• 제목/요약/키워드: Neuropils

검색결과 11건 처리시간 0.023초

배추흰나비 유충, 용, 성충의 뇌에 분포하는 세로토닌 면역반응성 신경원 (Immunocytochemical Mapping of Serotonergic Neurons in Postembrvonic Brains of Cabbage Butterfly Pieris rcpce)

  • 이봉희;심재원
    • 한국동물학회지
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    • 제35권4호
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    • pp.428-438
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    • 1992
  • The serotonin-immunoreactive (5-HTil neurons have been investigated in the brains of lanra, pupa and adult from Pieris ropae. There are ca. 54 5-HTi neurons in 5-instar larva, ca. 20 in 2-dav-old pupa and ca. 118 in 1-day-old adult, respectively. Most of these 5-HTi neurons are interneurons, but efferent and afferent 5-HTi neurons were also observed. Most of the 5-HTi neurons project into the central neuropils of postembrvonic brains. The larval brain contains abundant 5-HTi processes in the central neuropils, including those in three cerebral commissures. But in the pupal brain the 5-HTi processes are restricted in small numbers to the given regions of central neuropil. The adult brain contains a large number of 5-HTi processes in mushroom body, central body complex, lateral protocerebrum, protocerebral bridge, antennal lobe, and tritocerebral and suboesophageal neuropils. However, the 5-HTi processes are not found in the optic lobe of the brains. One prominent feature of the 5-HTi fibers in the postembrvonic brains is the fact that they are greatly arborized.

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한국산 플라나리아(Dugesia japonica) 뇌신경절의 미세구조 (Eine Structure of Cerebral Ganglion in the Korean Planaria, Dugesia japonica)

  • 장남섭
    • Applied Microscopy
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    • 제29권1호
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    • pp.57-66
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    • 1999
  • 한국산 플라나리아 뇌신경절을 실험에 사용할 수 있도록 적당한 크기로 적출하여 부위별로 잘라낸 후 2.5% paraformaldehyde-3% glutaraldehyde로 1시간 30분 전고정을 하고 이러서 $OsO_4$로 2시간 후 고정을 한 다음 전자현미경 관찰방법에 따라 실험한 후 다음과 같은 결론을 얻었다. 뇌신경절을 구성하고 있는 세포는 신경세포와 신경분비세포, 신경아교세포 그리고 신경섬유들로 이루어진 신경망 등이었다. 신경세포는 직경이 $5{\mu}m$ 정도인 원형 또는 타원형의 작은 세포로서, 핵은 타원형체로 세포질에 비해 크고 이질염색질이 고르게 발달해 있었으나, 세포질은 세포 소기관의 발달이 미진하여 비교적 단순하게 보였다. 신경분비세포는 그 모양이 긴 타원형이거나 방추형세포로서 타원형의 큰 핵을 소지하였다. 또한 이들의 세포질속에는 직경 60nm 정도의 분비성과립들로 가득차 있었다. 신경아교세포는 매우 드물게 나타나는 방추형의 세포로서 (크기, $6\times0.8{\mu}m$) 이들은 신경섬유 사이에서 주로 관찰되었다. 신경망을 구성하고 있는 신경섬유와 신경종말 속에는 사립체와 신경소관 그리고 4종류의 분비성소포(직경, 75nm, 50nm, 그리고 37nm 정도의 전자밀도가 높은 과립소포 3종과 30nm 크기의 전자밀도가 낮은 투명과 립소포 1종) 등이 존재하였는데, 이들은 단일소포 형태와 혼합소포형태로 존재하였다. 또한 이들의 신경연접 형태는 축삭-수상돌기연접과 축삭-축삭돌기연접 등의 신경 연합만이 주로 관찰되는 특징을 보였다.

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6-Aminonicotinamide 투여 후 햄스터 척수의 미세구조 변화 (Ultrastructural Changes of the Spinal Cord after Treatment with 6-Aminonicotinamide)

  • 양영철
    • Applied Microscopy
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    • 제27권3호
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    • pp.281-293
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    • 1997
  • The effects of antimetabolite, 6-aminonicotinamide (6-AN), on ultrastrudural changes in the spinal cord of golden hamster were investigated. Intraperitoneal administration of 6-AN (10 mg/kg body weight) every two days gave rise to a marked reduction of about $30\sim40%$ in body weight after $26\sim28$ days ($13\sim14th$ injection). In the lesions of the spinal cord, neuroglial cells such as astrocytes and oligodendrocytes were severely damaged, but neurons and blood vessels were not affected by 6-AN. The myelin sheath was also affected by 6-AN. Vacuoles observed in the lesions were produced by the swelling and degenerating changes of neuropils and neuroglial cells. Numerous swollen mitochondria and cisterns of rough endoplasmic reticulum were observed in the watery cytoplasm of damaged neuroglial cells, but intermediate filaments were well preserved. Especially in the damaged astrocytes, the outer nuclear membrane were partially swollen and formed a halfmoonlike structure. It is suggested that as well as the multivesicular bodies protruding from the swollen dendrites, the conjugation of adjacent vacuoles also participated in the formation of large vacuoles.

