• 제목/요약/키워드: suprachiasmatic nucleus

검색결과 28건 처리시간 0.027초

Colchicine 투여 후 흰쥐와 모래쥐 시각교차위핵내 bombesin에 대한 면역조직화반응 (Bombesin Immunorectivtiy in Suprachiasmatic Nucleus in Rat and Mongolian Gerbil after Colchicine Treatment)

  • 김진상;이성준
    • The Journal of Korean Physical Therapy
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    • 제11권2호
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    • pp.115-122
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    • 1999
  • This experiment was carried out to investigate the bombesin immunoreactivity in suprachiasmatic nucleus in rat and Mongolian gerbil hypothalamus after colchicine treatment and analyze the morphological difference between rat and Mongolian gerbil which is focused for experimental animal model of neuronal and circulatory diseases. The results were as followings. 1. The shape of suprachiasmatic nucleus was triangle in rat, but oval or kidney-shape in Mongolian gerbil 2. The suprachiasmatic nucleus devided into ventrolateral portion and dorsomedial portion in rat, but dorsolateral portion and ventromedial portion or superior portion and inferior portion in Mongolian gerbil. 3. The area of suprachiasmatic nucleus of rat was greater than one of Mongolian gerbil. 4. The bombesin immunoreactivity showed after colcichine treatment in rat and Mogolian gerbil suprachiasmatic nucleus. 5. The bombesin immunoreactivity was stronger in ventrolateral portion than in dorsomedial portion of suprachiasmatic nucleus in rat, but in ventromedial or inferior portion than in dorsolateral or superior portion of suprachiasmatic nucleus in Mongolian gerbil. 6. The bombesin immunoreactivity showed at the oval, ellipsoid or triangular neurons and varicose nerve terminals in ventrorateral portion of rat, and only nerve terminals in dorsomedial portion of rat suprachiasmatic nucleus. But the bombesin immunoreativity didn't show at neurons of Mongolian gerbil suprachiasmatic nucleus.

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흰쥐 시각교차위핵(suprachiasmatic nucleus)의 출생직후 GABA성 신경종말의 분포양상 (The postnatal distribution pattern of GABAergic terminals of the suprachiasmatic nucleus in rat)

  • 이성준
    • 대한수의학회지
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    • 제40권4호
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    • pp.661-664
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    • 2000
  • The present study was carried out to reveal the role of ${\gamma}$-aminobutylic acid(GABA) during postnatal period in rat. The suprachiasmatic nucleus(SCN) of hypothalamus has been known as the regulation center of circadian rhythm in the mammalians. In this study, we could find many GABAergic terminals in the SCN from day 1 to day 7 after birth. On the basis of these results, it can be said there are some kinds of inhibitory effects by GABA to the light stimulation of newborn rat.

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한국재래산양 시각교차위핵 내 몇 가지 칼슘결합단백질과 신경전달물질의 분포에 관한 면역조직화학적 연구 (Immunohistochemical study on some calcium binding proteins and neurotransmitters in suprachiasmatic nucleus of the Korean native goat)

  • 송승훈;이흥식;이인세
    • 대한수의학회지
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    • 제41권2호
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    • pp.139-146
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    • 2001
  • This study was carry out to identify the distribution of calcium binding proteins; calbindin(CB), calretinin(CR) and parvalbumin(PA) in the suprachiasmatic nucleus(SCN) of the Korean native goat by immunohistochemical methods. The expression of substance P(SP), calcitonin gene-related peptide(CG-RP), neuropeptide Y(NPY), vasoactive intestinal polypeptide(VIP) and galanin(GAL) were also investigated. CR-immunoreactivity was found in both of the cell bodies and fibers in the SCN, which the CB-immunoreactivity was observed only in the fibers. The immunoreactivity for VIP was observed in both the cell bodies and fibers, but SP-, NPY, GAL-immunoreactivities were only found in the fibers. CGRP-immunoreactivity was not seen in cell body and fibers. These results suggest that VIP, SP, NPY and GAL play a neuromodulatory or/ and neurotransmitter roles in cooperation with CB and CR in SCN of the Korean native goat.

