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J N Maina

Showing results (11-20 of 62) with videos related to

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Respiratory Physiology & Neurobiology|July 4, 2006
Spectacularly robust! Tensegrity principle explains the mechanical strength of the avian lungJ N Maina
Respiration Physiology|April 1, 1987
Morphometrics of the avian lung. 4. The structural design of the charadriiform lungJ N Maina
Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|September 16, 2000
Is the sheet-flow design a 'frozen core' (a Bauplan) of the gas exchangers? Comparative functional morphology of the respiratory microvascular systems: illustration of the geometry and rationalization of the fractal propertiesJ N Maina
Advances in Anatomy, Embryology, and Cell Biology|March 15, 2002
Fundamental structural aspects and features in the bioengineering of the gas exchangers: comparative perspectivesJ N Maina
Biological Reviews of the Cambridge Philosophical Society|March 26, 2002
Some recent advances on the study and understanding of the functional design of the avian lung: morphological and morphometric perspectivesJ N Maina
Tissue & Cell|June 16, 2000
Functional morphology of the gas-gland cells of the air-bladder of Oreochromis alcalicus grahami (teleostei: cichlidae): an ultrastructural study on a fish adapted to a severe, highly alkaline environmentJ N Maina
Tissue & Cell|July 17, 2008
Locations, ultrastructural morphology, and putative functions of the branchial podocytes of the fresh water crab Potamon niloticus - Savigy (crustacea, decapoda, potamonidae)J N Maina
Journal of Anatomy|December 1, 1989
The morphology of the lung of the black mamba Dendroaspis polylepis (Reptilia: Ophidia: Elapidae). A scanning and transmission electron microscopic studyJ N Maina
The Anatomical Record|October 1, 1988
Scanning electron microscope study of the spatial organization of the air and blood conducting components of the avian lung (Gallus gallus variant domesticus)J N Maina
Journal of Anatomy|November 15, 2002
Structure, function and evolution of the gas exchangers: comparative perspectivesJ N Maina
Pageof 7

Showing results (11-20 of 62) with videos related to

Sort By:
Pageof 7
Respiratory Physiology & Neurobiology|July 4, 2006
Spectacularly robust! Tensegrity principle explains the mechanical strength of the avian lungJ N Maina
Respiration Physiology|April 1, 1987
Morphometrics of the avian lung. 4. The structural design of the charadriiform lungJ N Maina
Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|September 16, 2000
Is the sheet-flow design a 'frozen core' (a Bauplan) of the gas exchangers? Comparative functional morphology of the respiratory microvascular systems: illustration of the geometry and rationalization of the fractal propertiesJ N Maina
Advances in Anatomy, Embryology, and Cell Biology|March 15, 2002
Fundamental structural aspects and features in the bioengineering of the gas exchangers: comparative perspectivesJ N Maina
Biological Reviews of the Cambridge Philosophical Society|March 26, 2002
Some recent advances on the study and understanding of the functional design of the avian lung: morphological and morphometric perspectivesJ N Maina
Tissue & Cell|June 16, 2000
Functional morphology of the gas-gland cells of the air-bladder of Oreochromis alcalicus grahami (teleostei: cichlidae): an ultrastructural study on a fish adapted to a severe, highly alkaline environmentJ N Maina
Tissue & Cell|July 17, 2008
Locations, ultrastructural morphology, and putative functions of the branchial podocytes of the fresh water crab Potamon niloticus - Savigy (crustacea, decapoda, potamonidae)J N Maina
Journal of Anatomy|December 1, 1989
The morphology of the lung of the black mamba Dendroaspis polylepis (Reptilia: Ophidia: Elapidae). A scanning and transmission electron microscopic studyJ N Maina
The Anatomical Record|October 1, 1988
Scanning electron microscope study of the spatial organization of the air and blood conducting components of the avian lung (Gallus gallus variant domesticus)J N Maina
Journal of Anatomy|November 15, 2002
Structure, function and evolution of the gas exchangers: comparative perspectivesJ N Maina
Pageof 7