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아프리카 왕달팽이 (Achatina fulica) 뇌신경절 (Cerebral ganglion)의 미세구조 (A Ultrastructural Study on the Cerebral Ganglion of the African Giant Snail, Achatina fulica)

  • 장남섭
    • Applied Microscopy
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    • 제29권3호
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    • pp.303-313
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    • 1999
  • 아프리카 왕달팽이 (Achatina fulica) 뇌신경절내 5종류의 신경분비세포, light green (LG) cell, dark green (DG) cell, caudo-dorsal (CD) cell, blue green (BG) cell, yellow (Y) cell과 신경망(neuropils) 둥을 전자현미경을 통해 관찰한 결과는 다음과 같다. LG세포는 $60{\mu}m$정도 크기의 원형 또는 난원형의 세포로서 핵과 세포질은 전자밀도가 낮아서 밝게 보였다. 핵질내에는 굵은 과립상의 염색질들이 고르게 발달해 있었고, 둥근 인도 관찰되었다. 세포질에는 평균 $0.4{\mu}m$ 정도 크기의 전자밀도가 높은 둥근 과립들이 밀집되어 있었다. DG세포는 비교적 드물게 관찰되는 $50{\mu}m\sim20{\mu}m$정도 크기의 난원형의 세포로서 전자밀도가 비교적 높게 나타났다. 세포질 속에는 과립성소포체, 미토콘드리아 등 세포소기관과 평균 $0.2{\mu}m$정도 크기의 전자밀도가 높은 둥근 과립들을 소지하고 있었다. CD세포들은 뇌신경절의 양측 미배부위 (caudo-dorsal parts)에 밀집되어 있는 타원형의 세포로서 세포질에 비해 큰 핵을 소지하고 있었다. 핵질속에는 과립상의 이질 염색질들이 발달해 있었으며 세포질 속에는 평균 $0.12{\mu}m$정도 크기의 비교적 작은 많은 둥근 과립들을 소지하고 있었다. BG세포는 뇌신경절의 신경내막 주변부에서 드물게 관찰되는 장타원형의 세포로서 전자밀도가 높아서 검게 보였다. 세포질에는 평균 $0.1{\mu}m$정도 크기의 작은 둥근 과립들이 보였다. Y세포는 신경분비세포 중 가장 작은 세포(크기 $9\times6.6{\mu}m$)로서 뇌신경절의 중배부위 (medio-dorsal parts)와 미배부위 (caudo-dorsal parts) 사이에서 주로 관찰되었다. 이들의 세포질에는 평균 $0.08{\mu}m$정도 크기의 매우 작은 둥근 과립들이 집단을 이루고 있었다. 신경망은 뇌신경절의 중앙부위에 위치해 있으며 축색 종말내에는 전자밀도가 높은 둥근 과립 (직경 $0.07\sim0.03{\mu}m$)과 투명소포(직경 $0.03{\mu}m$)들이 다수 존재하였는데 이들은 축색종말의 한계막이 함입되어 (invagination)형성된 exocytosome 상태로 배출되는 특징을 보였다.

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Cellular and regional specific changes in multidrug efflux transporter expression during recovery of vasogenic edema in the rat hippocampus and piriform cortex

  • Kim, Yeon-Jo;Kim, Ji-Eun;Choi, Hui-Chul;Song, Hong-Ki;Kang, Tae-Cheon
    • BMB Reports
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    • 제48권6호
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    • pp.348-353
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    • 2015
  • In the present study, we investigated the characteristics of drug efflux transporter expressions following status epilepticus (SE). In the hippocampus and piriform cortex (PC), vasogenic edema peaked 3-4 days after SE. The expression of breast cancer resistance protein (BCRP), multidrug resistance protein-4 (MRP4), and p-glycoprotein (p-GP) were decreased 4 days after SE when vasogenic edema was peaked, but subsequently increased 4 weeks after SE. Multidrug resistance protein-1 (MRP1) expression gradually decreased in endothelial cells until 4 weeks after SE. These findings indicate that SE-induced vasogenic edema formation transiently reduced drug efflux pump expressions in endothelial cells. Subsequently, during recovery of vasogenic edema drug efflux pump expressions were differentially upregulated in astrocytes, neuropils, and endothelial cells. Therefore, we suggest that vasogenic edema formation may be a risk factor in pharmacoresistent epilepsy. [BMB Reports 2015; 48(6): 348-353]

