• Title/Summary/Keyword: 신경말단

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Somatosensory Afferent Pathway Tracing from Rat Anterior Cruciate Ligament Nerve Endings to Cerebral Cortex Using Pseudorabies Virus (쥐 전방십자인대 신경말단에서 대뇌피질까지 Pseudorabies virus(PRV)를 이용한 구심성 체성감각신경로의 추적)

  • Kim, Jin-Su;Jeong, Soon-Taek;Cho, Se-Hyun;Park, Hyung-Bin
    • Journal of Korean Orthopaedic Sports Medicine
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    • v.4 no.1
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    • pp.29-35
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    • 2005
  • Purpose: The anterior cruciate ligament(ACL) has a neuromuscular control function as evidenced by the presence within it of mechanoreceptor. Although these mechanoreceptors have been identified, the afferent somatosensory pathways from ACL to the cerebrum have yet to be demonstrated in their entirety. In order to trace these afferent pathway, we conducted a viral trans-synaptic tracing experiment using the neurotropic pseudorabies virus(PRV). Material and Methods: The PRV was injected into the ACL of rats and allowed to replicate and spread trans-synaptically for 6 to 7 days. The brain and spinal cord of each sacrificed rat was then removed and processed immunohistochemically to detect the presence of PRV. Results: PRV-immunoreactive neurons were found to be localized in several different regions from the spinal cord to the cerebrum. Four nuclei in the reticular formation of the brain stem demonstrated strong positive labeling: the mesencephalic reticular nucleus, magnocelluar reticular nucleus, paragigantocellular reticular nucleus, and gigantocellular reticular nucleus. Conclusions: This findings suggests that the nerve endings of the rat ACL project into the cerebrum and that the reticular formation may play an important role in the afferent pathway of those nerve endings.

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Study on the Validity of F wave for Diagnosis of Carpal Tunnel Syndrome (손목터널증후군 진단 시 F파의 유용성에 관한 연구)

  • Park, Jong-Kwon;Kang, Ji-Hyuk;Kim, Hye-Jeong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.10
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    • pp.290-298
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    • 2017
  • This study compared the median nerve, ulnar never, and F waves of patients diagnosed with early Carpal Tunnel Syndrome to a control group to determine whether F waves could be a useful indicator in the diagnosis of early CTS. The terminal motor latency (TML), terminal motor amplitude and sensory nerve conduction velocity (SNCV) of the section from the palms to the wrists, which are the key indicators to use in a nerve conduction study, and F waves were compared with the control group using the t-test. A correlation analysis was performed to analyze the correlation between the main indicators. The comparison between the median nerve's TML of the early CTS patients and that of the control group shows that there are 2 sections which have high significance (p<0.001). In the comparison of the SNCV of the median nerve between the control group and early CTS patients, high significance was observed (p<0.001). In the analysis of the F waves, there was high significance (p<0.001) between the control group and early CTS patients for the median nerve, but not for the ulnar nerve. The correlation analysis revealed that both the SNCV-TML and F wave-TML had significance. These results suggested that, along with TML and SNCV, F waves can be a useful indicator to diagnose CTS.

Ultrastructure of Ocellar Never System in Drosophila melanogaster (초파리 단안 신경계의 미세형태학적연구)

  • 윤춘식
    • Journal of Life Science
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    • v.9 no.6
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    • pp.709-714
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    • 1999
  • Ultrastructure of ocellar system was studied in adult Drosophila melanogaster. Ocellus was composed of terminal receptors, interneuron and glia. These three part showed different brightness each other and each component was distinct. In the glial cell, rER was abundant, and terminal receptors and interneuron showed numerous microtubules, special transporting system. The terminal receptors have particular structure referred as capital projection connecting the terminal receptor to glia. In synaptic active zone between terminal receptor and interneuron, ribbon-like structures and synaptic vesicles around the structures were frequently observed. In addition, the cross section of giant interneuron was also observed.

