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Biomedical subjects

D R Daum

Publications and source records attributed to D R Daum.

3 recordsLinked to original sources

Hemodynamic sensors.

Present adaptive-rate pacemakers use a range of sensors for implementation in open-loop and closed-loop control systems. Hemodynamic sensors that detect the mechanical action of the heart and blood flow offer additional features to implement physiologic rate adaption in rate-controlling systems and rate-limiting systems. Examples of 2 such sensors are presented.

Arrhythmias, Cardiac↗

In vivo demonstration of noninvasive thermal surgery of the liver and kidney using an ultrasonic phased array.

A 256-element, continuous-wave ultrasonic phased array has been used to thermally coagulate deep-seated liver and kidney tissue. The array elements were formed on a 1-3 piezocomposite bowl with a 10-cm radius of curvature and 12-cm diameter. The 0.65 x 0.65 cm2 projection elements were driven at 1.1 MHz by a custom-built amplifier system. A series of in vivo porcine experiments demonstrated the ability to coagulate liver and kidney tissue using the large-scale phased array. The temperature response of the treatment was guided and monitored using magnetic resonance (MR) images. Focal lesion volumes greater than 0.5 cm3 in kidney and 2 cm3 in liver were formed from a single 20-s sonication.

Animals↗

Theoretical design of a spherically sectioned phased array for ultrasound surgery of the liver.

GOAL: The theoretical explanation of the limits of an array transducer to coagulate large tissues volumes. METHODS: A theoretical model is used to illustrate the focal limitations of a spherically sectioned array designed for the treatment of deep seated tissue, e.g. liver. The design optimizes the acoustic dose as a function of the focal depth and available acoustic aperture with the goal of coagulating large volumes in a single sonication period. A quantitative measure of the possible region of focal necrosis is modeled as a function of array parameters with the limiting criteria being near field heating and patient pain. RESULTS: Acoustic simulations show that the maximum distance to produce continuous necrosis between foci in a multiple focus pattern and in a temporally multiplexed pattern is approximately 50% larger than the distance needed between sequential foci. CONCLUSION: Multiple focus patterns or rapidly scanned single foci are significantly advantageous to sequential sonications of a single focus transducer.

Algorithms↗