• Title/Summary/Keyword: axon

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개의 교핵내 GABA성 신경세포 성분의 미세구조적 위치관찰 (Ultrastructural Localization of GABAergic Neuronal Components in the Dog Basilar Pons)

  • 이현숙
    • Applied Microscopy
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    • 제25권1호
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    • pp.65-74
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    • 1995
  • 개의 교핵내의 GABA를 함유한 억제성 신경세포의 연접부위를 전자현미경을 이용한 면역세포화학적 방법으로 조사하였다. 반응산물은 신경원의 핵부위나 가지돌기에서 관찰되었으며, 반응산물을 포함하고 있지 않은 신경종말이 이들과 비대칭형 연접을 형성하였다. 그 외에도 많은 수의 GABA성 신경종말이 관찰되었으며, 이들은 반응산물을 함유하지 않은 가지돌기와 대칭형 또는 비대칭형 연접을 형성하였다. 한편 축삭돌기-축삭돌기 연접에서는 연접후 유축사돌기 (axon-like processes)가 GABA-양성이었다. 이와 같은 관찰은 개의 교핵에 존재하는 억제성 개재신경원이 여러 수입계로부터의 정보를 통합하고, 이를 소뇌피질이나 소뇌핵에 전달함으로써, 대뇌-교핵-소뇌계의 신경경로에서 조절기능을 담당함을 뒷받침하는 것이다.

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Seasonal acclimation in sudomotor function evaluated by QSART in healthy humans

  • Shin, Young Oh;Lee, Jeong-Beom;Kim, Jeong-Ho
    • The Korean Journal of Physiology and Pharmacology
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    • 제20권5호
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    • pp.499-505
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    • 2016
  • The quantitative sudomotor axon reflex testing (QSART) is a classic test of routine postganglionic sudomotor function. We investigated sudomotor function by QSART after summer (July 2012) and winter (January 2013) seasonal acclimation (SA) in the Republic of Korea. QSART with acetylcholine (ACh) iontophoresis were performed to determine directly activated (DIR) and axon reflex-mediated (AXR1, 2) sweating rate. Onset time of axon reflex, activated sweat gland density (ASGD), activated sweat gland output (ASGO), tympanic and skin temperatures ($T_{ty}$, $T_{sk}$), basal metabolic rate (BMR), and evaporative loss volume changes were measured. Tympanic and mean body temperature (${\bar{T}}_b$; calculated from $T_{ty}$, $T_{sk}$) were significantly lower after summer-SA than that of winter-SA. Sweat onset time was delayed during winter-SA compared to that after summer-SA. BMR, AXR(1), AXR(2), and DIR sweat rates, ASGD and ASGO, and evaporative loss volume were significantly diminished after winter-SA relative to after summer-SA. In conclusion, changes in sweating activity measured by QSART confirmed the involvement of the peripheral nervous system in variation of sudomotor activity in seasonal acclimation.

생체의 자극 전도속도에 관한 연구 (A Study on the Propogation Velocity of Biological Action Potential)

  • 최규식;권용찬
    • 한국항행학회논문지
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    • 제14권6호
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    • pp.1002-1009
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    • 2010
  • 본 논문에서는 축삭의 전도 현상을 분석하기 위해서 축삭을 전기전도 모델로 만든 후 여기에 키르히호프의 전류법칙과 전압법칙을 적용한 등가회로를 구성하였다. 축삭의 미세거리 변화에 의한 전위의 거동을 분석하기 위하여 축삭의 각종 파라미터를 구하였다. 검토결과에 의하면 무수신경인 경우 직경을 미지수로 하여 인체의 파라미터를 이용하면 그 속도는 직경의 제곱근에 비례한다. 한편 유수신경인 경우는 그 속도가 직경에 직접적으로 비례한다. 미엘린이 없는 막과는 달리 미엘린껍질의 전도는 전압과 무관하므로 이러한 막 양단의 Hodgkin-Huxley 형 전도모델이 매우 정교하지는 않다.