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IMMUNOHISTOCHEMICAL STUDY ON THE DISTRIBUTION OF NERVES IN THE PERIODONTAL LIGAMENT OF A DOG'S PRIMARY TEETH (유치 치주인대 신경분포에 관한 면역조직화학적 연구)

  • Lee, Won-Jae;Gu, Dae-Hak;Bae, Yong-Chul;Kim, Young-Jim
    • Journal of the korean academy of Pediatric Dentistry
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    • v.21 no.2
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    • pp.439-455
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    • 1994
  • The purpose of this study was to investigate the distribution of nerves in the periodontal ligament of a dog's primary teeth by each developing stage. The distribution of nerves in the periodontal ligament were investigated by means of immunohistochemistry for detection of neurofilament protein (NFP). The results were as follows: The NFP-immunoreactive nerve fibers were found to be densely distributed in the apical third of the periodontal ligament, while they were sparse in the coronal two third, in both primary and permanent teeth. In generally the density of distribution and degree of arborization of nerve fibers in periodontal ligament of primary teeth revealed a poor appearance compared with that of permanent teeth. Periodontal ligament in anterior teeth showed more abundant nerve innervation than posterior teeth, and the periodontal ligament of the bifurcation area in posterior teeth roots were not observed to have nerve fiber. The density of nerve distribution in the periodontal ligament of primary teeth was reduced according to the physiological root resorption and nerve fibers were not observed in the surrounding area on the root of the exfoliation stage in primary teeth. The distribution of nerve fibers in mucogingival tissue, was poor innervated according to the aging of the dogs. A more abundant distribution of nerve fiber was represented in the lingual mucogingival tissue than in the labial side. Most of the nerve endings in the periodontal ligament of primary teeth showed a tree-like appearance. However, the typical Ruffini-like nerve endings were not observed.

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A Study on Neuroactive Response Measurement Platform using Mechano Sensor (Mechano sensor를 이용한 신경자극반응 측정 플랫폼에 관한 연구)

  • Kim, Woo-Ram;Kim, Young-Kil
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2012.05a
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    • pp.198-201
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    • 2012
  • This is a study about a platform realization measuring the extent of reaction in nerve, as giving a electrical impulse on a nerve pulp regulating a function of muscle, about a measurement of nerve reaction in the amount of current, the lasting time of current, and the position of electrode from a electrical impuls. The position of an electrode in a electrical nerve impuls have nothing to do with all nerves from exercise to all things. There is the Single Twitch Stimulation, Train-of-four, and Double Burst Stimulation in the form of nerve stimulation. This report is needed for selecting MCU of low electric power for a base in embedded system and measuring the extent of reaction after making a sensor interface to know sensitivity of measuring sensor in basic reaction of nerve impuls. The platform is realized to select a high efficiency AD Convertor for raising accuracy in measured data. As the platform in this report was developed for a medical appliances, it was designed to consider user safety in electric power Isolation when making electric power circuit.

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A Study on Neuroactive Response Sensing Platform after Injection of Muscular Relaxants (근 이완제 투여에 따른 신경 자극 반응 감지 플랫폼에 관한 연구)

  • Kim, Woo-Ram;Kim, Young-Kil
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2011.10a
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    • pp.331-334
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    • 2011
  • This is a study about a platform realization measuring the extent of reaction in nerve, as giving a electrical impulse on a nerve pulp regulating a function of muscle, about a measurement of nerve reaction in the amount of current, the lasting time of current, and the position of electrode from a electrical impuls.The position of an electrode in a electrical nerve impuls have nothing to do with all nerves from exercise to all things. There is the Single Twitch Stimulation(STS), Train-of-four(TOF), and Double Burst Stimulation(DBS) in the form of nerve stimulation. This report is needed for selecting MCU of low electric power for a base in embedded system and measuring the extent of reaction after making a sensor interface to know sensitivity of measuring sensor in basic reaction of nerve impuls. The platform is realized to select a high efficiency AD Convertor for raising accuracy in measured data. As the platform in this report was developed for a medical appliances, it was designed to consider user safety in electric power Isolation when making electric power circuit.

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The STAR RNA Binding Proteins SAM68, SLM-1 and SLM-2 Interact with Kinesin-I (Kinesin-I과 직접 결합하는 STAR RNA 결합 단백질인 SAM68, SLM-1과 SLM-2의 규명)

