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Biomedical subjects

R M Peters

Publications and source records attributed to R M Peters.

At least 55 records · Page 3Linked to original sources

Estimation of the volume of lung below the left atrium using computed tomography.

Gravity has significant effects on the microvascular pressure in the lungs and thus on regional fluid filtration in the lungs. Below the level of the heart, gravity increases the microvascular pressure with respect to the left atrial pressure; above the level of the heart, microvascular pressure is less than atrial pressure. To assess the contribution of gravity to fluid filtration in the lungs independent of left-heart filling pressure, the distribution of lung volume above and below the left atrium must first be determined. To permit calculation of the contribution of hydrostatic pressure per unit of lung volume, 26 computed tomographic scans of the entire chest were traced and measured, marking the level of the center of the left atrium (LAL) on each slice. The intrathoracic volume above and below the left atrium was measured by multiplying scan slice thickness by the area of the lung above or below the LAL measured on each scan slice. On 16 scans, intrathoracic volumes of 1-cm horizontal layers of lung above and below the LAL were also calculated by measuring corresponding segments of the transverse scan slices. The calculations indicate that in the supine posture more lung is dependent than when upright, and that elevation of a patient to 30 degrees reduces the volume of lung below the LAL nearly as much as does the upright posture.

Heart Atria↗

Nocturnal periodic breathing at altitudes of 6,300 and 8,050 m.

Nocturnal periodic breathing was studied in eight well-acclimatized subjects living at an altitude of 6,300 m [barometric pressure (PB) 350-352 Torr] for 3-5 wk and in four subjects during one night at 8,050 m altitude (PB 281-285 Torr). The measurements at 6,300 m included tidal volume by inductance plethysmography, arterial O2 saturation by ear oximetry (calibrated by arterial blood samples), electrocardiogram (ECG), and electrooculogram. At 8,050 m, periodic breathing was inferred from the cyclical variation in heart rate obtained from a night-long ECG record. All subjects at 6,300 m altitude showed well-marked periodic breathing with apneic periods. Cycle length averaged 20.5 s with 7.9 s apnea. Minimal arterial O2 saturation averaged 63.4% corresponding to a PO2 of approximately 33 Torr, i.e., approximately 6 Torr lower than the normal value at rest during daytime. This was probably the most severe hypoxemia of the 24-h period. At 8,050 m altitude, the cycle length averaged 15.4 s, much longer than predicted by a theoretical model. Cyclical variations in heart rate caused by periodic breathing occurred in all subjects, but abnormal cardiac rhythms such as ventricular premature contractions were uncommon. The severe arterial hypoxemia caused by periodic breathing may be an important determinant of tolerance to these great altitudes.

Adult↗

Comparison of isotonic and hypertonic fluids in resuscitation from hypovolemic shock.

Hypertonic electrolyte solutions provide effective fluids for resuscitation of burn patients and concurrent replacement of hemorrhage. Infusion of mannitol has also been advocated as a means of increasing cardiac output in acutely ill patients. Pigs which were bled to one-third of their blood volume were used in this random study of resuscitation with Ringer's lactate solution (RL), hypertonic saline solution (HSL) and RL with mannitol added (HMR) to give the same osmolality as HSL. Smaller volumes of the hyposmolar solution than of RL restored blood pressure and cardiac output. RL and HSL restored and maintained cardiac output more effectively than HMR. At 24 hours, HSL maintained blood pressure most effectively.

Animals↗

Nucleotide sequence and genetic organization of the genome of the N-specific filamentous bacteriophage IKe. Comparison with the genome of the F-specific filamentous phages M13, fd and f1.

