• 제목/요약/키워드: Sensory Neurons

검색결과 167건 처리시간 0.024초

감각 뉴런의 마르코프 체인 모델과 시냅스 가소성을 이용한 LTC 개선 (Improving LTC using Markov Chain Model of Sensory Neurons and Synaptic Plasticity)

  • 이준혁
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2022년도 추계학술대회
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    • pp.150-152
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    • 2022
  • 본 연구의 목적은 LTC(Liquid Time-constant Network)를 기반으로 감각 뉴런의 동작과 시냅스 가소성을 고려한 모델을 제안하는 것이다. 이를 위해 뉴런 연결 구조를 뉴런의 수가 증가하는 형태, 감소하는 형태, 증가 후 감소하는 형태, 감소 후 증가하는 형태의 4가지로 설정하여 실험을 진행하였다. 변경한 모델의 성능이 LTC에 비해 개선되었는지 알아보기 위한 데이터는 시계열 예측 데이터셋을 사용하였다. 실험 결과, 감각 뉴런의 모델링을 적용하는 것은 항상 성능 향상을 불러오는 것은 아니지만 데이터셋의 종류에 따라 적절히 학습 규칙을 선택하는 것을 통해 성능이 향상됨을 관찰하였다. 또한, 뉴런의 연결 구조는 4개 층 이하일 때 향상된 성능을 보였다.

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표지방식을 이용한 흰 쥐 복강 내장을 지배하는 감각신경세포체와 신경섬유의 표지부위 (Localization of Sensory Neurons Innervating the Rat Intestine Using the Cholera Toxin B Subunit(CTB) and Wheat Germ Agglutinin-Horseradish Peroxidase(WGA-HRP))

  • 이동협;이창현;이무삼
    • Journal of Yeungnam Medical Science
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    • 제15권1호
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    • pp.75-96
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    • 1998
  • 복강내장을 지배하는 감각신경세포체 및 신경섬유의 표지부위를 관찰하기 위하여 복강내장을 부위별(위, 십이지장, 공장, 회장, 맹장, 오름결장, 내림결장)로 나누어 2.5% WGA-HRP $30{\mu}l$와 0.5% CTB $20{\mu}l$를 장막과 근육층 사이의 4부위에 나누어 주입하였다. 그 후 48-96시간의 생존시간이 경과한 후 뇌줄기, 척수신경절과 미주신경절에서의 감각신경섬유와 신경세포체의 표지부위를 면역조직화학 염색법과 HRP 조직화학 기법으로 관찰한 결과는 다음과 같다. 1. WGA-HRP에 표지된 감각신경섬유는 위와 맹장에서만 관찰되었으며, CTB에 표지된 감각신경섬유는 복강내장의 모든 장기에서 관찰되었다. 2. 복강내장을 지배하는 감각신경섬유는 뇌줄기내 좌우 고립로핵의 교질부, 교질부의 등쪽내측부, 교차연결부, 내측부, 넷째뇌실벽, 맨아래구역의 앞쪽경계 및 중심관의 등쪽 정중선인 교차연결부에 국소적으로 강하게 표지되었다. 3. 척수신경절에서 위 (stomach)에 분포하는 감각신경세포체는 좌우 관계없이 $T_2$에서 $L_1$까지 여러 신경절에 표지되었으며 이 중 좌우 $T_{8-9}$부위에 가장 많이 표지되었다. 4. 십이지장에서의 척수신경절에 표지된 감각 신경세포체는 좌우 $T_6-L_2$부위에 표지되었으나 다른 장기에 비하여 표지된 감각신경세포체의 수는 적었다. 5. 공장에서의 척수신경절에 표지된 감각신경세포체는 좌우 $T_6-L_2$부위에 표지되었다. 가장 많이 표지된 부위는 좌측 $T_{12}$ 부위였으며, 우측은 $T_{13}$ 부위에 표지되었다. 6. 회장에서의 척수신경절에 표지된 감각신경세포체는 좌우 $T_6-L_2$부위였다. 가장 많이 표지된 부위는 좌측에서 $T_{11}$부위였고, 우측에서 $L_1$부위였다. 7. 맹장에서의 척수신경절에 표지된 감각신경 세포체는 좌측은 $T_7-L_2$부위였으며 우측은 $T_6-L_1$부위였다. 가장 많이 표지된 부위는 좌측은 $T_{11}$이었으며, 우측은 $T_{11-12}$에 표지되었다. 8. 오름결장에서 척수신경절에 표지된 감각신경세포체는 좌측은 $T_7-L_2$부위에 표지되었고 우측은 $T_9-L_4$부위에 표지되어 좌우측 표지부위의 차이를 보였다. 가장 많이 표지된 부위는 좌측은 $T_9$이었으며, 우측은 $T_{11}$에 표지되었다. 9. 내림결장에서 척수신경절에 표지된 감각신경 세포체는 좌측은 $T_9-L_2$부위에 표지되었고 우측은 $T_6-L_2$부위에 표지되었다. 가장 많이 표지된 부위는 좌측은 $T_{13}$이었으며, 우측은 $L_1$에 표지되었다. 10. 복강내장을 지배하는 좌우 미주신경절에 표지된 감각신경세포체는 위에서 가장 많이 표지되었으며 위를 제외한 나머지 장기에서는 표지된 감각신경세포체의 수는 위에 표지된 수보다 적었다. 이상의 결과로 흰쥐의 복강내장을 지배하는 감각신경섬유의 뇌줄기내 표지영역은 좌우 고립로 핵의 교질부, 교질부의 등쪽내측부, 교차연결부, 내측부, 넷째뇌실벽, 맨아래구역의 앞쪽경계 및 중심관의 등쪽 정중선인 교차연결부였으며, 감각신경세포체의 표지영역은 미주신경절과 척수신경절 $T_2-L_4$ 부위였음을 알 수 있었다. 위를 제외한 나머지 장기들에서는 $T_6-L_4$부위에 표지되었으나 소장에서 대장으로 갈수록 가장 많이 표지된 부위는 원위부 가슴신경절에서 근위부 허리신경절쪽으로 이동하는 경향을 보였다.

