• 제목/요약/키워드: fetus

검색결과 622건 처리시간 0.03초

한국재래산양(Capra hircus)의 태아 및 신생아의 직장 발달에 관한 형태학적 연구 (Morphological study on the development of the rectum in fetuses and neonates of Korean native goat (Capra hircus))

  • 김종섭;조규현;곽수동;원청길
    • 대한수의학회지
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    • 제42권4호
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    • pp.443-449
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    • 2002
  • The morphological studies on the rectal development in the 60-, 90- and 120-day-old fetuses and neonates of Korean native goats were investigated by light microscopy and scanning electron microscopy. The rectal wall appeared to be differentiated into the epithelium, lamina propria, tunica muscularis and serosa in 60-day-old fetus. The rectal epithelia were stratified in some areas and simple columnar in others at 60- and 90-day-old fetuses but was only observed simple columnar epithelium at 120-day-old fetus. The goblet cells and the intestinal glands appeared in the rectal mucosa at 90-day-old fetus and gradually increase in number during gestation period. The rectal villi appeared at 60-day-old fetus and increased in length and width until 90-day-old fetus but the villi appeared to be shorter and degenerated after 120-day-old fetus. Only the rudiment trace of the villi remained at birth. The tunica muscularis of the rectum were continuously developed during gestation period. The inner circular and outer longitudinal muscle layers of rectum were observed in the 120-day-old fetuses. Under scanning electron microsoopy, the rectal villi appeared at 60-day-old fetus. The pentagonal/hexagonal microridges and numerous microvilli were observed on the luminal surface of rectal wall. Low and thumb-like rectal villi were developed at 90-day-old fetus. The rectal villi became degenerated after 120-day-old fetus. Only the rudiment of villi was remained at birth. Many circular folds were well developed. Opening portions of intestinal glands appeared like slot.

출생 전 생명에 대한 헌법적 고찰 - 태아 및 배아의 생명권과 그 제한을 중심으로 - (A Constitutional Study on the Unborn Human Life : Focusing on the Right to Life of the Fetus and the Embryo)

  • 김은애
    • 의료법학
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    • 제10권1호
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    • pp.39-75
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    • 2009
  • The development of the biomedical science and technology has extended an argument about a status in constitutional law of unborn human life and a protection of the potential human life to that of an embryo and a gamete beyond a fetus. This argument has been focused on whether we should provide unborn or potential human life with human dignity and the right to life that are guaranteed by the constitutional law altogether or separately. If the right to life is given to unborn or potential human life, on what grounds can we restrict this right. Those who argue for the unity of the right to life with human dignity and the inseparability of those two claims that the right to life in itself should be guaranteed absolutely. According to the constitutional law, however, any constitutional right of the human person within the protection of essential part of the right can be compared with each other and restricted with some valid reasons from the legal perspective. This measure is unavoidable in reality because one right can come into conflict with another right frequently. Since fetus and embryo are in a process of developing into the human person, it is difficult to think that they are the same with the human person. For that reason, it is hard to consider that the right to life of fetus or embryo is the same with that of the human person. However, since a fetus has a special status as a potential human person, and an embryo also has a special value as a potential fetus upon an implantation, the right to life of fetus or embryo should be judged differently according to the stage of their development. A study on a constitutional status and protection of a fetus and an embryo is essential because unborn or potential human life is the origin of human person. Therefore, we have to make much account of their right to life and seek the legal respect for their inherent value.

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태담과 촉각 자극의 모-태아 상호작용 증진 프로그램이 모아 상호작용에 미치는 효과 (The Effect of Mother-fetus Interaction Promotion Program of Talking and Tactual Stimulation on Mother-fetus Interaction and Mother-infant play Interaction)