The nucleotide sequence and genetic organization of the genome of the N-specific filamentous single-stranded DNA phage IKe has been established and compared with that of the F-specific filamentous phages M13, fd and f1 (Ff). The IKe DNA sequence comprises 6883 nucleotides, which is 476 (475) nucleotides more than the nucleotide sequence of the Ff genome. The data indicate that IKe and Ff have evolved from a common ancestor (overall homology approx. 55%) and that their genomes contain ten homologous genes, the order of which is identical. Similar to Ff, the major coat protein and the gene III-encoded pilot protein of IKe are synthesized via precursor molecules. The extent of homology between the genes of IKe and Ff differs significantly from one gene to another. Genes that code for viral capsid proteins are less homologous than genes whose products are involved in the processes of DNA replication and phage morphogenesis. During evolution, large nucleotide sequence rearrangements have occurred in the gene (gene III) whose product is needed for the attachment of the virion to the conjugative pili of the host cell, suggesting that these rearrangements have led to phages with different host specificities. Extensive nucleotide sequence homology was noted between the structural elements involved in DNA replication and phage morphogenesis, indicating that the mechanisms involved in DNA replication and morphogenesis are highly conserved.

Base Sequence↗

Perspectives in ICU computing.

Computers have unrealized potential in investigation and clinical care. Computers in Critical Care and Pulmonary Medicine must serve as a catalyst to focus these efforts. The goal must be development of practical, cost effective systems to facilitate the collection, recording and interpretation of data relevant to the management of the ICU patient. The ultimate goal is to provide feedback control where appropriate. To reach this goal, data relevant to the elements of the gas exchange system - the heart, the lungs, and ventilatory pump - are essential and analysis systems are needed. Analysis must interpret the interaction between circulatory and lung function and between lung, chest wall and diaphragm mechanics and gas exchange.

Computers↗

A personal computer system for testing gas exchange, heart, lungs, ventilatory pump.

This paper reports the development of a computer system for testing gas exchange and lung function in the ICU. The essence of the system is a software package that uses an IBM personal computer for data processing and analysis. Front end hardware is modular, as is software, so that portions or all of the system can be used. The system provides measurements of lung mechanics work, functional residual volume, spirometry, oxygen uptake, carbon dioxide output, lung water, blood gas interpretation, hemodynamics. Reports are provided by standard data base manager and so are easily customized.

Computers↗

The electrocardiogram at extreme altitude: experience on Mt. Everest.

The American Medical Research Expedition to Mt. Everest provided a unique opportunity to record 12-lead resting ECGs in one of the largest groups studied to date at extreme altitude (19 men, aged 25 to 52 years). Twelve of the 19 subjects had four recordings breathing ambient air: May, 1981, at sea level; September at base camp (5400 meters); October at camp 2 (6300 meters); and January through May, 1982, after descent. Five subjects had no recording at camp 2 and two of them had no postdescent record. In the 12 subjects in whom all four recordings were obtained, data were analyzed by means of a two-way analysis of variance. Resting heart rate increased from 57 +/- 11 (SD) to 70 +/- 12 bpm at base camp and to 80 +/- 11 bpm at camp 2 (p less than 0.001). P wave amplitude in standard lead II increased from 0.09 +/- 0.06 to 0.13 +/- 0.045 mv at camp 2 (p less than 0.05); QTc decreased from 424 +/- 72 to 318 +/- 48 msec (p less than 0.001). Mean frontal plane QRS axis increased from +64 +/- 18 degrees to +78 +/- 20 degrees at base camp (p less than 0.001) and to +85 +/- 28 degrees at camp 2 (p less than 0.001). At extreme altitude, three subjects exhibited right bundle branch conduction disturbances and three others showed changes consistent with right ventricular hypertrophy. Seven developed flattened T waves and four developed T wave inversions. One developed premature ventricular beats and one developed premature atrial beats.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Improving specificity of computed tomography in diagnosis of malignant mediastinal lymph nodes.