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흰쥐의 좌골신경축삭 압좌 손상 후 시호(柴胡) 추출물에 의한 재생반응성 개선효과 (Effects of Bupleuri radix Extract on Axon Regrowth in the Injured Sciatic Nerve of Rats)

  • 강준혁;오민석
    • 대한한의학회지
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    • 제31권1호
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    • pp.93-111
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    • 2010
  • Objectives: The present study was performed to evaluate the potential effects of Bupleuri radix (SH) on regenerative activities in the peripheral sciatic nerve after crushing injury in rats. Methods: Axonal regeneration after crush injury in rats was analyzed by immunofluorescence staining using anti-NF-200 antibody and retrograde tracing of DiI-axons. Changes in protein levels in the sciatic nerve axons and DRG tissue were analyzed by Western blot analysis and immunofluorescence staining. Effects of SH extract treatment on neurite outgrowth was examined by immunofluorescence staining for cultured DRG neurons. Results: Major findings on the effects of SH extract treatment on axonal regeneration are summarized as follows. 1. SH-mediated enhancement in axonal regeneration was identified by immuno- fluorescence straining of NF-200 protein and retrograde tracing of DiI-labeled axons. 2. Axonal GAP-43 protein levels were upregulated by SH not only in the injured axons but also in the DRG sensory neurons corresponding to sciatic sensory axons. 3. Phospho-Erk1/2 protein levels were increased in both injured axonal area and DRG sensory neurons by SH. Phospho-Erk1/2 was also found in non-neuronal cells in the injured axons. 4. SH elevated levels of Cdc2 protein produced in Schwann cells in the distal portions of injured sciatic nerves. 5. The neurite outgrowth of DRG sensory neurons in culture was augmented by SH, and these changes were positively associated with GAP-43 production levels in the DRG neurons. Conclusions: These data suggest that SH extract improves the regenerative responses of injured peripheral neurons, and thus may be useful for understanding molecular basis for the development of therapeutic strategies.

Expression of vesicular glutamate transporter in transient receptor potential vanilloid 1-positive neurons in the rat trigeminal ganglion

