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関連する概念動画

Molecular Shape and Polarity03:37

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Tetrahedral Complexes
Crystal field theory (CFT) is applicable to molecules in geometries other than octahedral. In octahedral complexes, the lobes of the dx2−y2 and dz2 orbitals point directly at the ligands. For tetrahedral complexes, the d orbitals remain in place, but with only four ligands located between the axes. None of the orbitals points directly at the tetrahedral ligands. However, the dx2−y2 and dz2 orbitals (along the Cartesian axes) overlap with the ligands less than the dxy,...
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Group Polarization01:01

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Group polarization is the strengthening of an original group attitude following the discussion of views within a group (Teger & Pruitt, 1967). That is, if a group initially favors a viewpoint, after discussion the group consensus is likely a stronger endorsement of the viewpoint. Conversely, if the group was initially opposed to a viewpoint, group discussion would likely lead to stronger opposition.
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Understanding the movement of a rigid body in planar motion involves recognizing that every particle within this body is traversing a path that maintains a consistent distance from a specific plane. This concept is fundamental in the study of physics and mechanical engineering, and it allows us to comprehend better how objects move in space.
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A planar symmetry of charge density is obtained when charges are uniformly spread over a large flat surface. In planar symmetry, all points in a plane parallel to the plane of charge are identical with respect to the charges. Suppose the plane of the charge distribution is the xy-plane, and the electric field at a space point P with coordinates (x, y, z) is to be determined. Since the charge density is the same at all (x, y) - coordinates in the z = 0 plane, by symmetry, the electric field at P...
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Updated: Feb 14, 2026

Evaluation of Planar-Cell-Polarity Phenotypes in Ciliopathy Mouse Mutant Cochlea
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小さなことから始めよう: 形態原体なしの組織全体の平面細胞の極性に関するモデル.

Abhisha Thayambath1,2, Julio M Belmonte1,2

  • 1Department of Physics, North Carolina State University, Raleigh, North Carolina, United States of America.

PLoS computational biology
|February 12, 2026
PubMed
まとめ

平面細胞の極性 (PCP) は,地球的なヒントなしに確立することができます. 新しいモデルは,局所的な信号,小さな組織サイズ,そして増殖が組織全体にわたる細胞極化を達成できることを示しています.

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科学分野:

  • 発達生物学 発達生物学について
  • 細胞生物学 細胞生物学
  • コンピュータ生物学 コンピュータ生物学

背景:

  • 平面細胞の極性 (PCP) は,表皮の基本的パターニングメカニズムである.
  • PCPは,発達中の指向された成長,細胞分裂,運動を誘導する.
  • 既存のモデルは,組織全体にわたる指向のために,グローバル・キューやグラデーションを必要とします.

研究 の 目的:

  • グローバルモルフォゲン・グラデーションに頼らずにPCPパターンを調査する.
  • 局所的な信号による全身の組織指向を可能にする条件を調査する.
  • セルラーポットスのフレームワークを使用してPCPをモデル化します.

主な方法:

  • セルラーポットのモデリングフレームワークアプリケーション.
  • 局所境界信号と均一な拡散のシミュレーション.
  • 細胞分裂平面と成長率への影響の分析.
  • セル自律型とセル非自律型PCPモデルの比較.

主要な成果:

  • 局所的な境界信号,小さな初期サイズ,均一な増殖によって達成されたグローバルな組織指向.
  • 組織を横断するグラデーションから独立してPCPの確立が実証されています.
  • 細胞分裂指向と成長率のパターニングへの影響が特定されました.
  • セル非自律モデルでは,グラデーションなしでより堅固なパターンを示した.

結論:

  • PCPパターニングは,グローバルなヒントなしに起こり,既存のパラダイムに挑戦することができます.
  • 局所的な相互作用と特定の拡散ダイナミクスは,長距離の極性のために十分である.
  • 細胞の非自律的なメカニズムは,グラデントフリーPCPの頑丈性を高めます.