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Biomedical subjects

K Hannigan

Publications and source records attributed to K Hannigan.

6 recordsLinked to original sources

A phase I trial of a 5-day schedule of intravenous topotecan and etoposide in previously untreated patients with small-cell lung cancer.

A phase I dose-escalation study was undertaken to determine the maximum tolerated dose of the intravenous combination of topotecan and etoposide in previously untreated patients with small-cell lung cancer. Nineteen patients were treated with 30-min infusions of topotecan (0.5 mg/m(2)/day for cohort 1; 0.75 mg/m(2)/day for cohort 2) followed by 1-hour infusions of a fixed daily dose of etoposide (60 mg/m(2)/day) for 5 consecutive days every 3 weeks. Patient cohort 1 (n = 7) received a total of 41 courses of chemotherapy. Grade 4 neutropenia occurred after 17% of the courses of therapy, and there was 1 episode of dose-limiting toxicity in this patient cohort. In patient cohort 2 (n = 12), a total of 64 courses of chemotherapy were administered. Grade 3 or 4 neutropenia occurred following 41 and 37% of the courses of therapy, respectively. Grade 3 thrombocytopenia occurred following 19% of the courses of therapy, and there were 3 episodes of dose-limiting toxicity in this patient cohort. There were no toxic deaths, and all nonhematologic toxicity (except hair loss) was </= grade 2. No further dose escalation was performed because of the degree of myelosuppression seen in patient cohort 2. All 19 patients were evaluable for response. Eighteen (95%) patients responded (14 partial responses and 4 complete responses) and the median survival was 10 months. This 5-day schedule of intravenous topotecan and etoposide administered sequentially on the same day is well tolerated, and the preliminary response rates were high in patients with previously untreated small-cell lung cancer.

Aged↗

Role of a perivascular ultrasonic micro-flow probe in aneurysm surgery.

There are various intraoperative monitoring devices available today for helping the neurosurgeons the progress of the intracranial aneurysm surgery. Till now the intraoperative ultrasonic blood flow probes has been used only in vascular, cardiac, and transplant surgery. In the University of Illinois at Chicago we have been able to use the same technology in various neurovascular surgeries. We describe the use of the ultrasonic perivascular blood flow probes in patients operated for clipping of intracranial aneurysm. The use of this perivascular micro-flow probe and its importance in cerebral aneurysm will be discussed.

Brain↗

Cerebral interstitial tissue oxygen tension, pH, HCO3, CO2.

BACKGROUND: There are many techniques for monitoring the injured brain following trauma, subarachnoid hemorrhage, or surgery. It is thought that the major determinants for recovery of injured cerebral tissue are oxygen, glucose delivery, and the clearance of metabolites. These factors, at optimal levels, are probably responsible for the regaining of neuronal functions. These parameters are in turn dependent on the tissue's blood flow and metabolism. METHODS: We have been using a single, compact, polyethylene sensor, the Paratrend 7 for the measurement of cerebral oxygen tension, CO2, pH, and temperature. This sensor is designed for continuous blood gas analysis to aid in monitoring neurosurgical patients, both during surgery and in the intensive care unit. RESULTS: Using the Paratrend 7 sensor, we found the normal range of values to be: PO2 33 +/- 11 mm Hg; PCO2 48 +/- 7 mm Hg; pH 7.19 +/- 0.11. Critical measurements are considered to be tissue PO2 < 10 mm Hg; PCO2 > 60 mm Hg, and pH < 6.8. We have had no complications with this device; the risks are similar to those of placing a parenchymal intracranial pressure monitor. CONCLUSIONS: We believe that assessment of interstitial cerebral oxygen saturation can be of great value both intraoperatively and postoperatively. In our experience, the Paratrend 7 system is an effective method of measuring tissue cerebral oxygen tension, along with carbon dioxide levels, pH, and temperature.

Bicarbonates↗

Brain tissue oxygen pressure, carbon dioxide pressure and pH during ischemia.

In this case we evaluated brain tissue pO2, pCO2 and pH during ischemia and arterial oxygen desaturation (hypoxia). In both situations brain pO2 decreased. During ischemia, tissue pCO2 increased while pH decreased; but both pCO2 and pH were stable during hypoxia. These results suggest that brain tissue pO2, pCO2 and pH measures provide information on tissue perfusion and oxygen availability during ischemia and hypoxia.

Brain↗

Teaching catheterization to children.

Children can learn to perform self-catheterization as early as their preschool years with the aid of newly developed teaching techniques. Clean self-catheterization is widely accepted and allows the child to remain dry, without infection, and independent in the management of the lower urinary tract.

Age Factors↗