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関連する概念動画

Disorders of Acid-Base Balance01:29

Disorders of Acid-Base Balance

The human body maintains a precise pH range of arterial blood between 7.35 and 7.45. Deviations result in either acidosis (pH < 7.35) or alkalosis (pH > 7.45). These conditions are further classified as respiratory or metabolic disorders based on their underlying cause.
Respiratory Acidosis and Alkalosis
Respiratory acidosis occurs due to an increase in the partial pressure of carbon dioxide PCO2 in the blood. It often arises from shallow breathing or impaired gas exchange caused by...
Diagnosing Acidosis and Alkalosis01:24

Diagnosing Acidosis and Alkalosis

Diagnosing acid-base imbalances involves systematically analyzing arterial blood samples, focusing on three key measurements: pH, bicarbonate (HCO3−) concentration, and carbon dioxide partial pressure (PCO2). This analysis follows a four-step process that helps identify the imbalance's underlying cause and nature.
First, the pH level is assessed to determine whether the blood pH is normal (7.35–7.45), low (acidosis), or high (alkalosis).
Next, the PCO2  and HCO3−  values are examined to...
Blood Studies I: ABG and VBG01:26

Blood Studies I: ABG and VBG

Blood studies are critical in the medical field, enabling healthcare professionals to assess a patient's health status accurately. This page will focus on two significant blood studies: Arterial Blood Gas (ABG) and Venous Blood Gas (VBG).
Arterial Blood Gas (ABG)
Arterial Blood Gas (ABG) studies are crucial for assessing the lungs' ability to supply oxygen and remove carbon dioxide, reflecting the patient's ventilation status. They also help understand the kidneys' capacity to reabsorb or...
Titration of a Weak Acid with a Strong Base01:30

Titration of a Weak Acid with a Strong Base

In titrating a weak acid with a strong base, different calculation methods are applied at various stages. Initially, the pH of a weak acid like acetic acid is calculated using its dissociation constant (Ka) and an ICE table. Upon addition of a strong base such as sodium hydroxide, a buffer forms, and its pH is determined using the Henderson-Hasselbalch equation. As more base is added and the titration reaches the halfway point, the pH becomes equal to the pKa of the acid, indicating equal...

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関連する実験動画

Updated: Jul 24, 2026

Open Tracheostomy Gastric Acid Aspiration Murine Model of Acute Lung Injury Results in Maximal Acute Nonlethal Lung Injury
09:16

Open Tracheostomy Gastric Acid Aspiration Murine Model of Acute Lung Injury Results in Maximal Acute Nonlethal Lung Injury

Published on: February 26, 2017

サブリンガル・ニトログリセリン投与後の血中濃度

P W Armstrong, J A Armstrong, G S Marks

    Circulation
    |March 1, 1979
    PubMed
    まとめ

    サブリンガルニトログリセリン (GTN) は,投与後,急速に血流に入り,血流から出ます. この研究は,GTNを測定する方法を開発し,窒素療法に関する研究を支援しました.

    科学分野:

    • 薬理学 薬理学とは
    • 臨床化学 臨床化学について

    背景:

    • 血液中のニトログリセリン (GTN) の正確な測定は,薬理学分析において極めて重要です.
    • 以前の方法では,GTNの血中濃度決定に必要な感度と特異性が欠けていました.

    研究 の 目的:

    • ヒトの血液中のGTNを測定するための繊細な方法を開発し,検証する.
    • 亜言語的に投与されたGTN.の薬物動態プロフィールを特徴づけるために.

    主な方法:

    • 電子捕獲検出によるガス液体染色学が採用されました.
    • イソソルビド二酸化窒素は量化のための内部標準として使用されました.
    • 0.6 mgの言語下GTNを投与した正常なボランティアを対象とした10件の研究が分析されました.

    主要な成果:

    • GTNは投与後0.5分以内に血液で検出されました.
    • 血中のピーク濃度2.3 +/- 0.36 ng/mlは2分後に達成されました.
    • GTN濃度は急速に低下し,半減期は約7.5分であった.

    結論:

    • 言語下GTNは,血液から迅速に吸収され,排出されます.

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    Oleic Acid-Injection in Pigs As a Model for Acute Respiratory Distress Syndrome

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    A Porcine Model of Acute Respiratory Failure with a Continuous Infusion of Oleic Acid
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    A Porcine Model of Acute Respiratory Failure with a Continuous Infusion of Oleic Acid

    Published on: March 8, 2024

    関連する実験動画

    Last Updated: Jul 24, 2026

    Open Tracheostomy Gastric Acid Aspiration Murine Model of Acute Lung Injury Results in Maximal Acute Nonlethal Lung Injury
    09:16

    Open Tracheostomy Gastric Acid Aspiration Murine Model of Acute Lung Injury Results in Maximal Acute Nonlethal Lung Injury

    Published on: February 26, 2017

    Oleic Acid-Injection in Pigs As a Model for Acute Respiratory Distress Syndrome
    06:06

    Oleic Acid-Injection in Pigs As a Model for Acute Respiratory Distress Syndrome

    Published on: October 26, 2018

    A Porcine Model of Acute Respiratory Failure with a Continuous Infusion of Oleic Acid
    04:10

    A Porcine Model of Acute Respiratory Failure with a Continuous Infusion of Oleic Acid

    Published on: March 8, 2024

  • 観察された薬理学は,広範な分布と急速なクリアランスを示唆し,非肝臓の排泄経路を示唆しています.
  • 開発された分析方法は,窒素酸塩治療の有効性に関するさらなる調査を容易にする.