. L. R. 2003. Forebrain gene expression domains and the evolving prosomeric model. Trends Neurosci, 26, 469-476.<BR>
PUELLES, L. & RUBENSTEIN, J. L. R. 2003. Forebrain gene expression domains and the evolving prosomeric model. Trends Neurosci, 26, 469-476.<BR>
RANSON, S. W., KABAT, H. & MAGOUN, H. W. 1935. Autonomic responses to electrical stimulation of hypothalamus, preoptic region and septum. Arch Neur Psych, 33, 467-477.<BR>
RANSON, S. W., KABAT, H. & MAGOUN, H. W. 1935. Autonomic responses to electrical stimulation of hypothalamus, preoptic region and septum. Arch Neur Psych, 33, 467-477.<BR>
SAKUMA, Y. 1984. Influences of neonatal gonadectomy or androgen exposure on the sexual differentiation of the rat ventromedial hypothalamus. J Physiol, 349, 273-86.<BR>
SAKUMA, Y. 1984. Influences of neonatal gonadectomy or androgen exposure on the sexual differentiation of the rat ventromedial hypothalamus. J Physiol, 349, 273-86.<BR>
SALLANON, M., DENOYER, M., KITAHAMA, K., AUBERT, C., GAY, N. & JOUVET, M. 1989. Long-Lasting Insomnia Induced by Preoptic Neuron Lesions and Its Transient Reversal by Muscimol Injection into the Posterior Hypothalamus in the Cat. Neuroscience, 32, 669-683.<BR>
SALLANON, M., DENOYER, M., KITAHAMA, K., AUBERT, C., GAY, N. & JOUVET, M. 1989. Long-lasting insomnia induced by preoptic neuron lesions and its transient reversal by muscimol injection into the posterior hypothalamus in the cat. Neuroscience, 32, 669-683.<BR>
SAPER, C. B. & LEVISOHN, D. 1983. Afferent connections of the median preoptic nucleus in the rat: anatomical evidence for a cardiovascular integrative mechanism in the anteroventral third ventricular (AV3V) region. Brain Res, 288, 21-31.<BR>
SAPER, C. B. & LEVISOHN, D. 1983. Afferent connections of the median preoptic nucleus in the rat: anatomical evidence for a cardiovascular integrative mechanism in the anteroventral third ventricular (AV3V) region. Brain Res, 288, 21-31.<BR>
SCHWANZEL-FUKUDA, M., BICK, D. & PFAFF, D. W. 1989. Luteinizing hormone-releasing hormone (LHRH)-expressing cells do not migrate normally in an inherited hypogonadal (Kallmann) syndrome. Brain Res Mol Brain Res, 6, 311-26.<BR>
SCHWANZEL-FUKUDA, M., BICK, D. & PFAFF, D. W. 1989. Luteinizing hormone-releasing hormone (LHRH)-expressing cells do not migrate normally in an inherited hypogonadal (Kallmann) syndrome. Brain Res Mol Brain Res, 6, 311-26.<BR>
133

回編集