  • Seog, Dae-Hyun
    • Journal of Life Science
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    • v.21 no.9
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    • pp.1226-1233
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    • 2011
  • In neurons, kinesin is the molecular motor that transport cargos along microtubules. KIF5s (alias kinesin-I), are heterotetrameric motor conveying cargos, but the mechanism as to how they recognize and bind to a specific cargos has not yet been completely elucidated. To identify the interaction proteins for KIF5C, yeast two-hybrid screening was performed, and specific interaction with the $\underline{S}$am68-$\underline{l}$ike $\underline{m}$ammalian protein $\underline{2}$ (SLM-2), a member of the $\underline{s}$ignal $\underline{t}$ransducers and $\underline{a}$ctivators of $\underline{R}$NA (STAR) family of RNA processing proteins, was found. SLM-2 bound to the carboxyl (C)-terminal region of KIF5C and to other KIF5 members. The C-terminal domain of Sam68, SLM-1, SLM-2 was essential for interaction with KIF5C in the yeast two-hybrid assay. In addition, glutathione S-transferase (GST) pull-downs showed that SAM68, SLM-1, and SLM-2 specifically interacted to Kinesin-I complex. An antibody to SAM68 specifically co-immunoprecipitated SAM68 associated with KIF5s and coprecipitated with a specific set of mRNA. These results suggest that Kinesin-I motor protein transports RNA-associated protein complex in cells.

Histological and Ultrastructural Differentiations of the Neuroepithelial Cells in the Mouse Embryo during Early Neurulation (마우스 초기 신경배형성과정에서 신경상피세포의 조직학적 및 미세구조적 분화)

  • Kim, Yul-A;Chung, Young-Wha
    • Applied Microscopy
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    • v.29 no.1
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    • pp.105-124
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    • 1999
  • Histological and ultrastructural differentiations of the neuroepithelial cells in the mouse embryo during neurulation were observed. The neural plates and grooves consisted of pseudostratified columnar epithelium in the embryonic day (ED) 8 embryo were developed. In the ED 9 embryo, the neural tube was developed in all body length of embryo except both the cephalic and caudal ends. Secondary neurulation was shown at the tail bud of the ED 10 embryo. In the ED 8 embryo, the primitive streak was shown in the posterior end of the embryonic disc. The neuroepithelium, notochord and mesenchyme were well differentiated in the cephalic and cervical portions. In the ED 9 and 10 embryos, the roof plates of neural tubes were constituted of the closing of the surface ectodermal cells in the hindbrain and the neuroepithelial cells in the spinal cord. The floor plate of neural tube were consisted of the low pseudostratified columnar epithelium. The spinal motor nerve fibers were initially differentiated in the ED 10 embryo. According to the electron density of the cell and the differentiation of tell organelles, the neuroepithelial cells in the ED 9 and 10 embryos were classified into three types: dark, intermediate and light types. All types in the ED 9 embryo were observed but the dark cell in the ED 10 embryo was not done. The free ribosomes and polysomes in all neuroepithelial cells were developed. The RER and lipid droplets in the dark cell and the Golgi complex in the intermediate and light cells were observed. Many microfilaments in the cytoplasmic processes of intermediate cell and the microfilaments and microtubules in the light cell processes were observed to be well differentiated.

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NERVE DISTRIBUTION OF DENTAL PULP IN HUMAN PRIMARY AND YOUNG PERMANENT TEETH (유치 및 초기 영구치의 치수 신경분포)

  • Lee, In-Jeong;Lee, Jae-Mun;Kim, Hyun-Jung;Nam, Soon-Hyun;Kim, Young-Jin
    • Journal of the korean academy of Pediatric Dentistry
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    • v.23 no.2
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    • pp.291-305
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    • 1996
  • The purpose of this study was to investigate the distribution of nerves in the dental pulp of early extracted primary teeth, normal exfoliated primary teeth, partially-erupted, nonfunctional, premolars, and erupted, functional, premolars. Numbers of sample were 10 teeth in each group. The distribution of nerves in the dental pulp were investigated by means of immunohisto chemistry for detection of neurofilament protein(NFP). The results were as follows: The early extracted primary teeth exhibited patterns of innervation similar to those observed for young permanent teeth. The plexiform arrangement of fibers was not evident in the primary teeth. Most nerves appear to terminate about the odontoblasts. As primary teeth began to undergo root resorption, degenerative changes such as vesicles and fragmentation appear in the nerves. The quantity of neural tissue also decreased. In teeth in which the roots were almost completely resorbed only a small number of nerves remain. There was a decrease in the number of terminal branches in the pulp of the partially erupted, nonfunctional, premolars and those present reached the pulpo-odontoblastic border. The nerve terminals in the pulp of the erupted, functional, premolars were traced to the dentinal tubule and a few nerve fibers formed loops in the predentin.

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