• 제목/요약/키워드: Hollow cylinder structure

검색결과 13건 처리시간 0.015초

오리와 거위의 정자완성과 정자에 관한 전자현미경적 연구 (Electron-Microscopic Studies on the Spermiogenesis and the Spermatozoa of the Drake and the Gander)

  • 배대식;김종욱
    • 한국가축번식학회지
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    • 제11권3호
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    • pp.206-217
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    • 1987
  • Testes from the drake and the gander have been examined by the electron microscopy in thin sections in order to examine the spermiogenesis and the structure of spermatozoa. The spermiogenesis can be divided into three stages: early spermatid, nuclear elongation, and matured spermatid. In the early spermatid of the drake, there are thread-like material in the nucleus, a prominent nuclear envelope around the nucleus, and big lumens in the cytoplasm. The shape of the gander's mitochondria in the early spermatid is slender compared to that of the drake, and the inner membrane of the mitochondria is thicker than the outer membrane. The distal centriole of the drake and the gander in the early spermatid is a long hollow cylinder form. In the nuclear elongation stage, elongated nucleus forms two or three cross sections in one spermatid cell and it is surrounded by the amorphous sheath. The nucleus of the matured spermatid is compact and its apical end is covered with acrosome cap and acrosome spine. The axoneme is surrounded by the amorphous material.

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필라멘트 와인딩 플라이휠의 스마트 경화에 관한 연구 (A Study on Smart Cure of Filament Wound Composite Flywheel)

  • 이도훈;김선경;김동진;이우일;하성규
    • Composites Research
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    • 제16권1호
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    • pp.34-41
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    • 2003
  • 두꺼운 필라멘트 와인딩 복합재료의 경화 공정의 최적화를 위만 모델이 제안되었다. 스마트 경화는 중심 축 부분과 바깥 쪽의 온도 조건을 같게 하는 방법과 중심 푹 쪽의 온도가 약간 높게 조절하여 경화 반응이 안쪽부터 시작될 수 있도록 하는 방법의 두 가지로 제안되었으며, 이는 잔류응력을 줄이기 위함이다.

Wave propagation induced by body forces for free microtubules using cylindrical shell model

  • Muhammad Taj;Ikram Ahmad;Mohamed Amine Khadimallah;Hamdi Ayed;Rana Muhammad Akram Muntazir;Abir Mouldi;Manahil Maqsood;Essam Mohammed Banoqitah;Muzamal Hussain;Abeera Talib;Hajra Khanam;Zafer Iqbal
    • Advances in concrete construction
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    • 제17권2호
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    • pp.67-73
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    • 2024
  • This paper examines the wave velocity of protein microtubules using a elasticity model that incorporates body forces, based on the structure of these hollow cylinder-like structures., the governing equations are analytically solved to determine how the body forces effect the wave velocity. To analyze the microtubule waves velocity, use microtubules with simply supported ends. The electric field of a dipole vibrating at the same frequency as microtubule vibrations approximates the electric field generated by the rhythmic motion of every charge. The numerical findings for the three modes of frequencies in the longitudinal, radial, and torsional directions for the current conditions are compared with the results of previous calculations.