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Biomedical subjects

K Lunn

Publications and source records attributed to K Lunn.

4 recordsLinked to original sources

Assessment of ventricular contractility during cardiac magnetic resonance imaging examinations using normalized maximal ventricular power.

Normalized maximal ventricular power (nPWRmax) is an index of cardiac function which measures the innate blood pumping ability, or contractility, of the left ventricle (LV), and its noninvasive assessment could prove useful in a variety of patients. nPWRmax is defined as the maximum instantaneous product of LV pressure and the rate of change of LV volume, divided by the end diastolic volume squared. We have quantified nPWRmax noninvasively in humans by pairing magnetic resonance imaging (MRI) LV volume measurements with aortic pressure estimated using radial artery tonometry and a frequency domain transfer function. In healthy volunteers undergoing cardiac MRI we have tested the sensitivity of nPWRmax to LV contractility with dobutamine and to cardiac loading with methoxamine, a vasoconstrictor. We have found that aortic pressures can be reliably estimated using a transfer function, which we generated and validated in a group of patients undergoing cardiac catheterization. Furthermore, we found that nPWRmax was unchanged by methoxamine, yet sensitive to contractility, with a 325% increase at dobutamine levels half that given during routine clinical cardiac stress tests for ischemia. In conclusion, we have shown that ventricular contractility can be assessed independent of cardiac loading in patients during routine noninvasive cardiac imaging examinations.

Adult↗

Intra-operative image updating.

Intraoperative brain shift and deformation pose challenges for image-guided surgery. One strategy to address these problems utilizes computational modeling coupled with intraoperatively acquired information from efficient and economical sources such as ultrasound and the optics of the operating microscope. Calibration algorithms for the accurate integration of these sparse data sources have been implemented. Assessment has been performed in both phantom and pig brain models, and accuracy better than 2 mm has been achieved. Methods of incorporating these data into the computational model are being developed.

Animals↗

ST-segment depression during sleep in obstructive sleep apnea.

It was hypothesized that obstructive sleep apnea may precipitate myocardial ischemia, reflected by ST-segment depression, in some patients during sleep. Overnight sleep studies and simultaneous 3-channel Holter monitoring were performed on 23 consecutive patients with obstructive sleep apnea without a history of coronary artery disease. Each patient was randomly assigned to nasal continuous positive airway pressure for the first half of the night. An episode of significant ST depression was defined as > 1 mm from baseline for > 1 minute. The total duration (minutes) of ST depression was indexed to the total sleep time (minutes per hour of sleep). Seven patients (30%) had ST depression during sleep. In all 7 patients the duration of ST depression decreased during nasal continuous positive airway pressure (30 +/- 18 vs 11 +/- 13 minutes per hour of sleep) in association with a reduction in the apnea-hypopnea index (65 +/- 35 vs 7 +/- 6/hour), arousal index (49 +/- 14 vs 6 +/- 4/hour) and the duration that oxygen saturation was < 90% (44 +/- 27 vs 12 +/- 23% total sleep time). When patients were not on nasal continuous positive airway pressure, the apnea-hypopnea and arousal indexes were higher during periods of ST depression than when ST segments were isoelectric, whereas oxygen saturation was not different. These 7 patients underwent exercise testing, which was positive for inducible myocardial ischemia in 1 patient. It is concluded that ST depression is relatively common in patients with obstructive apnea during sleep and that the duration of ST depression is significantly reduced by nasal continuous positive airway pressure.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