  • 김정순
    • 부모자녀건강학회지
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    • 제5권2호
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    • pp.253-276
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    • 2002
  • Mother and infant relationship has a great influence on child's developments. Expecially, mother and infant relationship is affected by mother and infant interactions during one year after birth and an omen of mother-infant interaction after birth is mother-fetus interaction. This study was conducted to develop mother-fetus interaction promotion program of talking and tactual stimulation aimed at enhancing sensitivity of primiparas and to evaluate the effect of the nursing intervention program on mother-fetus interaction and mother-infant play interaction. Non-eguivalent control group posttest design was used, and Blumer's symbolic interaction theory and Barnard's mother-infant interaction model was used a conceptual framework of this study. Fifty primiparas and infant(26 mother-infant dyads for intervention group and 24 dyads for control group) were recruited from three general hospital and an OBGY clinic located in Kwang Nung city. Data was collected from January 30th to December 20th in 2001. For the intervention group, programed education which focused on mother-fetus interaction in the 1st trimester. Telephone counselling was provided with interval of two weeks. For two groups, home visiting for data collection of mother- fetus interaction was conducted at 36 to 38 weeks of gestational age. And mother-infant play interactions were assessed at 4 to 6 weeks after birth using videotapes. Play situations were videotaped and two trained observers analyzed the tapes. The data were analyzed using chi-square test and Fisher's Exact Test to test the equivalence of two groups, and the effect of intervention progrom was determined with t-test and Wilcoxon Rank Sum test. The results were as follows: 1. The significant difference was found in mother-fetus interaction between two groups(t=2.085, P=0.0425). It indicated that intervention progrom was effective in improving mother-fetus interaction. 2. The significant difference was found in mother-infant play interaction between two groups(W=347.5, P=0.0001). In subscale analysis, three subscales showed significant differences between the groups: interactional behavior of mother(t=5.921, P=0.0001), interactional behavior of infant(t=5.736, P= 0.0000), and synchronic interactional behavior of mother and infant(t=7.940, P= 0.0000). In conclusion, this study has shown that the applied nursing intervention aimed at enhancing sensitivity of primiparas promoted mother-fetus interaction and mother-infant play interaction. Therefore, this study suggests that this nursing interventions to increase maternal sensitivity to the fetus's movement should be broadly applied to primiparas, which can be beneficial for formation of mother - infant relationship, and for promotion the social, affective, and cognitive developments of their children.

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한국사람태아 내망막층 발생에 관한 미세구조적 연구 (An Ultrastructural Study on the Development of Inner Retinal Layer in Korean Human Fetuses)

  • 김백윤;양형모;윤재룡
    • Applied Microscopy
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    • 제30권2호
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    • pp.121-139
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    • 2000
  • 망막 발육에 관한 연구는 광수용세포와 외망상층에 대해서 집중적으로 연구되어 왔고 내망상층의 연구는 초기 발육에 관한 연구가 보고된 바 있다. 본 연구는 태생 초기부터 말기까지의 인태아를 대상으로 내핵층의 신경모세포의 분화, 발육과 내망상층에서 신경연접 형성 과정을 전자현미경으로 관찰하여 다음과 같은 결과를 얻었다. 좌고 30mm(태령 9주)때 망막은 외신경모세포와 내신경모세포로 분화, 발육하였고 외신경모세포의 분열은 90mm(태령 14주)때까지 진행되었다. Chievitz층은 30mm때, 내망상층은 50mm(태령 11주)때, 외망상층은 150 mm때 각각 형성되었다. 신경절세포는 자유리보솜이 세포 전역에 분포하고 있었고 조면내형질망, 골지장치, 미세소관 및 농소체를 함유하고 있었다. 30mm때 뮐러세포는 신경절세포의 축삭사이로 돌기를 내고 있었고 초자체쪽에서 내경계막을 형성하였으며 90mm때는 뮐러세포의 돌기는 방사상으로 배열하고 있으며 다량의 활면내형질망을 함유하고 있었다. 신경연접은 50mm때 연접막비후는 존재하면서 연접소포를 내포하고 있지 않은 연접이 관찰되었고, 연접소포를 내포하고 있는 보통연접이 90mm때, 리본연접은 150mm때 각각 출현하였다. 260mm(태령 30주)때 연접소포가 없는 연접, 보통연접 및 리본연접 등 성인에서 출현하는 세 가지 연접이 모두 관찰되었다.

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임신일령에 따른 생쥐 태아 뇌조직의 단백질 발현 양상 분석 (Analysis of brain protein expression in developing mouse fetus)