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한국재래산양 시각교차위핵에 관한 형태학적 연구 (Morphological study on suprachiasmatic nucleus of the Korean native goat)

  • 송승훈;이흥식;이인세;황인구;이충현
    • 대한수의학회지
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    • 제40권4호
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    • pp.665-670
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    • 2000
  • The present study was undertaken to investigate the morphological characteristics of the suprachiasmatic nucleus (SCN) of the Korean native goat by cresyl violet stain. The SCN was located ventrolateral to the third ventricle and dorsal to the optic chiasm. This nucleus was showed carrot form in longitudinal section. Its size was 1.8 mm in length, 0.9 mm in maximum height and 1.6 mm in maximum width. In coronal sections, the SCN shaped very thin plate in rostral part, but it was changed to sweet-potato form in middle part, and ornamental jade form in caudal part. The size of SCN was larger in caudal part than in rostral part. The size of the neuron of SCN was about $10{\mu}m$ in diameter with round or oval shape. The boundary of SCN was not firmly defined in caudal part because the neurons were dispersed into the hypothalamic region. It is concluded that the SCN of the Korean native goat has a morphological characteristics.

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치매와 관련된 뇌영역에 투사되는 경혈(외관(SJ5), 내관(Pe6), 삼음교(SP6) 및 현종(GB39))의 탐색에 관한 신경해부학적 연구 (Neuroanatomical studies on acupoints(SJ5, Pe6, SP6 and GB39) projecting to the brain area related to dimentia using neural tracer, pseudorabies virus in mouse)

  • 이창현;김태헌;이상룡;육태한
    • Journal of Acupuncture Research
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    • 제20권6호
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    • pp.168-181
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    • 2003
  • Objective: The neuroanatomical studies on the acupoints(Waiguan(SJ5), Neiguan(Pe6), Sanyinjiao(SP6) and Xuanzhong(GB39)) projecting to the brain area related to dimentia using the pseudorabies virus (PRV-Ba strain) in the mouse was described. Methods: The common locations of the brain projecting to the Waiguan, Neiguan, Sanyinjiao and Xuanzhong following injection of PRV-Ba were histochemically observed. The results were as follows Results : 1. PRV-Ba labeled areas in medulla oblongata, pons and midbrain were similar to 4 acupoints, theses areas were related to autonomic center. 2. PRV-Ba labeled areas in diencephalon and cebrebrum were differently labeled according to the acupoints. 3. CNS labeled areas in Waiguan were dense labeled in CA1-3 area of hippocampus, amygdaloid nucleus, insular cortex, parietal cortex, entorhinal cortex, perirhinal cortex, dorsal endopiriform cortex, piriform cortex, amygdalopiriform transition and bed n. of stria terminalis. 4. CNS labeled areas in Neiguan were dense labeled in insular cortex, amygdaloid nucleus, parietal cortex, entorhinal cortex, perirhinal cortex, dorsal endopiriform cortex, piriform cortex, amygdalopiriform transition and bed n. of stria terminalis. 5. CNS labeled areas in Sanyinjiao were dense labeled in CA1-3 of hippocampus, suprachiasmatic n., dorsal endopiriform cortex, piriform cortex and bed n. of stria terminalis. 6. CNS labeled areas in Xuanzhong were dense labeled in suprachiasmatic n., dorsal endopiriform cortex and piriform cortex. Conclusions : Following these results, labeled acupoints in brain areas related to dimentia are Waiguan and Neiguan. Common labeled areas are amygdaloid n., entorhinal cortex, amygdaopiriform transition, bed n. stria terminalis and perirhinal cortex.

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리듬과 생체시계 (Rhythms and Biological Clock)

  • 최돈찬
    • 한국발생생물학회지:발생과생식
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    • 제7권1호
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    • pp.1-7
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    • 2003
  • 사람을 비롯한 대부분의 동물들은 주변 환경의 영향을 받아 주기적인 생활을 영위하고 있다. 지구의 자전 및 공전으로 그리고 국소적으로 발생되는 주기적인 변화는 생명체의 행동으로 뚜렷하게 표출된다. 이러한 환경의 주기적인 변화는 오랜 기간의 진화과정을 통하여 생명체 내의 유전자로 각인되었으며, 이 유전자들은 발생 과정을 포함하는 성장 과정에서 리듬으로 발현된다. 환경의 변화는 결국 유전자로 정착하여 생체 시계로서 작용하며, 시상하부의 시신경교차상핵(suprachiasmatic nucleus, SCN)이 유력한 해부학적 위치이다. 따라서 생체 시계는 지구상에 살고 있는 생명체의 각종 리듬을 지배하여, 출생 및 사망, 수명, 행동, 생리, 세포 분열, 생화학적 반응 등등에 영향을 미친다. 리듬은 서서히 변화하는 환경의 변화에 맞도록 재조정된다. 생체 시계는 규칙적인 환경 변화를 예측하고 이에 미리 대비하게 하는 장점을 지니고 있다.

