List of MeSH codes (G09)
List of MeSH codes (G09) refers to a comprehensive categorization within the Medical Subject Headings (MeSH) system, specifically focusing on the area of circulatory and respiratory physiology. MeSH is a hierarchical controlled vocabulary used for indexing articles for PubMed and other databases within the United States National Library of Medicine (NLM). This list encompasses terms under the G09 category, which are pivotal for researchers, students, and professionals involved in the fields of cardiology, pulmonary medicine, and related interdisciplinary studies.
Overview[edit | edit source]
The G09 category in the MeSH hierarchy addresses a broad spectrum of topics related to the physiological processes and conditions of the circulatory and respiratory systems. This includes, but is not limited to, blood circulation, gas exchange, heart function, and the mechanics of breathing. Understanding these terms is crucial for the exploration and study of physiological mechanisms, disease pathology, and the development of therapeutic interventions.
List of MeSH Codes (G09)[edit | edit source]
The following is a selection of key MeSH codes within the G09 category, each representing a specific area of interest within circulatory and respiratory physiology:
- G09.330 - Blood Circulation
- G09.330.190 - Cardiac Output
- G09.330.380 - Hemodynamics
- G09.330.380.124 - Blood Pressure
- G09.330.380.500 - Pulmonary Circulation
- G09.330.380.500.500 - Pulmonary Gas Exchange
- G09.330.380.500.750 - Ventilation-Perfusion Ratio
- G09.500 - Heart Function
- G09.500.124 - Cardiac Volume
- G09.500.750 - Heart Rate
- G09.500.750.770 - Pulse
- G09.772 - Respiratory Mechanics
- G09.772.770 - Lung Compliance
- G09.772.775 - Respiratory Rate
- G09.772.775.270 - Breathing Patterns
Importance[edit | edit source]
The categorization of terms under the G09 MeSH codes is instrumental for the organization of medical literature, facilitating precise and efficient retrieval of information. This system aids in the research of circulatory and respiratory physiology by providing a structured language that encompasses the complexity of these systems. It is particularly valuable for medical researchers, educators, and clinicians who are engaged in the study of cardiovascular and respiratory health, disease, and therapeutics.
See Also[edit | edit source]
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