  • 한영훈;김홍래;조운비;우제석;진동일
    • 농업과학연구
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    • 제38권1호
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    • pp.65-70
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    • 2011
  • Development of mouse fetus brains can be defined morphologically and functionally by three developmental stages, embryo day (ED) 16, postnatal stage one week and eight weeks. These defined stages of brain development may be closely associated with differential gene expression rates due to limited cellular resources such as energy, space, and free water. Complex patterns of expressed genes and proteins during brain development suggests the changes in relative concentrations of proteins rather than the increase in numbers of new gene products. This study was designed to evaluate early protein expression pattern in mouse fetus brain. The mouse brain proteome of fetus at ED 15.5, and 19.5 was obtained using 2-dimensional gel electrophoresis (DE). Analysis of the 2-DE gels in pH 3-10 range revealed the presence of 15 differentially expressed spots, of which 11 spots were identified to be known proteins following MALDI-TOF analysis; 3 spots were up-regulated and 8 spots were down-regulated in the mouse fetus brain at ED 15.5. UP-regulated proteins were identified as MCG18238, isoform M2 of pyruvate kinase isozymes M1/M2, isoform 2 of heterogeneous nuclear ribonucleoprotein K, heterogeneous nuclear ribonucleoprotein H2, creatine kinase B-type, 40S ribosomal protein SA and hemoglobin subunit beta-H1. Down-regulated proteins were putative uncharacterized protein, lactoylglutathione lyase and secreted acidic cysteine rich glycoprotein. Our results revealed composite profiles of mouse fetus brain proteins related to mouse fetus development by 2-DE analysis implying possible roles of these proteins in neural differentiation.

인태아 척수 외측운동주의 발육에 관한 전자현미경적 연구 (Electron Microscopic Study on the Development of the Lateral Motor Column in the Spinal Cord of the Human Fetus)

  • 윤재룡;최태엽;남광일
    • Applied Microscopy
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    • 제26권3호
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    • pp.329-348
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    • 1996
  • The prenatal development of lateral motor columns in the lumbar spinal cord was studied by electron microscopy in human embryos and fetuses ranging from 9 mm to 260 mm crown-rump length ($5{\sim}30$ weeks of gestational age). At 9 mm embryo, the lateral motor column were developed from ventro-lateral projection into the marginal layer and composed of primitive neuroblasts. At 20 mm embryo the primitive motor neurons were packed closely together and could readly be distinguished from primitive glioblasts by a presence of large nuclei. The primitive multipolar neurons were observed in lateral motor column at 40 mm fetus. At 80 mm fetus multipolar neurons were characterized by their many dendrites and axons in the vicinity of motor neuron perikarya. At 260 mm fetus, the motor neurons were large and contained all intracytoplasmic structures in the cytoplasm which were also found in mature motor neuron in lateral motor column. The first axo-dendritic synapses found at 40 mm fetus and increased in number throughout fetal development. Axo-somatic synapses with spherical vesicles were first observed at 80 mm fetus. A few axo-somatic synapses were found at next prenatal stages. Axo-dendritic and axo-somatic synapses contained mixed populations of spherical and flattened vesicles by 120 mm fetus. These findings indicate that axo-dendritic synapses develop prior to axo-somatic synapses in the spinal cord during neurogenesis.

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마우스 태자의 골격 형성 (Skeleton formation of mouse fetus)

  • 김보라;오승현;윤여성;성제경
    • 대한수의학회지
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    • 제41권3호
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    • pp.293-298
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    • 2001
  • This study was conducted to observe the bone and cartilage formation of mouse fetuses. Mouse litters were sacrificed at pregnant 14th and 18th day and examined for gross skeletal formation using cartilage and bone staining. We identified well developed cartilage formation at the 14th pregnant day in mouse fetus. However mouse fetus at the 14th pregnant day did not show any part of bone formation. At 18th pregnant day, mouse fetus showed well developed body shape and bone and cartilage formation. This results will provide basic information for the evaluation of mouse malfromation and impairment of skeleton formation. Further study will be needed for exact explanation of bone formation from cartilage portion.

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임신기 부부의 태아 관련 스트레스에 영향을 미치는 변인 (The variables affecting married couples' fetus-related stress during pregnancy)

  • 강수경;박수경;정미라
    • 한국생활과학회지
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    • 제21권6호
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    • pp.1017-1028
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    • 2012
  • The purpose of this study was to evaluate the relationship between fetus-related pregnancy stress and temperament, parenting attitude, parent-fetal attachment, and marital quality. Respondents were 285 pregnant women and their spouses who participated in Pregnant Education Programs. Data was collected by means of questionnaire. The results are summarized as follows: The total fetus-related pregnancy stress level of pregnant couples demonstrated a higher relationship while parent-fetal attachment level demonstrated a very significant relationship. There were significant differences between spouses with regard to fetus-related pregnancy stress, parenting attitude, parent-fetal attachment, and marital quality.

