PubMed Health⌕ Search

Biomedical subjects

M Trenkner

Publications and source records attributed to M Trenkner.

At least 19 recordsLinked to original sources

Prevention and reperfusion injury following cardioplegic arrest by pulsatile flow.

To assess the efficacy of pulsatile flow in minimizing reperfusion injury following cardioplegic arrest, 20 dogs supported by cardiopulmonary bypass underwent 60 minutes of hypothermic, hyperkalemic crystalloid cardioplegic arrest. The effects of pulsatile flow (Group 2), initiated during 30 minutes of reperfusion, on myocardial adenosine triphosphate (ATP) and creatine phosphate (CP) stores, coronary blood flow, and myocardial water content were compared with the effects of linear flow reperfusion (Group 1). Myocardial ATP stores were maintained at preischemic levels by this mode of myocardial protection. However, pulsatile flow prevented the significant decline in ATP levels incurred during linear reperfusion. Creatine phosphate stores, although depleted during arrest, were restored equally, regardless of the mode of reperfusion. The decline in ATP stores was associated with no pathological increase in myocardial water content, but was associated with persistent reactive hyperemia. In contrast, after 30 minutes of pulsatile reperfusion, coronary blood flow was significantly decreased compared with preischemic flow. These data indicate that pulsatile reperfusion can prevent the unique decline in ATP levels associated with the restoration of coronary flow after cardioplegic arrest (reperfusion injury), and support its continuing evaluation as an adjunct to adequate intraoperative myocardial protection.

Adenosine Triphosphate↗

Biomechanics of the pulmonary autograft valve in the aortic position.

Pulmonary autograft valve replacement has been simulated by implanting the pulmonary valve into the aortic position of the same cadaver heart from both human and porcine sources. The forces acting on the pulmonary valve leaflets have been calculated on the basis of a triaxial ellipsoid mathematical model. These forces on the pulmonary autograft valve were shown to be essentially similar to those previously reported for aortic valve leaflets. Biomechanical measurements have been made on the simulated autograft valves and on the isolated pulmonary valve cusps. The tensile strengths of the pulmonary valve cusps in both circumferential and radial directions were roughly three times greater than those of aortic valve cusps. This indicated the ability of the pulmonary valves to accept, ab initio, aortic valve closing pressures. Pressure-induced changes in dimension, calculated on the basis of diameters of the simulated pulmonary autograft root, also indicated that the distensibility of the autograft valve was limited. It reached a maximum at 30 mm Hg (4 kPa) without any suggestion of further distension to the point of distortion and incompetence. The combination of the calculated forces acting on the valve and the biomechanical measurements have shown that pulmonary valves used as autograft aortic valve replacements are able to tolerate aortic pressures from the time of implantation. These experimental results from simulated autografts support the clinical use of this valve over the past 13 years.

Animals↗

Pulsatile reperfusion does not modify global myocardial ischemic injury.

In an attempt to arbitrate the reputed clinical efficacy of pulsatile flow during reperfusion in minimizing ischemic injury, 32 mongrel dogs supported by normothermic cardiopulmonary bypass were subjected to 30 minutes (Groups IC and IP) or 60 minutes (Groups IIC and IIP) of global myocardial ischemia. The effect of pulsatile flow (P) initiated during 30 minutes of reperfusion on the recovery of myocardial adenosine triphosphate (ATP) and creatine phosphate (CP) stores, coronary blood flow, and myocardial water content (MWC) was compared to the effect of linear reperfusion (C) in another group of animals. ATP stores, which significantly decreased to 43% and 53% of preischemic levels (Groups IC and IP, respectively, p less than 0.01) and 36% and 31% of control values (Groups IIC and IIP, respectively. p less than 0.001), did not increase with either pulsatile or linear reperfusion. CP stores, depleted 97% during ischemia in all groups, returned to preischemic levels regardless of the mode of reperfusion flow. Coronary blood flow measured 30 minutes after aortic unclamping was not significantly different from control flow in any group. MWC significantly decreased during ischemia from 80.5% +/- 0.8% to 76.5% +/- 1.1% in Group IC and from 81.8% +/- 1.2% to 76.8% +/- 0.8% in Groups IP (p less than 0.05) and returned to preischemic levels with reperfusion. However, following 60 minutes of ischemia, pulsatile reperfusion prevented the significant increase in MWC that accrued after linear reperfusion (80.7% +/- 1.5% to 84.0% +/- 0.7%, p less than 0.05). These data indicate that pulsatile reperfusion initiated after an ischemic injury that results in a 50% or greater depletion of myocardial ATP stores does not restore myocardial nucleotide levels or enhance coronary blood flow, although the pathological increase in MWC may be avoided.

Adenosine Triphosphatases↗

[Experience with mediastinoscopy (author's transl)].

Results of 330 mediastinoscopies are presented. Mediastinoscopy showed to be a safe and reliable method in the diagnosis of systemic lymphatic disorders. Mediastinoscopy was not performed as a routine method. Therefore it is difficult to evaluate its significance in the qualification for surgical treatment in the carcinoma of the lungs. Nevertheless the use of this method may spare unnecessary explorative thoracotomy in many patients. Possibilities of therapeutic use of mediastinoscopy are presented.

Carcinoma, Bronchogenic↗