Scanning electron microscopy of mouse muscle microvasculature. 1983

J A Holley, and M A Fahim

The surface morphology of the microvasculature from mouse skeletal muscle was studied by scanning electron microscopy. Cell surfaces were exposed by digesting away extracellular collagen and other matrix by a simple HCl treatment. Four distinct subdivisions of the microvasculature (arterioles, precapillary arterioles, capillaries, and venules) were identified based on marked differences in surface features. Arterioles of 20-10 micrometers diameter had a discontinuous, single layer of smooth muscle cells encircling the vessel. These smooth muscle cells had an uneven surface with shallow grooves and depressions that were often oriented parallel to the longitudinal cell body axis. The underlying arteriolar endothelial surface was also rough with long ridges separating shallow furrows that were oriented parallel to the vessel length. As the arteriolar size decreased, the perivascular cell were found further apart, they became smooth surfaced, and were oriented preferentially parallel to the vessel. The endothelium of the precapillary arterioles, as well as, capillaries and venules had smooth surfaces. Venules had a discontinuous layer of flat, smooth surfaced pericytes. Morphologically distinct groups of smooth muscle cells (i.e., precapillary sphincters) were not found. Although pericytes normally associated with capillaries and other vessels were often removed during tissue processing, most cells and their surface feature were generally well preserved.

UI MeSH Term Description Entries
D008297 Male Males
D008807 Mice, Inbred BALB C An inbred strain of mouse that is widely used in IMMUNOLOGY studies and cancer research. BALB C Mice, Inbred,BALB C Mouse, Inbred,Inbred BALB C Mice,Inbred BALB C Mouse,Mice, BALB C,Mouse, BALB C,Mouse, Inbred BALB C,BALB C Mice,BALB C Mouse
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D008833 Microcirculation The circulation of the BLOOD through the MICROVASCULAR NETWORK. Microvascular Blood Flow,Microvascular Circulation,Blood Flow, Microvascular,Circulation, Microvascular,Flow, Microvascular Blood,Microvascular Blood Flows,Microvascular Circulations
D008855 Microscopy, Electron, Scanning Microscopy in which the object is examined directly by an electron beam scanning the specimen point-by-point. The image is constructed by detecting the products of specimen interactions that are projected above the plane of the sample, such as backscattered electrons. Although SCANNING TRANSMISSION ELECTRON MICROSCOPY also scans the specimen point by point with the electron beam, the image is constructed by detecting the electrons, or their interaction products that are transmitted through the sample plane, so that is a form of TRANSMISSION ELECTRON MICROSCOPY. Scanning Electron Microscopy,Electron Scanning Microscopy,Electron Microscopies, Scanning,Electron Microscopy, Scanning,Electron Scanning Microscopies,Microscopies, Electron Scanning,Microscopies, Scanning Electron,Microscopy, Electron Scanning,Microscopy, Scanning Electron,Scanning Electron Microscopies,Scanning Microscopies, Electron,Scanning Microscopy, Electron
D009131 Muscle, Smooth, Vascular The nonstriated involuntary muscle tissue of blood vessels. Vascular Smooth Muscle,Muscle, Vascular Smooth,Muscles, Vascular Smooth,Smooth Muscle, Vascular,Smooth Muscles, Vascular,Vascular Smooth Muscles
D009132 Muscles Contractile tissue that produces movement in animals. Muscle Tissue,Muscle,Muscle Tissues,Tissue, Muscle,Tissues, Muscle
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001160 Arterioles The smallest divisions of the arteries located between the muscular arteries and the capillaries. Arteriole
D014699 Venules The minute vessels that collect blood from the capillary plexuses and join together to form veins. Venule

Related Publications

J A Holley, and M A Fahim
April 1992, Journal of anatomy,
J A Holley, and M A Fahim
January 1982, Anatomy and embryology,
J A Holley, and M A Fahim
June 1980, The American journal of anatomy,
J A Holley, and M A Fahim
January 1988, Acta anatomica,
J A Holley, and M A Fahim
April 1974, Laboratory investigation; a journal of technical methods and pathology,
J A Holley, and M A Fahim
January 1992, Anatomy and embryology,
J A Holley, and M A Fahim
January 2005, Veterinary ophthalmology,
J A Holley, and M A Fahim
March 2001, Veterinary ophthalmology,
J A Holley, and M A Fahim
December 1975, Experimental and molecular pathology,
J A Holley, and M A Fahim
January 1983, Folia morphologica,
Copied contents to your clipboard!