Human physiology: Difference between revisions

From Citizendium
Jump to navigation Jump to search
imported>Anthony.Sebastian
(elaborating lede)
imported>Anthony.Sebastian
(add wiki-links)
Line 3: Line 3:
Professional and non-professional [[Biology|biologists]] study '''human physiology''' to understand the workings of the human body and its component parts, at one or more levels of the human body’s organization.   
Professional and non-professional [[Biology|biologists]] study '''human physiology''' to understand the workings of the human body and its component parts, at one or more levels of the human body’s organization.   


By ''workings'', physiologists refer to the ''underlying mechanisms'' that operate to manifest themselves in observable properties, functions and behaviors of the body and its components (e.g., sweating, digestion, muscle contraction, vision, cell division).   
By '''''workings''''', [[Physiology|physiologists]] refer to the '''''underlying mechanisms''''' that operate to manifest themselves in observable properties, functions and behaviors of the body and its components (e.g., sweating, digestion, muscle contraction, vision, cell division).   


A human physiologist might ask, for example:  
A human physiologist might ask, for example:  
Line 9: Line 9:
:**which of its component parts participate in the response;  
:**which of its component parts participate in the response;  
:**in what way do they participate;  
:**in what way do they participate;  
:**what accounts for the mechanisms that operate in each individual component response; and,
:**what accounts for the mechanisms that operate in each individual component response;  
:**how does the overall response become integrated.  
:**how does the overall response become integrated;
:**How important is the response to the person's health;
:**how efficient and how effective is the response.


The complexity of the human body’s coordinated response to an unusually hot or cold day does not admit of a simplistic account — i.e., an account sufficient to explain the response, predict its properties, or control it.
The description of the human body’s complicated coordinated response to an unusually hot or cold day does not admit of a simplistic account — i.e., an account sufficient to fully explain the response, predict its properties, or control it.


By ''one or more levels of organization'' they refer to such levels of organization as intracellular molecular networks, cellular activity, organ activity, inter-organ interactions, and whole-body behavior — always in relation to a level's environment.   
By '''''one or more levels of organization''''' physiologists refer to such levels of organization as intracellular molecular networks, cellular activity, organ activity, inter-organ interactions, and whole-body behavior — always in relation to a level's environment.   


At any level of the body's organization, elucidating the operative underlying mechanisms may require integrating principles and information from other disciplines, including chemistry, physics, mathematics, computer modelling, systems biology, and many others.
At any level of the body's organization, elucidating the operative underlying mechanisms may require integrating principles and information from other disciplines, including [[chemistry]], [[physics]], [[mathematics]], [[computer modelling]], [[systems biology]], [[evolutionary biology]], and many others.


This article will describe the major subsystems that comprise the components of the living human system and attempt to show how those subsystems interact in a coordinated way that contributes to the emergence and maintenance of the living system.
This article will describe the major subsystems that comprise the components of the living human system and attempt to show how those subsystems interact in a coordinated way that contributes to the emergence and maintenance of the living system.

Revision as of 15:37, 5 March 2010

This article is a stub and thus not approved.
Main Article
Discussion
Related Articles  [?]
Bibliography  [?]
External Links  [?]
Citable Version  [?]
 
This editable Main Article is under development and subject to a disclaimer.


Professional and non-professional biologists study human physiology to understand the workings of the human body and its component parts, at one or more levels of the human body’s organization.

By workings, physiologists refer to the underlying mechanisms that operate to manifest themselves in observable properties, functions and behaviors of the body and its components (e.g., sweating, digestion, muscle contraction, vision, cell division).

A human physiologist might ask, for example:

  • How does the body respond to large or small decreases or increases in ambient temperature;
    • which of its component parts participate in the response;
    • in what way do they participate;
    • what accounts for the mechanisms that operate in each individual component response;
    • how does the overall response become integrated;
    • How important is the response to the person's health;
    • how efficient and how effective is the response.

The description of the human body’s complicated coordinated response to an unusually hot or cold day does not admit of a simplistic account — i.e., an account sufficient to fully explain the response, predict its properties, or control it.

By one or more levels of organization physiologists refer to such levels of organization as intracellular molecular networks, cellular activity, organ activity, inter-organ interactions, and whole-body behavior — always in relation to a level's environment.

At any level of the body's organization, elucidating the operative underlying mechanisms may require integrating principles and information from other disciplines, including chemistry, physics, mathematics, computer modelling, systems biology, evolutionary biology, and many others.

This article will describe the major subsystems that comprise the components of the living human system and attempt to show how those subsystems interact in a coordinated way that contributes to the emergence and maintenance of the living system.