Morphological Analysis of the Myelinated Parent Axons that Innervate Rat Upper Molar Pulps in the Trigeminal Ganglion

  • Paik, Sang Kyoo;Kim, Jong Ho;Kim, Tae Heon;Bae, Yong Chul
    • International Journal of Oral Biology
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    • 제40권4호
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    • pp.175-182
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    • 2015
  • Previous studies suggested that myelinated axons innervating rat molar pulps undergo morphological changes in their peripheral course. However, little information is available on the morphological feature of the parent axons at the site of origin. We therefore investigated the size of the myelinated parent axons and their morphological features at the proximal sensory root of the trigeminal ganglion by horseradish peroxidase (HRP) injection into rat upper molar pulps and subsequent light and electron microscopy. A total of 248 HRP-labeled myelinated axons investigated were highly variable in the size. Fiber area, fiber diameter, axon area (axoplasm area), axon diameter (axoplasm diameter), and myelin thickness were $11.32{\pm}8.36{\mu}m^2(0.80{\sim}53.17{\mu}m^2)$, $3.99{\pm}1.53{\mu}m(1.08{\sim}9.26{\mu}m)$, $8.70{\pm}6.30{\mu}m^2(0.70{\sim}41.83{\mu}m^2)$, $3.13{\pm}1.13{\mu}m(0.94{\sim}7.20{\mu}m)$ and $0.43{\pm}0.23{\mu}m(0.07{\sim}1.06{\mu}m)$, respectively. The g-ratio (axon diameter / fiber diameter) of the labeled axons was $0.79{\pm}0.05$ (0.61~0.91). Axon diameter was highly correlated with myelin thickness (correlation coefficients, r=0.83) but little correlated with g-ratio (r=-0.33) of individual myelinated parent axons. These results indicate that myelin thickness of the myelinated parent axons innervating rat molar pulps increase with increasing axon diameter, thus maintaining a constant g-ratio.

Heat Acclimatization in Hot Summer for Ten Weeks Suppress the Sensitivity of Sweating in Response to Iontophoretically-administered Acetylcholine

  • Lee, Jeong-Beom
    • The Korean Journal of Physiology and Pharmacology
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    • 제12권6호
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    • pp.349-355
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    • 2008
  • To determine the peripheral mechanisms involved in thermal sweating during the hot summers in July before acclimatization and after acclimatization in September, we evaluated the sweating response of healthy subjects (n=10) to acetylcholine (ACh), a primary neurotransmitter involved in peripheral sudomotor sensitivity. The quantitative sudomotor axon reflex test (QSART) measures sympathetic C fiber function after iontophoresed ACh evokes a measurable reliable sweat response. The QSART, at 2 mA for 5 min with 10% ACh, was applied to determine the directly activated (DIR) and axon reflex-mediated (AXR) sweating responses during ACh iontophoresis. The AXR sweat onset-time by the axon reflex was $1.50{\pm}0.32$ min and $1.84{\pm}0.46$ min before acclimatization in July and after acclimatization in September, respectively (p<0.01). The sweat volume of the AXR(l) [during 5 min 10% iontophoresis] by the axon reflex was $1.45{\pm}0.53\;mg/cm^2$ and $0.98{\pm}0.24\;mg/cm^2$ before acclimatization in July and after acclimatization in September, respectively (p<0.001). The sweat volume of the AXR(2) [during 5 min post-iontophoresis] by the axon reflex was $2.06{\pm}0.24\;mg/cm^2$ and $1.39{\pm}0.32\;mg/cm^2$ before and after acclimatization in July and September, respectively (p<0.001). The sweat volume of the DIR was $5.88{\pm}1.33\;mg/cm^2$ and $4.98{\pm}0.94\;mg/cm^2$ before and after acclimatization in July and September, respectively (p<0.01). These findings suggest that lower peripheral sudomotor responses of the ACh receptors are indicative of a blunted sympathetic nerve response to ACh during exposure to hot summer weather conditions.

Economical Sweating Function in Africans: Quantitative Sudomotor Axon Reflex Test

  • Lee, Jeong-Beom;Bae, Jun-Sang;Choi, Jeong-Hwan;Ham, Joo-Hyun;Min, Young-Ki;Yang, Hun-Mo;Kazuhiro, Shimizu;Matsumoto, Takaaki
    • The Korean Journal of Physiology and Pharmacology
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    • 제8권1호
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    • pp.21-25
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    • 2004
  • People in tropics have the ability to tolerate heat by residential permanence in the tropics. Previously, we have shown that African and Thai subjects who lived for whole their lives in only their respective countries sweat less under hot conditions than South Koreans who also lived whole their lives in Korea. The difference in sweating responses was attributed to the dissimilar central and peripheral sweating mechanisms operating in people from both groups. In the present study, acetylcholine (ACh), the primary transmitter for the sudomotor functions, was iontophoretically administered to South Koreans and Africans to determine the characteristic sudorific responses of their acclimatized biologic make-up to their respective environments. Using quantitative sudomotor axon reflex test (QSART), direct (DIR) and axon reflex (AXR) responses were evaluated. The findings revealed that the sweat onset-time among South Koreans was 0.91 min earlier than among Africans (P<0.01). The axon reflex sweat volume of nicotine receptor activity AXR(1) and sweat volume of muscarinic receptor activity DIR(2) among South Koreans were 79% and 53% greater (P<0.01), respectively. These results indicate that the reduced thermal sweating among Africans is at least in part attributed to the diminished sensitivity of sweat glands to ACh.