  • Han, Hye Min;Cho, Yi Sul;Bae, Yong Chul
    • International Journal of Oral Biology
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    • 제46권3호
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    • pp.119-126
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    • 2021
  • Activation of transient receptor potential vanilloid 1 (TRPV1), a calcium permeable channel expressed in primary sensory neurons, induces the release of glutamate from their central and peripheral afferents during normal acute and pathological pain. However, little information is available regarding the glutamate release mechanism associated with TRPV1 activation in primary sensory neurons. To address this issue, we investigated the expression of vesicular glutamate transporter (VGLUT) in TRPV1-immunopositive (+) neurons in the rat trigeminal ganglion (TG) under normal and complete Freund's adjuvant (CFA)-induced inflammatory pain conditions using behavioral testing as well as double immunofluorescence staining with antisera against TRPV1 and VGLUT1 or VGLUT2. TRPV1 was primarily expressed in small and medium-sized TG neurons. TRPV1+ neurons constituted approximately 27% of all TG neurons. Among all TRPV1+ neurons, the proportion of TRPV1+ neurons coexpressing VGLUT1 (VGLUT1+/TRPV1+ neurons) and VGLUT2 (VGLUT2+/TRPV1+ neurons) was 0.4% ± 0.2% and 22.4% ± 2.8%, respectively. The proportion of TRPV1+ and VGLUT2+ neurons was higher in the CFA group than in the control group (TRPV1+ neurons: 31.5% ± 2.5% vs. 26.5% ± 1.2%, VGLUT2+ neurons: 31.8% ± 1.1% vs. 24.6% ± 1.5%, p < 0.05), whereas the proportion of VGLUT1+, VGLUT1+/TRPV1+, and VGLUT2+/TRPV1+ neurons did not differ significantly between the CFA and control groups. These findings together suggest that VGLUT2, a major isoform of VGLUTs, is involved in TRPV1 activation-associated glutamate release during normal acute and inflammatory pain.

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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자궁과 삼음교에서 투사하는 충추신경계내 신경원의 표지영역에 관한 연구 (Central Localization of Neurons Projecting to the Uterus and Sanyinjiao(Sp6))

  • 이창현;강윤석;이광규;이상룡;육상원
    • 대한한의학회지
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    • 제22권2호
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    • pp.31-40
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    • 2001
  • This experimental studies was to investigate location of labeled neurons in CNS following injection of pseudorabies virus(PRV), Bartha strain, into the uterus and Sanyinjiao(Sp6) of rats. After survival times of 4-5 days following the injection of PRV, the rats were perfused, and their brain and spinal cord were frozen sectioned($30\mu\textrm{m}$). These sections were stained by PRV immunohistochemical staining methods, and observed with light microscope. The results were as follows: 1. In the spinal cord, overlap areas of PRV labeled neurons projecting to uterus and Sp6 were observed in lamina VII, IX and X areas of cervical segments. In thoracic segments, overlap areas were observed in lamina IV, VII, X and intermediolateral n.. In lumbar segments, overlap area of PRV labeled neurons were observed in lamina I, V-VII, IX, X and intermediolateral n.. In sacral segments, overlap areas of PRY labeled neurons were observed in lamina N, V, VII, X and sacral parasympathetic n.. 2. In the brain, overlap areas of PR V labeled neurons projecting to the uterus and Sp6 were observed in lateral paragigantocellular n., rostroventrolateral reticular n., raphe obscurus n., raphe pallidus n., raphe magnus n., locus coeruleus n., Barrington's n., A5 cell group, central gray n., paraventricular hypothalamic n. and arcuate n. This results suggest that overlap areas of PRV labeled neurons of the spinal cord projecting to the uterus and Sp6 might be the first-order neurons related to the viscera-somatic sensory and sympathetic preganglionic neurons. PRV labeled neurons of the brain may be the second and third-order neurons response to the movement of smooth muscle of uterus. These PRV labeled neurons may be central autonomic center related to the integration and modulation of reflex control linked to the sensory and motor system monitoring the internal environment. These overlap areas of spinal cord and brainmay be related to autonomic centers related to regulation of uterus.

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Functional Characteristics of Lumbar Spinal Neurons Projecting to Midbrain Area in Rats

  • Park, Sah-Hoon;Kim, Geon
    • The Korean Journal of Physiology
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    • 제28권2호
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    • pp.113-122
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    • 1994
  • The present study was carried out to characterize the functional properties of spinomesencephalic tract (SMT) neurons in the lumbar spinal cord of urethane anesthetized rats. Extracellular single unit recordings were made from neurons antidromically activated by stimulation of the midbrain area, including the deep layers of superior colliculus, periaqueductal gray and midbrain reticular formation. Recording sites were located in laminae I-VII of spinal cord segments of L2-L5. Receptive field properties and responses to calibrated mechanical stimulation were studied in 78 SMT cells. Mean conduction velocity of SMT neurons was $19.1{\pm}1.04\;m/sec$. SMT units were classified according to their response profiles into four groups: wide dynamic range (58%), deep/tap (23%), high threshold (9%) and low threshold (3%). A simple excitatory receptive field was found for most SMT neurons recorded in superficial dorsal horn (SDH). Large complex inhibitory and/or excitatory receptive fields were found for cells in lateral reticulated area which usually showed long after-discharge. Most of SMT cells received inputs from $A{\delta}$ and C afferent fiber types. These results suggest that sensory neurons in the rat SMT may have different functional roles according to their location in the spinal cord in integrating and processing sensory inputs including noxious mechanical stimuli.