중격측좌핵과 선조체 기저핵의 비교연구 II. 신경 연접형의 구분 (Comparative Study on the Nucleus accumbens septi and the Nucleus fundus striati II . Classification of Synaptic Types)

  • 안의태;양남길;김종규;고정식;이봉희;박경호
    • Applied Microscopy
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    • 제18권1호
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    • pp.21-34
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    • 1988
  • Comparative study on the synaptic types of the nuclei accumbens septi and fundus striati of the chick and the rat was carried out. Basic synaptic types were established according to the size of synaptic vesicles, development of synaptic vesicles, development of synaptic thickening, kind of postsynaptic structures, etc. Comparing the synaptic types and appearance-ratio within the neuropils, the following results were obtained (see the data in the Table 1). 1. In the nucleus accumbens of the rat, the axo-spinous synapses are far less than those in the nucleus fundus striati (13.7%/68.2%). 2. In the nucleus accumbens, there found much more axo-dendritic types(II, III and V) than those appearing in the nucleus fundus striati(79.1%/27.1%). 3. In the nucleus accumbens of the chick, on the contrary to the case of the rat, more axo-spinous types(70.1%/31.4%) and less axo-dendritic types(12.3%/60.0%) were found as compared to those appearing in the nucleus fundus striati. 4. There found no large-sized synaptic vesicles in the chick nuclei accumbens septi and the fundus striati.

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Spatiotemporal expression of RCAN1 and its isoform RCAN1-4 in the mouse hippocampus after pilocarpine-induced status epilepticus

  • Cho, Kyung-Ok;Jeong, Kyoung Hoon;Cha, Jung-Ho;Kim, Seong Yun
    • The Korean Journal of Physiology and Pharmacology
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    • 제24권1호
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    • pp.81-88
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    • 2020
  • Regulator of calcineurin 1 (RCAN1) can be induced by an intracellular calcium increase and oxidative stress, which are characteristic features of temporal lobe epilepsy. Thus, we investigated the spatiotemporal expression and cellular localization of RCAN1 protein and mRNA in the mouse hippocampus after pilocarpine-induced status epilepticus (SE). Male C57BL/6 mice were given pilocarpine hydrochloride (280 mg/kg, i.p.) and allowed to develop 2 h of SE. Then the animals were given diazepam (10 mg/kg, i.p.) to stop the seizures and sacrificed at 1, 3, 7, 14, or 28 day after SE. Cresyl violet staining showed that pilocarpine-induced SE resulted in cell death in the CA1 and CA3 subfields of the hippocampus from 3 day after SE. RCAN1 immunoreactivity showed that RCAN1 was mainly expressed in neurons in the shammanipulated hippocampi. At 1 day after SE, RCAN1 expression became detected in hippocampal neuropils. However, RCAN1 signals were markedly enhanced in cells with stellate morphology at 3 and 7 day after SE, which were confirmed to be reactive astrocytes, but not microglia by double immunofluorescence. In addition, realtime reverse transcriptase-polymerase chain reaction showed a significant upregulation of RCAN1 isoform 4 (RCAN1-4) mRNA in the SE-induced hippocampi. Finally, in situ hybridization with immunohistochemistry revealed astrocytic expression of RCAN1-4 after SE. These results demonstrate astrocytic upregulation of RCAN1 and RCAN1-4 in the mouse hippocampus in the acute and subacute phases of epileptogenesis, providing foundational information for the potential role of RCAN1 in reactive astrocytes during epileptogenesis.

6-Aminonicotinamide 투여 후 햄스터 척수 중심관의 형태변화 (Morphological Changes in The Central Canal of the Hamster Spinal Cord after Treatment with 6-Aminonicotinamide)

