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Biomedical subjects

K Horsfield

Publications and source records attributed to K Horsfield.

At least 37 records · Page 2Linked to original sources

Effect of atropine on alveolar gas mixing in man.

1. Atropine is known to diminish bronchomotor tone. In order to investigate the acute effect of atropine on respiration and alveolar gas mixing, a dose of 2.4 mg was given intravenously. 2. Ten normal male volunteers were each studied three times with a nitrogen washout method, once before administration of atropine and then 20 min and 60 min thereafter. 3. After the administration of atropine there was a reduction in tidal volume, a slight increase in frequency of respiration and an increase in series dead space. The tidal mixing volume showed a fall of 25%. In spite of the reduced alveolar dead space the effective mixing volume fell by 29%. Multi-breath alveolar mixing efficiency fell by 3.5%. 4. Multi-breath alveolar mixing efficiency was found to be less with smaller tidal mixing volumes, a fall of 518 ml in the latter causing a reduction of 17.2% in mixing efficiency. 5. A reduction of 100 ml in tidal volume in normal subjects was associated with a decrease of 6.9% in alveolar mixing efficiency. In the subjects receiving atropine tidal volume reduced by 96 ml, but the observed fall in alveolar mixing efficiency was only 3.5%, This suggests an improvement in alveolar mixing of 3.4% due to the administration of atropine. Despite this small improvement, the mixing efficiency is still only 66%. The residual inefficiency of 34% cannot therefore be explained on the basis of bronchomotor tone.

Adult↗

An asymmetrical model of the airways of the dog lung.

A resin cast of the bronchial tree of a dog was studied down to branches of 0.5-mm diameter. The branches were ordered, and the number of branches, mean diameter, and mean length of branches in each order were determined. The model was developed from these data with the property that delta, the difference in order between the two daughter branches at a bifurcation, is identical for all parent branches of a given order. This property facilitates the use of the model for the calculation of physiological variables such as input impedance (Fredberg and Hoenig, ASME J. Biomech. Eng. 100: 57-66, 1978), and the comparison of such results with those obtained from symmetrical models (Sidell and Fredberg, ASME J. Biomech. Eng. 100: 131-138, 1978).

Animals↗

Gas mixing in a model of the pulmonary acinus with asymmetrical alveolar ducts.

An asymmetrical model of the human pulmonary acinus is described, in which elements of volume are represented by nodes joined by conductors permitting convective flow and molecular diffusion. The method of analysis permits simultaneous convection, diffusion, and dimensional change in any direction and requires only simple boundary conditions. Inspiration of O2 into a resident gas of 79% N2 followed by expiration was simulated at two flows. On expiration the slope of the alveolar plateau was 1.7%, and the alveolar N2 mixing efficiency was 97.0%. A symmetrical but otherwise similar model gave a slope of zero and a mixing efficiency of 99.9%. The patterns of gas concentration within the asymmetrical acinus during the respiratory cycle confirm and extend previous observations on the interactions between simultaneous convection and diffusion in asymmetrical structures (16, 21, 22). Even though these in combination within alveolar duct asymmetry can account for the slope of the alveolar plateau, they are insufficient to account for the failure of complete gas mixing found in normal subjects.

Humans↗

Effect of heart rate and stroke volume on gas mixing in dog lung.

In nine anesthetized and ventilated dogs heart block was induced at thoracotomy, a pacemaker was inserted, and an electromagnetic flow transducer was placed round the main pulmonary artery. The chest was then closed. Stroke volume (SV) was varied by changing central blood volume. Ventilatory dead space (VDS) and alveolar nitrogen mixing efficiency (ANME) were measured at three levels of heart rate (HR) and three levels of SV independently varied during life and also after cessation of heartbeat. Neither VDS nor ANME showed a significant change with HR or SV during life, but mean VDS increased by 43 ml (22%) and mean ANME decreased by 4.4% postmortem. We conclude that cardiac action increases gas mixing at the interface between inspired and resident gas but has only a small effect on gas mixing distal to the interface during respiration without breath holding.

Animals↗

Morphometry of pulmonary arteries from angiograms in chronic obstructive lung disease.

