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関連する概念動画

Finding the Center of Gravity01:03

Finding the Center of Gravity

4.4K
The center of gravity of a body is an imaginary point where the body's total weight is assumed to be concentrated, and the body is perfectly balanced. The center of the mass of a body is a point at which the whole of the mass of the body appears to be concentrated. If the acceleration due to gravity, g, has the same value at all points on a body, its center of gravity is identical to its center of mass. The center of gravity of homogeneous bodies such as a sphere, cube, or rectangular plate...
4.4K
Respiratory System Abnormal Finding I: Inspection and Percussion01:30

Respiratory System Abnormal Finding I: Inspection and Percussion

825
Respiratory system abnormalities are a significant concern in healthcare due to their potential to indicate underlying severe conditions like Chronic Obstructive Pulmonary Disease (COPD), asthma, and pneumonia. These abnormalities can often be detected through physical examination methods like inspection and percussion.
Inspection Findings
During an inspection, several findings may suggest the presence of respiratory distress or disease. Pursed-lip breathing, where exhalation is slowed by...
825
Finding Electric Potential From Electric Field01:13

Finding Electric Potential From Electric Field

5.5K
For a system of charges, it is easy to calculate the system's potential because potential is a scalar quantity. However, in some instances where calculating the electric field is more straightforward than finding the potential, the electric field is used to calculate the system's potential. For a positive charge, the electric field is radially outward, and the potential is positive at any finite distance from the positive charge. In such an electric field, the motion away from the...
5.5K
Cardiovascular System Abnormal Findings I: Inspection and Palpation01:29

Cardiovascular System Abnormal Findings I: Inspection and Palpation

878
In a cardiovascular examination, inspection and palpation are crucial for identifying abnormalities.
Abnormal findings observed during an inspection
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Finding Volume Using Cross-Sectional Area01:24

Finding Volume Using Cross-Sectional Area

61
For solids whose cross-sectional areas vary in a predictable way, volume can be determined by integrating these areas along an axis perpendicular to the slices. This approach is particularly useful for polyhedral solids, where classical geometric formulas may not be immediately applicable. A tetrahedron provides a clear example of how cross-sectional integration can be applied to a three-dimensional object with continuously changing geometry.Consider a tetrahedron with height h and a base that...
61
Cardiovascular System Abnormal Findings II: Auscultation01:25

Cardiovascular System Abnormal Findings II: Auscultation

604
Auscultation, an essential part of a heart examination, is done using a stethoscope. It provides crucial information about heart function and possible heart problems. Due to heart problems, abnormal sounds can be heard during systole or diastole. These sounds include S3 and S4 gallops, opening snaps, systolic clicks, and murmurs.
Abnormal Heart Sounds
Gallops:
604

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関連する実験動画

Updated: Jan 28, 2026

Apical Resection Mouse Model to Study Early Mammalian Heart Regeneration
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Apical Resection Mouse Model to Study Early Mammalian Heart Regeneration

Published on: January 23, 2016

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心 の 回復 に 役立つ 分岐点 を 見いだす

Evan S Bardot1, Nicole C Dubois1

  • 1Department of Cell, Developmental and Regenerative Biology, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

Cell
|February 23, 2019
PubMed
まとめ

新生マウスの心臓は 傷を負った後に再生し 新しい副動脈を形成します この研究は 大人の心臓とは異なり 新生児の心臓における 驚くべき再生過程の背後にある 重要なメカニズムを明らかにしています

科学分野:

  • 心血管生物学
  • 再生医療
  • 発達生物学

背景:

  • 成人哺乳類の心臓は損傷後に再生能力が限られている.
  • 新生児の心臓は 重大な損傷から回復する強固な能力を示しています
  • 新生児の心臓再生のメカニズムを理解することは 治療戦略の開発に不可欠です

研究 の 目的:

  • 新生マウスの心臓再生に 基づくメカニズムを調べる
  • 新生児の心臓修復における 副動脈形成の役割を特定する
  • 新生児の心臓の 副動脈発達の過程について 洞察を提供するためです

主な方法:

  • 心臓損傷と再生を研究するためにマウスモデルを使用しました.
  • 副動脈の形成を視覚化するために 先進的なイメージング技術を使いました
  • 新生児の心臓の修復に関与する分子と細胞のプロセスを分析した.

主要な成果:

  • 新生児の心臓再生における重要な要因として特定された.
  • 損傷した新生児の心臓に 副動脈が形成される過程を詳細に説明しました
  • 新生児と成人の心臓の 再生能力の有意な違いが示されました

さらに関連する動画

Watershed Planning within a Quantitative Scenario Analysis Framework
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Watershed Planning within a Quantitative Scenario Analysis Framework

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Continuous Instream Monitoring of Nutrients and Sediment in Agricultural Watersheds
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Continuous Instream Monitoring of Nutrients and Sediment in Agricultural Watersheds

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関連する実験動画

Last Updated: Jan 28, 2026

Apical Resection Mouse Model to Study Early Mammalian Heart Regeneration
06:08

Apical Resection Mouse Model to Study Early Mammalian Heart Regeneration

Published on: January 23, 2016

11.9K
Watershed Planning within a Quantitative Scenario Analysis Framework
12:44

Watershed Planning within a Quantitative Scenario Analysis Framework

Published on: July 24, 2016

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Continuous Instream Monitoring of Nutrients and Sediment in Agricultural Watersheds
12:50

Continuous Instream Monitoring of Nutrients and Sediment in Agricultural Watersheds

Published on: September 26, 2017

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結論:

  • 新生児の心臓の損傷後の完全な回復を可能にする鍵となるメカニズムです.
  • この発見は心臓側動脈の 発達経路に関する新しい洞察を 提供しています
  • この研究は成人における心臓病の 再生療法への道を開きます