Development and Degeneration of Retinal Ganglion Cell Axons in Xenopus tropicalis

  • Choi, Boyoon;Kim, Hyeyoung;Jang, Jungim;Park, Sihyeon;Jung, Hosung
    • Molecules and Cells
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    • 제45권11호
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    • pp.846-854
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    • 2022
  • Neurons make long-distance connections via their axons, and the accuracy and stability of these connections are crucial for brain function. Research using various animal models showed that the molecular and cellular mechanisms underlying the assembly and maintenance of neuronal circuitry are highly conserved in vertebrates. Therefore, to gain a deeper understanding of brain development and maintenance, an efficient vertebrate model is required, where the axons of a defined neuronal cell type can be genetically manipulated and selectively visualized in vivo. Placental mammals pose an experimental challenge, as time-consuming breeding of genetically modified animals is required due to their in utero development. Xenopus laevis, the most commonly used amphibian model, offers comparative advantages, since their embryos ex utero during which embryological manipulations can be performed. However, the tetraploidy of the X. laevis genome makes them not ideal for genetic studies. Here, we use Xenopus tropicalis, a diploid amphibian species, to visualize axonal pathfinding and degeneration of a single central nervous system neuronal cell type, the retinal ganglion cell (RGC). First, we show that RGC axons follow the developmental trajectory previously described in X. laevis with a slightly different timeline. Second, we demonstrate that co-electroporation of DNA and/or oligonucleotides enables the visualization of gene function-altered RGC axons in an intact brain. Finally, using this method, we show that the axon-autonomous, Sarm1-dependent axon destruction program operates in X. tropicalis. Taken together, the present study demonstrates that the visual system of X. tropicalis is a highly efficient model to identify new molecular mechanisms underlying axon guidance and survival.

Quantitative sudomotor axon reflex test (QSART) as a diagnostic tool of small fiber neuropathy

  • Suh, Bum Chun
    • Annals of Clinical Neurophysiology
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    • 제24권1호
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    • pp.1-6
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    • 2022
  • Small fiber neuropathy is a painful neuropathy that cannot be assessed using nerve conduction studies. A skin biopsy and quantitative sensory testing (QST) are the gold standards for small fiber neuropathy diagnosis. However, a skin biopsy is invasive and commercially unavailable in Korea. QST is a method involving a thermal threshold, but its results can be affected by cognition as well as lesions of the central nervous system. Quantitative sudomotor axon reflex test (QSART) is a quantitative method of assessing sweat glands innervated by small fibers. In this review, we assessed the utility of QSART in evaluating small fiber neuropathy.

AXON-TEK 화학 세정 공법

  • 김석준
    • 기술경영경제학회:학술대회논문집
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    • 기술경영경제학회 1992년도 제2회 학술발표회
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    • pp.195-215
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    • 1992
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시간 경과 신경계 영상 시퀀스에서의 축삭돌기 추출 기법 (An Automated Technique for Detecting Axon Structure in Time-Lapse Neural Image Sequence)

  • 김낙현
    • 한국지능시스템학회논문지
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    • 제24권3호
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    • pp.251-258
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    • 2014
  • 신경계 영상 해석의 목적은 움직이는 미토콘드리아들을 추적하여 그 속도와 이동 방향 등을 추출하는 것인데, 미토콘드리아의 움직임은 축삭돌기 상에서만 이루어지는 특징이 있다. 축삭돌기 추출 작업은 일반적으로 수작업을 동반한 처리 과정을 통해 이루어지고 있는데, 본 논문에서는 자동화된 축삭돌기 추출 기법을 제안한다. 우선 전체 비디오 프레임 영상에서 각 픽셀의 최대값을 취해 통합영상을 구한다. 통합 영상에서 축삭돌기는 능선 구조를 보이는데, 능선을 검출하기 위해 본 연구에서는 능선 강화 필터링과 피크 검출 과정을 적용하였다. 또한 검출된 능선점에서 나타난 오류를 제거하기 위해 대해 각 능선점 주위에서 신뢰도 함수를 사용한 필터링을 적용한다. 실제 영상을 이용한 실험을 통해 제안된 방식은 높은 검출률과 정확도를 나타내는 것을 확인하였다.