マインドマップギャラリー 筋肉組織
これは筋肉組織に関するマインドマップです。筋肉組織は主に収縮機能を持つ筋細胞で構成され、その位置、構造、機能に応じて骨格筋、平滑筋、心筋の 3 つのタイプに分類されます。
2024-02-14 23:19:31 に編集されましたThis template, created with EdrawMind, provides a structured workflow for weekly coordination meetings focused on MEP (Mechanical, Electrical, Plumbing) pipeline layout. It follows a four-stage cycle: starting with Issue Identification (Clash Detection) to detect pipeline conflicts, moving to Meeting Agenda preparation to define discussion topics, then On-site Discussion to review and resolve issues on the construction site, and finally Resolution & Update to document solutions and track progress. This template can be reused to standardize MEP coordination processes, ensuring clear communication, efficient problem-solving, and smooth construction progress.
This template, created with EdrawMind, outlines a quarterly checklist for preparing materials for green building certification. It is divided into four sequential quarters: Q1 focuses on Basic Material Preparation, including collecting project approval documents and compiling self-assessment reports; Q2 covers Technical Data Improvement, such as organizing energy consumption calculation books and preparing green construction proof materials; Q3 involves On-site Inspection Preparation, including organizing construction process materials and verifying certification standards; and Q4 is for Formal Application, which includes completing online reporting and cooperating with expert on-site reviews. This template can be reused to systematically prepare for green building certification, ensuring all requirements are met and the process is efficient.
This template, created with EdrawMind, provides a comprehensive framework for daily monitoring of deep foundation pit construction. It covers six key monitoring areas: Retaining Wall Top Displacement, Settlement of Surrounding Buildings, Groundwater Level, Pit Bottom Heave, Support Axial Force, and Data Summary & Analysis. Each section specifies monitoring points, frequency, and warning values to ensure safety. The template can be reused to standardize monitoring practices, track structural stability, and trigger immediate alarms if warning thresholds are exceeded, thus mitigating risks during foundation pit construction.
This template, created with EdrawMind, provides a structured workflow for weekly coordination meetings focused on MEP (Mechanical, Electrical, Plumbing) pipeline layout. It follows a four-stage cycle: starting with Issue Identification (Clash Detection) to detect pipeline conflicts, moving to Meeting Agenda preparation to define discussion topics, then On-site Discussion to review and resolve issues on the construction site, and finally Resolution & Update to document solutions and track progress. This template can be reused to standardize MEP coordination processes, ensuring clear communication, efficient problem-solving, and smooth construction progress.
This template, created with EdrawMind, outlines a quarterly checklist for preparing materials for green building certification. It is divided into four sequential quarters: Q1 focuses on Basic Material Preparation, including collecting project approval documents and compiling self-assessment reports; Q2 covers Technical Data Improvement, such as organizing energy consumption calculation books and preparing green construction proof materials; Q3 involves On-site Inspection Preparation, including organizing construction process materials and verifying certification standards; and Q4 is for Formal Application, which includes completing online reporting and cooperating with expert on-site reviews. This template can be reused to systematically prepare for green building certification, ensuring all requirements are met and the process is efficient.
This template, created with EdrawMind, provides a comprehensive framework for daily monitoring of deep foundation pit construction. It covers six key monitoring areas: Retaining Wall Top Displacement, Settlement of Surrounding Buildings, Groundwater Level, Pit Bottom Heave, Support Axial Force, and Data Summary & Analysis. Each section specifies monitoring points, frequency, and warning values to ensure safety. The template can be reused to standardize monitoring practices, track structural stability, and trigger immediate alarms if warning thresholds are exceeded, thus mitigating risks during foundation pit construction.
筋肉組織
骨格筋
ライトミラー構造
細長い円筒形で枝が少ない 扁平な楕円形の核を持ち、数十、さらには数百の複数の核 筋形質 (好酸球性) には、筋線維の長軸に平行に配置された筋原線維が含まれています。
サルコメア
2つの隣接するZ線の間の筋原線維のセクション
1/2Iベルト Aベルト 1/2Iベルト
サルコメアは筋原線維の基本的な構造および機能単位であり、骨格筋線維の収縮と弛緩の構造的基盤を形成します。
電子顕微鏡の構造
筋原線維
細い筋フィラメント
アクチン
二重らせん鎖
トロポミオシン
2本の二重らせんポリペプチド鎖
トロポニン
TnT - トロポニンはTnTを介してトロポミオシン分子に結合します TnI - アクチンとミオシン間の相互作用を阻害します。 TnC - Caイオンと結合します
太い筋フィラメント
ミオシン
頭の中にATPaseがある
横尿細管
基底膜は実質に向かって凹んでいる
基底膜の興奮をサルコメアに伝えることができる
筋小胞体 (筋小胞体)
特殊な平滑小胞体
縦細管 - 2 つの隣接する横細管が、筋原線維を縦方向に取り囲む相互接続された細管のネットワークを形成します。
終末槽 - 横尿細管の両側に拡大した筋小胞体を持つ円形の嚢
心筋
ライトミラー構造
短い円筒形、分岐している 核は楕円形で中心があり、二重核を持つものもあります。 筋肉が豊富で、核の両端に集中している 横線が目立ちにくい
電子顕微鏡の構造
筋原線維は明らかではありません 横尿細管は短くて太く、Z線の高さに位置します。 筋小胞体はまばらで、縦尿細管は未発達で、終末槽は小さくて数が少なく、二重管はありません。 介在ディスクは Z 線レベルに位置し、水平方向の接続には中間接続とデスモソームがあり、縦方向の接続にはギャップ接続があります。 心房筋線維には収縮機能と内分泌機能があります
平滑筋
緻密斑(基底膜の内面)と緻密体(細胞質)は中間フィラメントでつながっている
筋原線維がない
ギャップジャンクション
ミオグロビン
ミオグロビンはヘモグロビンに似た分子構造をもつ低分子タンパク質で、筋細胞内で酸素を輸送・貯蔵する機能を持っています。