Four parameters of lymph node appearance on computed tomography were studied to improve specificity for malignancy in bronchogenic carcinoma: 1) node location, 2) homogeneity, 3) border definition, and 4) delineation by fat. Of 54 carcinoma patients, nodes were pathologically malignant in 21. Computed tomography showed enlarged nodes (over 1 cm) in 20 of these (true-positive rate, 96%), but also in 13 of the 33 patients with pathologically benign lymph nodes (false-positive rate, 39%). A combination of all four computed tomography parameters reduced the false-positive rate from 39 to 21% and decreased the true-positive rate from 96 to 86%. The criterion of border definition alone reduced the false-positive rate from 39 to 6%, but decreased the true-positive rate from 96 to 61%. The most useful computed tomography parameter was delineation, which reduced the false-positive rate to 15% and decreased the true-positive rate only to 86%. The computed tomography appearance of enlarged lymph nodes may be used to improve selection of patients with enlarged nodes for preoperative biopsy.

Carcinoma, Bronchogenic↗

Acetazolamide and exercise in sojourners to 6,300 meters--a preliminary study.

To examine the effect of acetazolamide on resting acid-base balance and on exercise performance at extreme altitude, we studied four members of the American Medical Research Expedition to Mount Everest at an altitude of 6,300 meters. After an initial progressive exercise test to exhaustion on a bicycle ergometer, subjects were re-studied after taking acetazolamide 250 mg every 8 h for three doses. We measured venous blood during rest for determination of hemoglobin, hematocrit, 2,3-diphosphoglycerate (DPG), bicarbonate, pH, P50, and arterial oxygen saturation by ear oximeter. The results showed that pH, bicarbonate, and DPG:hemoglobin ratio were lower on acetazolamide, whereas P50 at in vivo conditions was unchanged. Exercise ventilation and oxygen consumption for the same workload were slightly higher after acetazolamide, whereas VCO2/VO2 respiratory exchange ratio (R) was lower, and oxygen saturation was unchanged. Two of four subjects had decreased time at maximum workload on acetazolamide; none had an increased performance. The results of this study show that partial carbonic anhydrase inhibition in individuals sojourning to very high altitude produces a further base deficit and a metabolic acidosis, stimulates ventilation, and may impair maximum exercise performance. Although acetazolamide effectively prevents acute mountain sickness, it does not improve performance, and may even impair exercise performance at extreme altitude.

Acetazolamide↗

Sensitivity of chest radiography, computed tomography, and gallium scanning to metastasis of lung carcinoma.

To determine the efficacy of radiologic techniques in preoperative staging of the mediastinum for lung carcinoma, the authors studied 45 patients with chest films supplemented with oblique views, esophagrams, gallium scans, and computed tomograms (CT). They interpreted the studies and correlated surgical findings using a modified classification of lymph node regions. The mediastinum was positive on chest films in 14 of the 21 cases with pathologically proved mediastinal metastases (33% false-negative). Gallium scans in cases with a positive primary were positive in 12 of 15 cases with mediastinal or hilar metastases (20% false-negative). Computed tomography showed nodes over 1 or 1.5 cm in size in or adjacent to the biopsy-positive node region in 18 of 19 patients (5% false-negative), extranodal mediastinal involvement, and 9 of 10 proven hilar metastases. Computed tomography is a sensitive screening technique in patients who would otherwise require an invasive staging procedure, but is not highly specific (false-positive rate 38%).

Diagnostic Errors↗

Automatic mechanical alveolar gas sampler for multiple-sample collection in field.

A mechanical alveolar gas sampler using the revolver principle capable of collecting six individual expired gas samples is described. The 0.91-kg sampler collects 19-ml samples in pre-evacuated aluminum ampoules equipped with spring-loaded valves from a sampling chamber equipped with two removable one-way valves. On depression of external handles, one of six ampoules located in a removable cartridge is aligned and advanced into the sampling chamber where its valve is opened and then closed. Releasing the handles removes the ampoule from the sampling chamber and automatically rotates the cartridge through 60 degrees to position a new ampoule in preparation for the next sampling sequence. A lock-out mechanism prevents reexposure of any of the ampoules after six samples have been taken. The performance of the sampler is described including its successful use in the field to collect alveolar gas samples on the summit of Mount Everest.

Altitude↗

Relationship of hypoxic ventilatory response to exercise performance on Mount Everest.