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방광(膀胱)과 위중(委中)의 중추신경로와의 연계성에 관한 연구 (Studies on the Relationship of the Central Neural Pathways to the Urinary Bladder and Wijung($BL_{40}$))

  • 이창현;김호;이광규;정한솔
    • 동의생리병리학회지
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    • 제23권4호
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    • pp.805-817
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    • 2009
  • This study was to investigate central localization of neurons projecting to the urinary bladder and urinary bladder-related acupoints(Wijung, $BL_{40}$) and neurons of immunoreactive to hormones and hormone receptors regulating urinary bladder function by using peudorabies virus(PRV). In this experiment, Bartha's strain of pseudorabies virus was used in rats to trace central localization of urinary bladder-related neurons and urinary bladder-related acupoints($BL_{40}$) which can regulate urinary system. PRV was injected into the urinary bladder and acupoints($BL_{40}$) related urinary system. After six days survival of rats, mainly common labeled neurons projecting to the urinary bladder and urinary bladder-related acupoints were identified in spinal cord, medulla, pons and diencephalon by PRV immunohistochemical staining method. First-order PRV labeled neurons projecting to urinary bladder and urinary bladder-related acupoints were found in the cervical, thoracic, lumbar and sacral spinal cord. Commonly labeled preganglionic neurons were labeled in the lumbosacral spinal cord and thoracic spinal cord. They were found in the lateral horn area(sacral parasympathetic nucleus and intermediolateral nucleus), lamina V-X, intermediomedial nucleus and dorsal column area. The area of sensory neurons projecting to urinary bladder and Wijung($BL_{40}$) was L5-S2 spinal ganglia and T12-L1 spinal ganglia, respectively. In the brainstem, the neurons were labeled most evidently and consistently in the nucleus of tractus solitarius, area postrema, dorsal motor nucleus of vagus nerve, reticular nucleus, raphe nuclei(obscurus, magnus and pallidus), C3 adrenalin cells, parapyramidal area(lateral paragigantocellular nucleus), locus coeruleus, subcoeruleus nucleus, A5 cell group, Barrington's nucleus and periaqueductal gray matter. In the diencephalon, PRV labeled neurons were marked mostly in the paraventricular nucleus and a few ones were in the lateral hypothalamic nucleus, posterior hypothalamic nucleus, ventromedial hypothalamic nucleus, arcuate nucleus, median eminence, perifornical nucleus, periventricular nucleus and suprachiasmatic nucleus. In cerebral cortex, PRV labeled neurons were marked mostly in the frontal cortex, 1,2 area, hind limb area, agranular insular cortex. Immunoreactive neurons to Corticotropin releasiing factor(CRF), Corticotropin releasiing factor-receptor(CRF-R), c-fos and serotonin were a part of labeled areas among the virus-labeled neurons of urinary bladder and Wijung($BL_{40}$). The commonly labeled areas were nucleus tractus solitarius, area postrema, reticular nucleus, raphe nuclei(obscurus, magnus and pallidus), locus coeruleus, A5 cell group, Barrington,s nucleus, arcuate nucleus, paraventricular nucleus, frontal cortex 1, 2 area, hind limb, and perirhinal(agranular insular) cortex. These results suggest that overlapped CNS locations are related with autonomic nuclei which regulate the functions of urinary bladder-relate organs and it was revealed by tracing PRV labeled neurons projecting urinary bladder and urinary bladder-related acupoints. These commonly labeled areas often overlap with the neurons connected with hormones and hormone receptors related to urination.

족소양담경(足少陽膽經)에서 투사(投射)되는 신경원(神經元)의 표지부위(標識部位)에 대한 연구(硏究) (Localization of the Neurons Projecting to the Gallbladder Meridian)

