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  1. 紀要
  2. お茶の水女子大學自然科學報告
  3. 53(1)

Ciliary Movement of Sea-urchin Embryos

http://hdl.handle.net/10083/2360
http://hdl.handle.net/10083/2360
a9f33670-427a-42f1-9349-76bf698d1af6
名前 / ファイル ライセンス アクション
KJ00004830728.pdf KJ00004830728.pdf (636.9 kB)
Item type 紀要論文 / Departmental Bulletin Paper(1)
公開日 2008-04-30
タイトル
タイトル Ciliary Movement of Sea-urchin Embryos
言語
言語 eng
資源タイプ
資源 http://purl.org/coar/resource_type/c_6501
タイプ departmental bulletin paper
著者 Shiba, Kogiku

× Shiba, Kogiku

WEKO 70738

Shiba, Kogiku

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Mogami, Yoshihiro

× Mogami, Yoshihiro

WEKO 70739

Mogami, Yoshihiro

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Baba, Shoji A.

× Baba, Shoji A.

WEKO 70740

Baba, Shoji A.

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著者(ヨミ)
識別子Scheme WEKO
識別子 70741
姓名 シバ, コギク
著者(ヨミ)
識別子Scheme WEKO
識別子 70742
姓名 モガミ, ヨシヒロ
著者(ヨミ)
識別子Scheme WEKO
識別子 70743
姓名 ババ, ショウジ
内容記述
内容記述タイプ Other
内容記述 Living matter is constantly in motion: we human beings walk through the repeated contraction and relaxation of leg muscles ; migratory fish swim long way also by the muscle contraction ; a great number of unicellular and multicellular microorganisms swim about through the beating of miniature hairlike appendages called "cilia". To address the unsolved question how cilia are regulated when these microorganisms explore their environment and are successful in life, we studied the ciliary movement of embryos and larvae of sea urchins by means of high-speed video micrography and by computerized analysis of ciliary beating at a high resolution. We found the four stages, E_1 through E_4, in the effective stroke with pauses intervening between one and the next. Serotonin, which has been demonstrated to increase the swimming speed of sea-urchin embryos, reduced reversibly the fluctuation and the length of period of E_4, and hence made the beating more stable and faster than before its application. Dopamine, which is known to decrease the swimming speed, increased the fluctuation and the period of E_4 antagonistically to ser\
otonin and, in addition, prolonged the pause between E_1 and E_2 and reduced the rate of angular change in E_3. The potassium ion at higher concentrations than of standard seawater, which will depolarize the cell membrane and known to reduce the swimming speed, and to induce backward swimming in larvae of the pluteus and later stages, modified the beating in a manner similar to dopamine. Pauses between E_2 and E_3 often found in the pluteus stage were lengthened by serotonin and the potassium ion. These findings indicate that the internal motility machinery, i.e., the axoneme, can be regulated by modifying one or more of independently controllable stages of beating including E_1 through E_4 described in the present study.
書誌情報 お茶の水女子大學自然科學報告

巻 53, 号 1, p. 49-54, 発行日 2002-06
ISSN
収録物識別子タイプ ISSN
収録物識別子 00298190
書誌レコードID
収録物識別子タイプ NCID
収録物識別子 AN00033958
フォーマット
内容記述タイプ Other
内容記述 application/pdf
形態
636866 bytes
日本十進分類法
主題Scheme NDC
主題 400
出版者
出版者 お茶の水女子大学
資源タイプ
内容記述タイプ Other
内容記述 紀要論文
資源タイプ・ローカル
紀要論文
資源タイプ・NII
Departmental Bulletin Paper
資源タイプ・DCMI
text
資源タイプ・ローカル表示コード
03
所属
Division of Life Sciences, Graduate School of Humanities and Sciences Ochanomizu University
所属
Department of Biology Ochanomizu University
所属
Department of Advanced Biosciences, Graduate School of Humanities and Sciences Ochanomizu University
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