Design of instrumentation and data-acquisition system for complex admittance measurement. 2004

Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
Department of Electrical and Computer Engineering, University of Texas at Austin, TX, USA.

Instantaneous left ventricular volume measurements have been made for many years using a tetrapolar conductance catheter. The main objective is to determine the efficiency of the beating heart, using a tetrapolar catheter inserted in the left ventricle of transgenic mice. The effect of the parallel myocardium contribution must be removed from the total measurement. A dual-frequency technique involving 1 kHz and 100 kHz was chosen because it has been established that the imaginary part (the capacitive reactance) of the complex admittance of the cardiac muscle is much smaller in the lower frequency than at the higher frequency. The design involves generation of an accurate frequency source for both the frequencies careful selection of operational amplifiers for the current conversion stage so that the current is not too large to kill the mouse and that it is capable of performing at high frequencies. The band pass filter stage involved careful design with minimal overlap of the pass bands of both the channels. The overall circuit was designed so that there is minimal shift in the phase due to the circuit elements alone. Work also involved design of GPIB--based data acquisition system using LabVIEW and a digital oscilloscope for effective data acquisition even at high frequencies, which are normally limited by the sampling frequency. This data acquisition system is currently being used in laboratory studies in vivo.

UI MeSH Term Description Entries
D002138 Calibration Determination, by measurement or comparison with a standard, of the correct value of each scale reading on a meter or other measuring instrument; or determination of the settings of a control device that correspond to particular values of voltage, current, frequency or other output. Calibrations
D002307 Cardiography, Impedance A type of impedance plethysmography in which bioelectrical impedance is measured between electrodes positioned around the neck and around the lower thorax. It is used principally to calculate stroke volume and cardiac volume, but it is also related to myocardial contractility, thoracic fluid content, and circulation to the extremities. Impedance, Transthoracic,Plethysmography, Impedance, Transthoracic,Impedance Cardiography,Impedance Plethysmography, Transthoracic,Plethysmography, Transthoracic Impedance,Transthoracic Impedance Plethysmography,Cardiographies, Impedance,Impedance Cardiographies,Impedance Plethysmographies, Transthoracic,Impedances, Transthoracic,Plethysmographies, Transthoracic Impedance,Transthoracic Impedance,Transthoracic Impedance Plethysmographies,Transthoracic Impedances
D004582 Electronics, Medical The research and development of ELECTRICAL EQUIPMENT AND SUPPLIES for such medical applications as diagnosis, therapy, research, anesthesia control, cardiac control, and surgery. (From McGraw-Hill Dictionary of Scientific and Technical Terms, 6th ed) Medical Electronics
D004867 Equipment Design Methods and patterns of fabricating machines and related hardware. Design, Equipment,Device Design,Medical Device Design,Design, Medical Device,Designs, Medical Device,Device Design, Medical,Device Designs, Medical,Medical Device Designs,Design, Device,Designs, Device,Designs, Equipment,Device Designs,Equipment Designs
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
D012680 Sensitivity and Specificity Binary classification measures to assess test results. Sensitivity or recall rate is the proportion of true positives. Specificity is the probability of correctly determining the absence of a condition. (From Last, Dictionary of Epidemiology, 2d ed) Specificity,Sensitivity,Specificity and Sensitivity
D015203 Reproducibility of Results The statistical reproducibility of measurements (often in a clinical context), including the testing of instrumentation or techniques to obtain reproducible results. The concept includes reproducibility of physiological measurements, which may be used to develop rules to assess probability or prognosis, or response to a stimulus; reproducibility of occurrence of a condition; and reproducibility of experimental results. Reliability and Validity,Reliability of Result,Reproducibility Of Result,Reproducibility of Finding,Validity of Result,Validity of Results,Face Validity,Reliability (Epidemiology),Reliability of Results,Reproducibility of Findings,Test-Retest Reliability,Validity (Epidemiology),Finding Reproducibilities,Finding Reproducibility,Of Result, Reproducibility,Of Results, Reproducibility,Reliabilities, Test-Retest,Reliability, Test-Retest,Result Reliabilities,Result Reliability,Result Validities,Result Validity,Result, Reproducibility Of,Results, Reproducibility Of,Test Retest Reliability,Validity and Reliability,Validity, Face
D016247 Information Storage and Retrieval Organized activities related to the storage, location, search, and retrieval of information. Information Retrieval,Data Files,Data Linkage,Data Retrieval,Data Storage,Data Storage and Retrieval,Information Extraction,Information Storage,Machine-Readable Data Files,Data File,Data File, Machine-Readable,Data Files, Machine-Readable,Extraction, Information,Files, Machine-Readable Data,Information Extractions,Machine Readable Data Files,Machine-Readable Data File,Retrieval, Data,Storage, Data
D016276 Ventricular Function The hemodynamic and electrophysiological action of the HEART VENTRICLES. Function, Ventricular,Functions, Ventricular,Ventricular Functions
D017097 Electric Impedance The resistance to the flow of either alternating or direct electrical current. Bioelectrical Impedance,Electric Resistance,Impedance,Ohmic Resistance,Biolectric Impedance,Electrical Impedance,Electrical Resistance,Impedance, Bioelectrical,Impedance, Biolectric,Impedance, Electric,Impedance, Electrical,Ohmic Resistances,Resistance, Electric,Resistance, Electrical,Resistance, Ohmic,Resistances, Ohmic

Related Publications

Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
January 2008, Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
January 2010, Sensors (Basel, Switzerland),
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
January 1979, Clinical and laboratory haematology,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
March 2005, Journal of neuroscience methods,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
November 2007, Pediatric critical care medicine : a journal of the Society of Critical Care Medicine and the World Federation of Pediatric Intensive and Critical Care Societies,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
March 1980, Medical & biological engineering & computing,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
January 2006, Water science and technology : a journal of the International Association on Water Pollution Research,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
May 1981, IEEE transactions on bio-medical engineering,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
November 2014, The Review of scientific instruments,
Karthik Raghavan, and Chia-Ling Wei, and Anil Kottam, and David G Altman, and Daniel J Fernandez, and Maricela Reyes, and Jonathan W Valvano, and Marc D Feldman, and John A Pearce
July 1987, Talanta,
Copied contents to your clipboard!