Title :
Supporting medical house-call by expanding bedside in-vitro point of care test-range and attaining respiratory sounds´ visualization
Author :
Spyropoulos, B. ; Tzavaras, A. ; Afentoulidis, P. ; Botsivaly, M.
Author_Institution :
Med. Instrum. Technol. Dept., Technol. Educ. Inst. (TEI) of Athens, Athens, Greece
Abstract :
Although various electrical and non-electrical biosignal-monitoring miniaturized equipment have been developed, tested and employed, out of the traditional Hospital environment, it is only during the last few years that a comparable trend is appearing, concerning Laboratory and Respiratory Medicine. It is the purpose of this paper to present the development status of a system, supporting decision-making during medical house-call or similar circumstances that: First, expands bedside Point-of-Care in vitro Diagnostics testing and in vivo or in vitro samples´ morphological data acquisition and processing capabilities, by employing custom developed software-tools and adjustments, on any commercially available inexpensive digital microscope and adapting it to operate also, as a reliable visual spectrophotometer. Second, provides for custom-made low-cost hardware and software means, allowing for Pulmonary-Sounds acquisition, processing and visualization, setting-up thus, a useful electronic Auscultation and Monitoring device. Both components of the system are being presently laboratory-tested under simulated home-care conditions.
Keywords :
bioacoustics; biomedical optical imaging; data acquisition; decision making; electrocardiography; medical signal processing; pneumodynamics; telemedicine; ECG; bedside point-of-care in-vitro diagnostics testing; custom developed software tools; custom-made low-cost hardware; decision making; electronic auscultation device; electronic monitoring device; inexpensive digital microscope; laboratory medicine; medical house-call support; morphological data acquisition; morphological data processing; nonelectrical biosignal-monitoring miniaturized equipment; pulmonary sound processing; pulmonary sound visualization; pulmonary sounds acquisition; respiratory medicine; respiratory sound visualization; simulated home care condition; traditional hospital environment; visual spectrophotometer; Laboratories; Lungs; Medical diagnostic imaging; Medical services; Microscopy; Optical microscopy;
Conference_Titel :
Point-of-Care Healthcare Technologies (PHT), 2013 IEEE
Conference_Location :
Bangalore
Print_ISBN :
978-1-4673-2765-7
Electronic_ISBN :
978-1-4673-2766-4
DOI :
10.1109/PHT.2013.6461309