At very high altitude, exercise performance in the human sojourner may depend on a sufficient hypoxic ventilatory response (HVR). To study the relationship of HVR to exercise performance at high altitude, we studied HVR at sea level and 5,400 m and exercise ventilation at sea level, 5,400 m, and 6,300 m in nine members of the American Medical Research Expedition to Everest. The relationship of HVR between individuals was maintained when HVR was repeated after acclimatization to 5,400 m (P less than 0.05). There was a significant correlation in all subjects between HVR and ventilatory equivalent during exercise at sea level (r = 0.704, P less than 0.05). Subjects were then grouped into high (H) and low (L) HVR responders (ventilation increase to end-tidal PO2 of 40 Torr = 21.2 +/- 5.4 and 5.6 +/- 0.9 1 X min-1, respectively. At low and moderate levels of exercise, ventilation at sea level and after acclimatization to 6,300 m was higher in the high HVR group. At 6,300 m blood O2 saturation (Sao2%) decreased from rest to maximum exercise: H = 8.3 +/- 1.8%, L = 20.0 +/- 2.5% (P less than 0.01). HVR correlated inversely in all subjects with the decrease in Sao2 from rest to maximum exercise (P less than 0.05). Climbers with the highest HVR values reached and slept at higher altitudes. We conclude that the relative value of HVR in our group of climbers was not significantly altered after acclimatization; HVR predicts exercise ventilation at sea level and high altitude; the drop in Sao2% that occurs with exercise is inversely related to HVR; and sojourners with high HVR may perform better at extreme altitude.

Altitude↗

Postpneumonectomy pulmonary edema.

Postpneumonectomy pulmonary edema has become a worldwide problem. Study of data available from some of these patients implicates excessive perioperative volumes of intravenous fluid. A study done on dogs supports the clinical conclusion. The risk factors for this complication are right pneumonectomy, large perioperative fluid load, and high intraoperative and postoperative urine outputs. Patients undergoing pneumonectomy are at greater risk from intravenous fluid therapy than other types of patients.

Animals↗

The effect of pH on the hypothermic ventricular fibrillation threshold.

During cardiac operations using hypothermia, the pH measured at 37 degrees C (and corrected to the patient's body temperature) is generally kept at 7.40. However, ectotherms (cold-blooded animals) regulate pH alkaline of 7.40 as temperature falls, e.g., pH 7.58 at 25 degrees C. Hypothermia and acidosis increase the propensity for ventricular fibrillation (VF). This study was undertaken to determine which scheme of pH regulation during hypothermia provided the highest level of cardiac electrical stability. Eleven dogs underwent median sternotomy and implantation of right ventricular and limb electrodes, aortic and central venous pressure catheters, and a probe to measure pulmonary artery blood temperature. To determine the VF threshold, a programmable stimulator was used to find the minimum current needed to produce VF by sweeping the vulnerable period of the cardiac cycle. The animals were divided into two groups for pH management: eight in the clinical scheme (pH 7.4) and seven in the ectothermic scheme, where pH varied with temperature. Control values were recorded prior to cooling and then repeated when core cooling had lowered the temperature to 25 degrees C. In the clinical group, the VF threshold decreased from 23.1 +/- 4.1 mA at 37 degrees C to 17.0 +/- 3.4 mA at 25 degrees C (p = 0.002); in the ectothermic group, the VF threshold was unchanged by hypothermia (23.7 +/- 3.2 to 22.8 +/- 2.8 mA). Heart rate and arterial and central venous pressures were not different between the groups at either temperature. Corrected arterial pH and PCO2 were unchanged from control in the clinical group at 25 degrees C (pH 7.40 +/- 0.01, arterial PCO2 34 +/- 2 torr), whereas arterial PCO2 was maintained at 20 +/- 1 torr to achieve pH 7.59 +/- 0.01 in the ectothermic group. Five of the eight dogs in the clinical group had spontaneous VF while cooling, as compared to one of the seven dogs in the ectothermic group. These studies demonstrate that allowing the corrected pH to rise with hypothermia and remain alkalotic relative to pH 7.4 improves the electrical stability of the heart during hypothermia, as evidenced by the VF threshold at 25 degrees C. Since the ectothermic scheme increases the electrical stability of the heart, it could decrease the incidence of VF during hypothermia and decrease the temperature at which VF occurs during hypothermic cardiopulmonary bypass.

