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Biomedical subjects

K M Watson

Publications and source records attributed to K M Watson.

23 records · Page 2Linked to original sources

Correlation of gross and microscopic appearance of skin buttons in total artificial heart animals.

Pneumatic artificial hearts are powered by compressed air that is delivered through percutaneous tubes. A stress relief device, termed a skin button, surrounds these tubes as they exit from the recipient's tissues. The skin button is designed to protect the tissues from damage and provide a secure material-tissue interface. Prevention of superficial and invasive infection is the primary goal of the skin button. Eight calves were studied prospectively to identify gross or microscopic infection with the skin button. All animals who survived more than sixty days (62-136) had both gross and microscopic evidence of infection. All animals surviving less than 60 days (13-43) had no gross evidence of infection but one had subcutaneous microscopic abscess formation. No animal died secondary to a skin button infection. Skin buttons cannot prevent infection but they can contain the pathologic process in the superficial tissues with no evidence of systemic effects.

Animals↗

Remnant atrial function in human and animal recipients of a total artificial heart.

The native atria remains intact after total artificial heart (TAH) implantation. The electrical activity of the recipient's atria can be recorded from wires placed during TAH implantation. Regulating TAH heart rate by coupling it with native atrial activity has the potential for a more physiologically responsive TAH. The reactivity of the atrial impulse rate is a critical component of this link, but little is known about atrial responsiveness after TAH placement. Two human and three animal TAH recipients had recordable atrial electrical activity. Human atrial impulse rate after TAH was relatively constant at rest but unresponsive to physiologic stimuli. Analysis of human atrial contraction provided no discernable effect on ventricular filling. Animal atrial impulse rate at rest was more rapid than calves without a TAH. The bovine TAH recipients had an atrial impulse rate that responded to catecholamine stimulation and blockade. Isoproterenol caused a significant rise in atrial impulse rate (152 +/- 16 impulses per minute to 216 +/- 24 impulses per minute; p < 0.05) and propranolol caused a decrease in atrial impulse rate (142 +/- 20 impulses per minute to 122 +/- 19 impulses per minute; p > 0.05). Despite beta blockade, the atrial impulse rate remained abnormally elevated secondary to unknown factors. Animal atrial contraction did appear to intermittently augment TAH ventricular filling. These data indicate that the atria remains electrically intact after TAH implantation. The human atrial impulse rate was unresponsive to physiologic stimuli although the animal atrial impulse rate was affected by exogenous catecholamine administration, but the rate remained abnormally rapid.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Adenine nucleotide content in cold preserved human donor hearts and subsequent cardiac performance after orthotopic heart transplantation.

Myocardial high-energy phosphate content has been used as a parameter to evaluate the adequacy of donor organ preservation. The purpose of this study was to assess current techniques of preservation by measuring high-energy phosphates in cold preserved (4 degrees C) human donor hearts. Endomyocardial biopsy samples of the donor heart right ventricular septum (n = 24) were compared with samples from patients with normal cardiac function evaluated before chemotherapy (n = 12). Left ventricular and right ventricular ejection fractions were measured by means of radionuclide angiography early (24 to 72 hours) and late (mean 42 days) postoperatively. Mean total cold ischemic time was 146 +/- 54 minutes (range, 89 to 340 minutes). ATP nmol/mg noncollagenous protein in donor hearts was 38.2 +/- 10.7 and 31.9 +/- 13.6 (p = NS) in normal hearts. Early postoperative left ventricular and right ventricular ejection fraction was 55% +/- 14% and 40% +/- 9%, respectively. Late postoperative left ventricular and right ventricular ejection fraction was 64% +/- 14% and 50% +/- 10%, respectively; both represent significant increases in right and left ventricular ejection fraction (p less than 0.05). No correlation was found between ischemic time and donor ATP, ischemic time and ejection fraction, or ejection fraction and ATP. Three patients with normal donor heart ATP content had severe, but reversible, early graft dysfunction. In summary, currently used human donor heart preservation techniques are associated with normal values of high-energy phosphates and usually excellent early and late postoperative graft function.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenine Nucleotides↗

Permanent pacing in heart transplant recipients: underlying causes and long-term results.

Although the majority of heart transplant recipients have a satisfactory heart rate, a substantial number require a permanent pacemaker. In 7 of 46 heart transplant patients at our institution symptomatic bradycardia developed, necessitating implantation of a transvenous pacemaker. The average time from heart transplantation to pacer insertion was 25 days. The average donor age, ischemic period, and crossclamp time was 28 years, 182 minutes, and 113 minutes, respectively. A long aortic crossclamp time (greater than 83 minutes) increased the risk for conduction abnormalities in the sinoatrial node. No patient had rejection before the pacer implantation. Five of the seven patients continue to be paced a significant amount of a 24-hour period. Only one patient has had considerable improvement in 3 years, requiring pacing only 3% of a monitored 24-hour period. This patient had the longest ischemic time and the most rejection episodes after implantation of the pacemaker. One patient was paced 100% until a second heart transplantation was done, without a subsequent need for pacing. The other five patients' hearts continue to be paced between 80% and 100% of a 24-hour monitored period. The donor intrinsic heart rates of these five patients produce symptomatic bradycardia. The success of AAI pacing in all patients indicates normal conduction below the sinoatrial node. The injury or dysfunction resulting in bradycardia was isolated to the sinoatrial node. Long-term follow-up in three patients (greater than 3 years) shows the need for pacing to be intermittent but long term. Most patients never fully recover from symptomatic bradycardia.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Pump-induced hemolysis in a rabbit model of neonatal ECMO.

There is no significant difference in hemolysis between pediatric centrifugal pumps and roller pumps during ECMO of 8 hours duration in rabbits or in comparable 24 hour isolated pump circuits. There is also no significant difference in heat production by either pump. Reports of severe hemolysis using the centrifugal pump in neonatal ECMO are likely due to other factors. Proper cannula selection and positioning are important measures to reduce hemolysis by minimizing circuit pressure and maximizing venous return. Avoidance of inadvertently high rotor speed in the centrifugal pump is also recommended.

Adult↗