  • 육상원;이광규;이상룡;김점영;이창현;이봉희
    • Korean Journal of Acupuncture
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    • 제17권1호
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    • pp.101-121
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    • 2000
  • The purpose of this morphological studies was to investigate the relation to the meridian, acupoint and nerve. The common locations of the spinal cord and brain projecting to the the gallbladder, GB34 and common peroneal nerve were observed following injection of transsynaptic neurotropic virus, pseudorabies virus(PRV), into the gallbladder, GB34 and common peroneal nerve of the rabbit. After survival times of 96 hours following injection of PRV, the thirty rabbits were perfused, and their spinal cord and brain were frozen sectioned($30{\mu}m$). These sections were stained by PRV immunohistochemical staining method, and observed with light microscope. The results were as follows: 1. In spinal cord, PRV labeled neurons projecting to the gallbladder, GB34 and common peroneal nerve were founded in thoracic, lumbar and sacral spinal segments. Densely labeled areas of each spinal cord segment were founded in lamina V, VII, X, intermediolateral nucleus and dorsal nucleus. 2. In medulla oblongata, The PRV labeled neurons projecting to the gallbladder, GB34 and common peroneal nerve were founded in the A1 noradrenalin cells/C1 adrenalin cells/caudoventrolateral reticular nucleus, rostroventrolateral reticular nucleus, medullary reticular nucleus, dorsal motor nucleus of vagus nerve, nucleus tractus solitarius, raphe obscurus nucleus, raphe pallidus nucleus, raphe magnus nucleus, gigantocellular nucleus, lateral paragigantocellular nucleus, principal sensory trigeminal nucleus and spinal trigeminal nucleus. 3. In Pons, PRV labeled neurons were parabrachial nucleus, Kolliker-Fuse nucleus and cochlear nucleus. 4. In midbrain, PRV labeled neurons were founded in central gray matter and substantia nigra. 5. In diencephalon, PRV labeled neurons were founded in lateral hypothalamic nucleus, suprachiasmatic nucleus and paraventricular hypothalamic nucleus. 6. In cerebral cortex, PRV labeled neuron were founded in hind limb area.This results suggest that PRV labeled common areas of the spinal cord projecting to the gallbladder, GB34 and common peroneal nerve may be first-order neurons related to the somatic sensory, viscero-somatic sensory and symapathetic preganglionic neurons, and PRV labeled common area of the brain may be first, second and third-order neurons response to the movement of smooth muscle in gallbladder and blood vessels.These PRV labeled neurons may be central autonomic center related to the integration and modulation of reflex control linked to the sensory system monitoring the internal environment, including both visceral sensation and various chemical and physical qualities of the bloodstream. The present morphological results provide that gallbladder meridian and acupoint may be related to the central autonomic pathways.

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lacZ가 삽입된 PRV-Bartha 종의 신경친화성 및 무릎시상하부로 추적시 발현양상 분석 (Neurotropism and Expression Pattern of lacZ Inserted PRV-Bartha in Geniculohypothalamic Tract Tracing)

  • 김진상;박은세;천송희;김민희;방현수;권영실;이봉희;김영철
    • Toxicological Research
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    • 제22권4호
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    • pp.403-409
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    • 2006
  • To localize the connection between intergeniculate nucleus and suprachisasmatic nucleus through geniculohypothalamic tract in postnatal mongolian gerbil, we injected lacZ inserted PRV-Bartha strain into suprachiasrnatic nucleus and tried to immunostain against it with Rb134 and mouse $anti-{\beta}-galactosidase$. The numbers of immunoreactive neurons in intergeniculate leaflet were $8{\pm}3.2$ in P1 Period, $10{\pm}4.1$ in P3 Period and $13{\pm}6.2$ in P7 Period, and was statistically significant (p<0.05) and had tendency to increase with time consuming. The results showed that intergeniculate leaflet had projected some axons into suprachiasrnatic nucleus through geniculohyptothalamic tract in postnatal mongolian gerbil. But we could not exclude the possibility of direct projections from dorsal and ventral geniculate nuclei into suprachisamatic nucleus completely.

청서 시상하부의 growth hormone-releasing factor 및 somatostatin 면역반응신경세포의 분포 (Distribution of growth hormone-releasing factor- and somatostatin-immunoreactive neurons in the hypothalamus of the Korean squirrel(sciurus vulgalis coreae))

  • 정영길;손화영;윤원기;김길수;원무호;류시윤;조성환;김무강
    • 대한수의학회지
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    • 제35권4호
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    • pp.671-681
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    • 1995
  • This study was attempted to investigate the topographical distribution, shape and immunoreactivity of growth hormone-releasing factor(GRF)- and somatostatin(SOM)-immunoreactive neurons in the hypothalamus of the Korean squirrels(Sciurus vulgalis coreae). For the light microscopical examination of immunohistochemistry, the brains were fixed with 4% paraformaldehyde solution by means of intracardiac perfusion. And the frozen sections($40{\mu}m$ thick) were stained immunohistochemically by ABC method. Distribution of GRF immunoreactive neurons($12-17{\mu}m$) was highest in the paraventricular nucleus, moderate in the periventricular and supraoptic nuclei, and low in the arcuate nucleus and lateral hypothalamic area. Their immunoreactive fibers were found very high in the median eminence, moderately in the supraoptic, paraventricular and periventricular nuclei, and low in the arcuate nucleus and lateral hypothalamic area. SOM immunoreactive perikarya($14-18{\mu}m$) were found moderately in the periventricular nucleus near the subependymal layer of the third ventricle, and low in the arcuate and suprachiasmatic nuclei. SOM immunoreactive fibers were found high in the median eminence, and moderately or low in the arcuate and periventricular nuclei.

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