Animals↗

Crystalloid versus colloid in fluid resuscitation of patients with severe pulmonary insufficiency.

Forty-six patients with severe pulmonary insufficiency were prospectively studied to compare the effects of resuscitation with either crystalloid or colloid. By random number, 26 patients received RL and 20 patients received 5 per cent ALB to maintain hemodynamic stability. Groups were comparable with respect to the cause of pulmonary insufficiency, age and sex. For the duration of the study and at 48 hours, there was no statistically significant difference between groups with respect to the following: cardiac index, colloid osmotic pressure (COP), pulmonary capillary wedge pressure (PCWP), COP-PCWP gradient, right and left ventricular stroke work indices, and amount of constant positive airway pressure required for treatment. Both groups had a significant improvement in intrapulmonary shunt (Qs/Qt) after 24 hours of treatment. The Qs/Qt in the ALB group was significantly lower than the RL group at the termination of the study, but this did not affect outcome. The RL group required more fluid than the ALB group, but the difference was not statistically significant. No clinical advantage was found for either solution in this study.

Adult↗

Barometric pressures at extreme altitudes on Mt. Everest: physiological significance.

Barometric pressures were measured on Mt. Everest from altitudes of 5,400 (base camp) to 8,848 m (summit) during the American Medical Research Expedition to Everest. Measurements at 5,400 m were made with a mercury barometer, and above this most of the pressures were obtained with an accurate crystal-sensor barometer. The mean daily pressures were 400.4 +/- 2.7 (SD) Torr (n = 35) at 5,400 m, 351.0 +/- 1.0 Torr (n = 16) at 6,300 m, 283.6 +/- 1.5 Torr (n = 6) at 8,050 m, and 253.0 Torr (n = 1) at 8,848 m. All these pressures are considerably higher than those predicted from the ICAO Standard Atmosphere. The chief reason is that pressures at altitudes between 2 and 16 km are latitude dependent, being higher near the equator because of the large mass of cold air in the stratosphere of that region. Data from weather balloons show that the pressure at the altitude of the summit of Mt. Everest varies considerably with season, being about 11.5 Torr higher in midsummer than in midwinter. Although the mountain has been climbed without supplementary O2, the very low O2 partial pressure at the summit means that it is at the limit of man's tolerance, and even day-by-day variations in barometric pressure apparently affect maximal O2 uptake.

Altitude↗

Pulmonary gas exchange on the summit of Mount Everest.

Pulmonary gas exchange was studied on members of the American Medical Research Expedition to Everest at altitudes of 8,050 m (barometric pressure 284 Torr), 8,400 m (267 Torr) and 8,848 m (summit of Mt. Everest, 253 Torr). Thirty-four valid alveolar gas samples were taken using a special automatic sampler including 4 samples on the summit. Venous blood was collected from two subjects at an altitude of 8,050 m on the morning after their successful summit climb. Alveolar CO2 partial pressure (PCO2) fell approximately linearly with decreasing barometric pressure to a value of 7.5 Torr on the summit. For a respiratory exchange ratio of 0.85, this gave an alveolar O2 partial pressure (PO2) of 35 Torr. In two subjects who reached the summit, the mean base excess at 8,050 m was -7.2 meq/l, and assuming the same value on the previous day, the arterial pH on the summit was over 7.7. Arterial PO2 was calculated from changes along the pulmonary capillary to be 28 Torr. In spite of the severe arterial hypoxemia, high pH, and extremely low PCO2, subjects on the summit were able to perform simple tasks. The results allow us to construct for the first time an integrated picture of human gas exchange at the highest point on earth.

Acid-Base Equilibrium↗