인태아 상경신경절 발육에 관한 전자현미경적 연구 (Ultrastructural Study on Development of the Superior Cervical Ganglion of Human Fetuses)

  • 김대영;김백윤;윤재룡
    • Applied Microscopy
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    • 제28권2호
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    • pp.139-158
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    • 1998
  • The development of the superior cervical ganglion was studied by electron microscopic method in human fetuses ranging from 40 mm to 260 mm of crown-rump length (10 to 30 weeks of gestational age). At 40 mm fetus, the superior cervical ganglion was composed of clusters of undifferentiated cell, primitive neuroblast, primitive supporting cell, and unmyelinated fibers. At 70mm fetus, the neuroblasts and their processes were ensheated by the bodies or processes of satellite cells. The cytoplasm of the neuroblast contained rough endoplasmic reticulum, mitochondria, Golgi complex, Nissl bodies and dense-cored vesicles. As the neuroblasts grew and differentiated dense-cored vesicles moved away from perikaryal cytoplasm into developing processes. Synaptic contacts between the cholinergic axon and dendrites of postganglionic neuron and a few axosomatic synapses were first observed at 70 mm fetus. At 90 mm fetus the superior cervical ganglion consisted of neuroblasts, satellite cells, granule-containing cells, and unmyelinated nerve fibers. The ganglion cells increased somewhat in numbers and size by 150 mm fetus. Further differentiation resulted in the formation of young ganglion cells, whose cytoplasm was densely filled with cell organelles. During next prenatal stage up to 260 mm fetus, the cytoplasm of the ganglion cells contained except for large pigment granules, all intracytoplasmic structures which were also found in mature superior cervical ganglion. A great number of synaptic contact zones between the cholinergic preganglionic axon and the dendrites of the postganglionic neuron were observed and a few axosomatic synapses were also observed. Two morphological types of the granule-containing cells in the superior cervical ganglion were first identified at 90 mm fetus. Type I granule-containing cell occurred in solitary, whereas type II tended to appeared in clusters near the blood capillaries. Synaptic contacts were first found on the solitary granule-containing cell at 150 mm fetus. Synaptic contacts between the soma of type I granule-containing cells and preganglionic axon termials were observed. In addition, synaptic junctions between the processes of the granule- containing cells and dendrites of postganglionic neuron were also observed from 150 mm fetus onward. In conclusion, superior cervical ganglion cells and granule-containing cells arise from a common undifferentiated cell precursor of neural crest . The granule-containg cells exhibit a local modulatory feedback system in the superior cervical ganglion and nay serve as interneurons between the preganglionic and postganglionic cells.

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Difference in Methylmercury Exposure to Fetus and Breast-Feeding Offspring: a Mini-Review

  • Sakamoto, Mineshi;Machi, Kubota;Pan, Huan Sheng
    • 한국환경보건학회:학술대회논문집
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    • 한국환경보건학회 2005년도 국제학술대회
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    • pp.73-83
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    • 2005
  • Higher methylmercury (MeHg) accumulation and susceptibility to toxicity in the fetus than in the mother at parturition is well known. However, the difference in MeHg exposure to fetus and offspring throughout gestation and suckling is not well established. In the human, the effects of MeHg exposure on pregnant and breast-feeding women remain an important issue for elucidation, especially those of continuous uptake in high-fish-consumption populations. The purpose of this paper was to evaluate the difference in MeHg exposure to fetus and offspring throughout gestation and lactation using our recent animal and human studies data. In the animal study, adult female rats were given a diet containing 5 ${\mu}$g/g Hg (as MeHg) for 8 weeks. Then they were mated and subsequently given the same diet throughout gestation and suckling. On embryonic days 18, 20, 22 and at parturition, the concentrations of Hg in the brains of fetus were approximately 1.5-2.0 times higher than those in the mothers. However, during the suckling period Hg concentrations in the brain rapidly declined to about 1/10 of that during late pregnancy. Hg concentrations in blood also decreased rapidly after birth. In human study, Hg concentrations in red blood cells (RBCs-Hg) in 16 pairs of maternal and umbilical cord blood samples were compared at birth and 3 months of age after parturition. RBCs-Hg concentration in the umbilical cords was about 1.6 times higher than those in the mothers at parturition. However, all the infants showed declines in Hg concentrations throughout the breast-feeding period. The Hg concentration in RBCs-Hg at 3 months of age was about half that at birth. Both the animal and human studies indicated that MeHg exposure to the fetus might be especially high but it dramatically decreases during the suckling period. Therefore, close attention should be paid to the gestation rather than the breast-feeding period to avoid the risk of MeHg to human infants.

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