• 제목/요약/키워드: Korean slow fashion

검색결과 32건 처리시간 0.016초

장수허리노린재(Anoplocnemis dallasi Kiritschenko)의 成長分析 (An Analytical Study on the Growth of Anoplocnemis dallasi Kiritschenko)

  • 박상옥;이창언
    • 한국동물학회지
    • /
    • 제14권3호
    • /
    • pp.139-158
    • /
    • 1971
  • 장수허리노린재(Anoplocnemis dallasi Kiritschenko)의 第1齡 幼蟲(50個體)부터 成蟲까지(各 70個體씩)에서 얻은 實測値를 定式化하여 成長 및 相對成長을 分析 觀察한 結果 다음과 같은 結論을 얻었다. $\circled1$ 成長量 : 口吻이 가장 緩慢한 直線狀 增加를 하고 그 外는 모두 急激한 抛物線狀 增加를 나타내며 體長, 後脚, 中脚, 前脚, 觸角, 前胸背板의 幅, 口吻의 順으로 體長이 가장 急激하게 增加한다. $\circled2$ 成長比 : 口吻의 增加率 3.054倍가 가장 적으며 直線狀 增加를 나타내고 그 外는 모두 抛物線狀 增加를 보이며 前胸背板의 幅의 增加率 8.186倍가 가장 크다. $\circled3$ 各 齡別成長比 : 가장 큰 成長比는 若齡 幼蟲쪽에 있으며 가장 적은 成長比는 老齡 幼蟲쪽에 있다. $\circled4$ 成長率 : 觸角의 그것이 減少되었으며 그 外는 모두 增加되었다. $\circled5$ 比成長率 : 觸角이 가장 急하게 減少되었으며 前脚, 口吻, 後脚, 中脚의 順으로 緩慢해졌고 前胸背板의 幅과 體長은 上昇되다가 減少되었다. $\circled6$ 相對成長係數($\alpha$)는 위의 모든 部位에 對해서 前胸背板의 幅의 그것이 항상 가장 强한 優成長이었고 口吻은 가장 弱한 劣成長이었다. $\circled7$ 對 體長, 對前胸背板의 幅, 對觸角, 對口吻, 對前脚, 對中脚, 對後脚 相對成長에서 各 部分의 相對成長係數($\alpha$)는 同一한 樣式(順序)을 나타낸다. $\circled8$ 相對成長係數 $\alpha$가 增加하면 相對成長 初量 b가 減少하는 傾向을 나타내며 그 逆도 成立한다. $\circled9$ 劣成長일 境遇는 成長中心이 若齡基에 있고 優成長일 境遇는 老齡基에 있다.

  • PDF

X-선(線) 조사(照射)가 Ehrlich 암세포(癌細胞)의 용적(容積), 단백양(蛋白量) 및 수종(數種) Sulfhydryl 기(基)에 미치는 영향(影響)에 관(關)하여 (Effect of X-Irradiation on the Levels of some Sulfhydryl Groups, Protein and Cell Volume of Ehrlich Ascites Tumour Cells)

  • 유춘식;주영은
    • The Korean Journal of Physiology
    • /
    • 제3권2호
    • /
    • pp.9-16
    • /
    • 1969
  • It is well known that a number of -SH and -SS containing substances afford a certain measure of protection against radiation effects in many biological systems, and it is conceivable that inherent -SH levels in Ehrlich ascites tumour (ELD)cells may be of decisive improtance with respect to the development of cellular radiation injury. So far, little effort has been directed to elucidate the changes in levels of different -SH and -SS groups in ELD cells when the tumour-bearing whole animal was subjected to the sublethal dose of X-irradiation. The present study was designed to bring some lights in the possible changes of and relationship between various sulfhydryl levels, such as P-SH, NP-SH and NP-SS, as well as the content of protein and cell volume of ELD cells, after subjecting the ELD mice to 1,200 r of X-irradiation. The animals used in this experiment were all mixed bred mice of $20{\sim}25\;gm$ in body weight (approximately 2 months old) irrespective of sex. 12 mice in one experiment were inoculated intraperitoneally with 0.2 ml of ascites tumour cells $(2{\times}10^6\;cells)$, and on the 7th day of the tumour growth, they were X-irradiated with 1,200 r, using the conventional X-ray machine under the following conditions: 200 Kv at 15 mA, 0.5 mm Cu filter, target-skin distance: 50 cm. Radiation dose was measured with the the Philip integrating dosimeter. At 24, 36, 48 and 60 hours after the X-irradiation, the mice were killed by cervical dislocation, and the tumours were taken out. Freshly withdrawn ascites tumours were placed in ice, and immediately the cell concentration was measured with the Coulter Cell Counter (Model B), and the hematocrit of the tumour cells were also determined. Cell volume was thus calculated by the cell concentration and hematocrit value. P-SH content of ELD cells was measured potentiometrically according to the method of Calcutt & Doxey, and NP-SH and NP-SS contents were measured spectrophotometrically by the method described by Ellman. Protein content of ELD cells was determined with the Folin phenol reagent by Lowry et al. Altogether, 48 experimental mice were used, and 12 mice with the only exception of X-irradiation were used as the control. Results obtained indicate that the contents of all the cellular sulfhydryl groups as well as cell volume and protein content of the ELD cells increase significantly as time progresses after the sub-lethal X-ray dose of 1,200 r was given and that all the increase is in a lineal fashion. The regression lines of the relative values, (i. e., taking each control value as 1) of all the values obtained, and the regression lines of cell volume, protein and NP-SH are identical, whereas those of NP-SS and P-SH appear to be widely seperated. However, the difference of those two lines (NP-SS & P-SH) were found to be not significant statistically (p>0.05). Therefore, it can be concluded from the above results that all the values examined increase in a lineal fashion with no statistically significant difference among them. Also, with the radiation dose of 1,200 r, the ELD cell becomes enlarged and swollen progressively up to 60 hours post-irradiation and it becomes more than two times of the original normal size at 60 hours after the irradiation, and up to this stage, it seems apparent that the cell division has been slow due to the X-irradiation applied in this experiment. It is well understandable that the contents of NP-SH, NP-SS, P-SH and protein of the ELD cells increase in parallel with the increase of the cell volume by the X-ray does used, but it also seems interesting to note that all the cellular substances tested show no appreciable difference in the pattern of increase.

  • PDF