THE ROLE OF THE HEMODYNAMIC AND CLOTTING PROPERTIES OF BLOOD IN THE DEVELOPMENT OF DISSEMINATED INTRAVASCULAR COAGULATION AND SHOCK.

Abstract

Disseminated intravascular coagulation, probably an essential component of shock, can only be observed adequately by intravital microscopy. The author's improvements and new developments of such methods are described. The processing of signals picked up optically from the monitor screen was improved for use with television systems (flying spot microscope, TV cameras). A new method was developed which performs optical statistics of the perfusion in a microscopic capillary area using random probes. The statistical information is analyzed by frequency power spectrum methods. This method demands less expenditure on electronics than do TV systems and the time resolution is good. Being optically very sensitive, it can be applied to reflected light microscopy without exerting thermal stress on the capillary area observed. It delivers relative values of perfusion distribution among the different types of blood vessel observed within the area. ....Endotoxin experiments were done with rat and frog epithelia. No dramatic microcirculatory changes were seen. This may be due to a peculiarity of the tissue and similar observations on rat kidney are therefore planned.... The report contains abstracts of two papers given at international conferences. (Author)

Document Details

Document Type
Technical Report
Publication Date
Jul 01, 1970
Accession Number
AD0711576

Entities

People

  • Hanskurt Mueller

Tags

Communities of Interest

  • Energy and Power Technologies
  • Ground and Sea Platforms

DTIC Thesaurus Topics

  • Blood
  • Blood Vessels
  • Data Science
  • Hematologic Diseases
  • Information Science
  • Microscopes
  • Microscopy
  • Microvessels
  • Perfusion
  • Power Spectra
  • Spectra
  • Statistics
  • Television Systems
  • Thermal Stresses

Readers

  • Cardiovascular Physiology
  • Computer Science/Computer Engineering/Data Science/Digital Signal Processing.
  • Nanoscale Plasmonic Nanotechnology

Technology Areas

  • Microelectronics