  • 양영철;조병필;강호석;박인국
    • Applied Microscopy
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    • 제27권2호
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    • pp.177-187
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    • 1997
  • Hydrocephalus is induced experimentally in prenatal and suckling animals following an injection of 6-aminonicotinamide (6-AN). The most remarkable characteristic of these animals is aqueduct stenosis caused by swellings of the ependymal cells and subependymal cells in the periaqueductal gray matter and the central canal of the spinal cord. The present study was undertaken to investigate the morphological changes of the ependymal cells in the central canal of the spinal cord of 3.5 months old hamster after treatment with 6-AN. Intraperitoneal administrations of 6-AN (10 mg/kg body weight) every two days gave rise to partial central canal stenosis of the spinal cord after 27-29 days (13-l4th injection), but cilia and microvilli were located in the strictural area of the con#rat canal. The vacuolations in the ependymal cells were not observed and degenerating changes of intracellular organelles of the ependymal cells did not occur, so that the ependymal cells lining the central canal of the hamster spinal cord were not affected by 6-AN. But the present study demonstrate that 6-AN causes to create numerous vacuoles in the subependymal area of the central canal. Although the vacuoles were well developed in the neuroglial cells and the neuropils of the subependymal area, the neurons were not affected by 6-AN. These results strongly suggests that partial central canal stenosis occurred by 6-AN was due to vacuolations and swellings of the neuroglial cells and nueropils in the subependymal area.

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Postembryonic Development of Leucokinin I-Producing Neurons in the Brain of Insect Spldoptera litura

  • Kang, Hyu-No;Lee, Bong-Hee
    • Animal cells and systems
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    • 제1권1호
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    • pp.107-113
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    • 1997
  • Antisera against the myotropic neuropeptide leucokinin I, originally isolated from head extracts of the cockroach Leucophaea maderae, have been used to investigate the distribution of the leucokinin I-immunoreactive (LK I-IR) neurons in the brain of the common cutworm, Spodoptera Iitura, during postembryonic development. The LK I-IR neurons are found at the larval stages (excluding first instar larval stage), pupal stages, and adult stage, of which the brains have been examined in this experiment. The number of the LK I-IR neurons in the brain increases from the second instar larva to the fifth instar larva which has about 32, the largest number in all postembryonic stages. Thereafter, the LK I-IR neurons begin to decrease in number. During the pupal stages, smaller number of LK I-IR neurons persist in the brains; 6 or 4. At adult stage the brain contains 8 LK I-IR neurons. The LK I-IR cell bodies are distributed in each dorsal cortex of both cerebral hemispheres in the second instar larva and through all the neuromeres of the brain during later larval stages, despite of being a large number of the LK I-IR cell bodies in dorsolateral neuromeres. At pupal stages, most of the LK I-IR cell bodies are found in the pars intercerebralis. Extremely small number of the LK I-IR cell bodies are localized in the pars lateral is. Adult brain contains the LK I-IR cell bodies in the pars intercerebralis and the middle cortex of the posterior brain. The LK I-IR nerve processes can be easily found in the neuropils of almost all the neuromeres in the brains of third, fourth, fifth and sixth instar larvae. Most of the LK I-IR nerve fibers in those brains are originated from the LK I-IR cell bodies located in the brains. The LK I-IR cell bodies which have very weak reactivities to the antisera do not show projection of the LK I-IR nerve processes in the brains.

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발생중인 배추흰나비의 유충 뇌에서 세로토닌 면역반응성 신경원의 변화 (Changes of Serotonin-Immunoreactive Neurons in Developing Larval Brains of Cabbage Butterfly Artogeia rapae)

  • 권도우;윤혜련;정계헌;이봉희
    • 한국동물학회지
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    • 제38권3호
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    • pp.348-355
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    • 1995
  • 배추흰나비 유충 뇌에 분포하는 세로토닌 면역반응성 신경원(이하 세로토닌 세포)이 발생에 따라 형태학적으로 어떻게 분화해 나가는지를 조사하였다. 1령 유충뇌와 2령 유충뇌는 각각 20개의 세로토닌 세포를 포함하였다. 1령 유충뇌에서는 세로토닌 면역 반응성 섬유(이하 세로토닌 섬유) 한무리가 뇌교련을 형성하였고 이같은 섬유의 대부분은 반대쪽 중앙 신경망에 종지하였다. 2령 유충의 뇌에서는 세로토닌 섬유의 대부분이 뇌교련을 형성하였고 1령 유충뇌에서 보다는 그들의 수가 더 많이 관찰되었다. 이 섬유의 종말이 형성하는 보다 풍부한 arborization은 중앙 신경망의 상당한 부분을 차지하였다. 3령 유충뇌의 세로토닌 세포는 22개 였고 세로토닌 섬유들의 구성하는 뇌교련수도 3개로 증가되었으며 세로토닌 섬유의 대부분은 뇌교련을 형성하였다. 30개의 세로토닌 섬유뿐만 아니라 뇌의 전후 방향으로 달리는 세로토닌 섬유도 포함하였다.

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