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Red ginseng extract blocks histamine-dependent itch by inhibition of H1R/TRPV1 pathway in sensory neurons

  • Jang, Yongwoo;Lee, Wook-Joo;Hong, Gyu-Sang;Shim, Won-Sik
    • Journal of Ginseng Research
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    • 제39권3호
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    • pp.257-264
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    • 2015
  • Background: Korean Red Ginseng-a steamed root of Panax ginseng Meyer-has long been used as a traditional medicine in Asian countries. Its antipruritic effect was recently found, but no molecular mechanisms were revealed. Thus, the current study focused on determining the underlying molecular mechanism of Korean Red Ginseng extract (RGE) against histamine-induced itch at the peripheral sensory neuronal level. Methods: To examine the antipruritic effect of RGE, we performed in vivo scratching behavior test in mice, as well as in vitro calcium imaging and whole-cell patch clamp experiments to elucidate underlying molecular mechanisms. Results: The results of our in vivo study confirmed that RGE indeed has an antipruritic effect on histamine-induced scratching in mice. In addition, RGE showed a significant inhibitory effect on histamine-induced responses in primary cultures of mouse dorsal root ganglia, suggesting that RGE has a direct inhibitory effect on sensory neuronal level. Results of further experiments showed that RGE inhibits histamine-induced responses on cells expressing both histamine receptor subtype 1 and TRPV1 ion channel, indicating that RGE blocks the histamine receptor type 1/TRPV1 pathway in sensory neurons, which is responsible for histamine-dependent itch sensation. Conclusion: The current study found for the first time that RGE effectively blocks histamine-induced itch in peripheral sensory neurons. We believe that the current results will provide an insight on itch transmission and will be helpful in understanding how RGE exerts its antipruritic effects.

Nimodipine as a Potential Pharmacological Tool for Characterizing R-Type Calcium Currents

  • Oh, Seog-Bae
    • The Korean Journal of Physiology and Pharmacology
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    • 제5권6호
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    • pp.511-519
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    • 2001
  • Nimopidine, one of dihydropyridine derivatives, has been widely used to pharmacologically identify L-type Ca currents. In this study, it was tested if nimodipine is a selective blocker for L-type Ca currents in sensory neurons and heterologous system. In mouse dorsal root ganglion neurons (DRG), low concentrations of nimodipine $(<10\;{\mu}M),$ mainly targeting L-type Ca currents, blocked high-voltage-activated calcium channel currents by ${\sim}38%.$ Interestingly, high concentrations of nimodipine $(>10\;{\mu}M)$ further reduced the 'residual' currents in DRG neurons from ${\alpha}_{1E}$ knock-out mice, after blocking L-, N- and P/Q-type Ca currents with $10\;{\mu}M$ nimodipine, $1\;{\mu}M\;{\omega}-conotoxin$ GVIA and 200 nM ${\omega-agatoxin$ IVA, indicating inhibitory effects of nimodipine on R-type Ca currents. Nimodipine $(>10\;{\mu}M)$ also produced the inhibition of both low-voltage-activated calcium channel currents in DRG neurons and ${\alpha}_{1B}\;and\;{\alpha}_{1E}$ subunit based Ca channel currents in heterologous system. These results suggest that higher nimodipine $(>10\;{\mu}M)$ is not necessarily selective for L-type Ca currents. While care should be taken in using nimodipine for pharmacologically defining L-type Ca currents from native macroscopic Ca currents, nimodipine $(>10\;{\mu}M)$ could be a useful pharmacological tool for characterizing R-type Ca currents when combined with toxins blocking other types of Ca channels.

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Mechanosensitive Ion Channels in Sensory Neurons

  • Cho HaWon;Koo JaeYeon;Kim SangSeong;Shin JiEun;Jwang SunWook;Lee SoonYoul;Oh Uhtaek
    • 대한약학회:학술대회논문집
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    • 대한약학회 2001년도 Proceedings of International Convention of the Pharmaceutical Society of Korea
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    • pp.190.1-190.1
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    • 2001
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