The application of morphometric techniques based on Strahler orders to the study of pulmonary angiograms is described. When the pulmonary arterial tree is ordered by Strahler's method, peripheral branches have the lowest orders and the main pulmonary artery the highest order. The mean diameter of vessels in each order can then be determined. Pulmonary angiograms were obtained from 16 patients, 10 of whom had chronic obstructive lung disease (COLD), the other six having normal angiograms. Six orders of branching were found in vessels of 1 mm diameter or greater, and a plot of log mean diameter versus order from the normal angiograms was linear. The mean diameters of orders 2, 3, and 4 (diameter 2 to 7 mm) from COLD patients were significantly reduced ((p less than 0.01) and the log mean diameter versus order plot was concave upwards. These changes were more marked when TLC was raised than when it was normal. Plots of diameters of vessels from zones of the lung in which the pathology was well advanced (as judged by radiological changes) showed even greater reduction in the middle orders. These changes are probably the result of stretching of vessels in emphysematous lesions and diminution of blood flow from loss of capillary bed.

Adult↗

Branching angles in the bronchial tree related to order of branching.

Angles of branching in the bronchial tree were measured in one greyhound dog lung cast, and analysed from the data for man, dog, rat and hamster obtained by Raabe et al. (1976). The bronchial trees were ordered by both Strahler's and Horsfield's methods and angles classified by the value of delta, a measure of asymmetric branching defined as the difference in order between the branches forming the angle. Angles were also classified by their position in the bronchial tree, according to the order of the parent branch. It was found that whereas in the greyhound lung mean branching angle decreased with increasing order, there was no consistent trend in the data of Raabe et al., at least down to 3 mm diameter bonchi in man and 2 mm diameter bronchi in beagle dogs. There was, however, a decrease in main branch angle and an increase in minor branch angle with increasing delta.

Animals↗

Diameter, length and branching angles of the upper airways in the dog lung.

Polyester resin casts were made of the upper airways of 15 dog lungs. Diameter, length, and branching angles were measured, and the dimensions were normalized by dividing by cube root of body weight. The data are presented to facilitate experimental work on dog lungs, involving procedures such as intubation of individual lobar bronchi.

Animals↗

Morphometry of the small pulmonary arteries in man.

From a resin cast of a normal pulmonary arterial tree, the diameter, length, and number of branches in each order were determined for arteries from 25 to 300 micrometer in diameter. Histological sections 120-micrometer thick were cut from a normal human lung in which the pulmonary artery had been injected with a mixture of ink and gelatin. Similar measurements were made on arteries from 10 to 70 micrometer in diameter, and the mode of origin of the capillaries was studied. The data thus obtained were found to correspond reasonably well to values previously estimated by extrapolation from data for arteries of 100 micrometer or more in diameter. The branching rules apply down to arteries of about 10-15 micrometer in diameter, the estimated number of which is 73 million. Distal to these vessels, capillaries arise either directly from small arteries or indirectly via precapillaries which are given off in great numbers and diverse patterns from the small arteries

Capillaries↗

Morphology of branching trees related to entropy.

Analyses of river systems by geomorphologists have suggested that for minimal entropy production in the movement of water down the river the fall in altitude should be equal in each order of branching of the tributaries. In this paper the same concepts have been applied to the bronchial tree and pulmonary arterial tree, assuming that the energy associated with pressure difference is analogous to that associated with altitude difference in rivers. The morphology of the bronchial tree is such that, given laminar flow or air, the calculated pressure difference across each order is equal. This may indicate that the bronchial tree is designed for minimal entropy production. In the arterial tree, however, this result is not obtained, probably because we do not know how to calculate the pressure drop in blood flowing through a branching system. It is therefore not currently possible, on the basis of this approach, to say whether the pulmonary arterial tree is designed for minimal entropy production or not.

Airway Resistance↗

Postnatal growth of the dog's bronchial tree.

Polyester resin casts of the bronchial tree were made from the lungs of four Labrador dogs which weighed 0.5, 3.4, 7.5 and 30.0 kg, respectively. The branching trees were ordered by the method of Strahler and plots made of number, mean diameter and mean length of branches in each order. The four length plots were found to lie parallel to each other, as did three of the four diameter plots. When data are divided by the cube root of body weight the length plots almost coincide, as do the diameter plots. This indicates that the bronchial tree grows in constant proportion to the cube root of body weight.

Aging↗

Treatment of pulmonary aspergillosis with di-iodohydroxyquinoline.

Thirteen patients with a clinical diagnosis of pulmonary aspergillosis were treated with the anti-amoebic drug di-iodohydroxyquinoline, 1500-1800 mg/day orally, for 20 days. All were precipitin positive before treatment and all but one became negative after treatment. Sputum became negative in all of the 10 patients in whom it had been positive before treatment. Clinical improvement was marked in four patients, moderate in three, and slight in three, no change occurring in the remaining three. These results suggest that di-iodohydroxyquinoline may be of value in the treatment of pulmonary aspergillosis.

Adult↗