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Biomedical subjects

G Küchler

Publications and source records attributed to G Küchler.

At least 19 recordsLinked to original sources

External potassium and action potential propagation in rat fast and slow twitch muscles.

The role of extracellular K+ concentration in the propagation velocity of action potential was tested in isolated rat skeletal muscles. Different K+ concentrations were produced by KCl additions to extracellular solution. Action potentials were measured extracellularly by means of two annular platinum electrodes. Fibre bundles of m. soleus (SOL), m. extensor digitorum longus (EDL), red (SMR) and white (SMW) part of m. sternomastoideus were maximum stimulated. The conduction velocity (c.v.) was calculated from the distance between the electrodes and the time delay of the potentials measured at 22 degrees C. In Tyrode solution containing 5 mmol/l K+, the c.v. was close to 1 m.s-1. Bundles of the fast muscle type seemed to have a somewhat higher c.v. The differences observed in these studies were not significant. At higher temperatures, the c.v. increased (Q10 of approx. 2) and a dissociation between SMR and SMW muscles appeared. An elevation of K+ concentration to 10 mmol/l induced a drop of the c.v. by approx. 25% and 15% in EDL and SOL muscles, respectively. After return to normal solution, the recovery was not complete within 30 min. In K+ free solution the c.v. of EDL and SM muscles rose by a factor of 1.5, but less in SOL muscles. The weaker response of SOL to K+ modification was related to the higher resistance of this muscle to fatigue. This suggestion was supported by experiments on fatigued fibre bundles. Immediately after a tetanic stimulation producing fatigue, the c.v. of EDL and SOL muscles dropped similarly as in 10 mmol/l K+; again, the drop was less for SOL muscles. Adrenaline (0.5-10.0 mumol/l) enhanced both the c.v. and the twitch amplitude. The results support the suggestion that extracellular K+ accumulation during activity is an essential factor of muscle fatigue.

Action Potentials

[Modern labor and stress on skeletal muscles].

Introductorily the actual state in analysis and evaluation of physical work is characterized as a problem of changing chemical into mechanical energy in the skeletal muscle. Modern work is characterized in the view of the physiologist. Considering experimental results and epidemiological studies, problems of the K+ homeostasis during long lasting low level muscle activity are discussed as reasons of limiting performance. Changes in the potassium distribution between intra- and extracellular space have enormous consequences for excitability, contractili, metabolism, and arterial blood pressure. Finally references are given for evaluation and designing of modern work.

Automation

Muscle elasticity: effect of muscle length and temperature.

The present study describes a new method which allows the determination of muscle elasticity by applying quick releases at one end of a muscle and measuring the resulting tension drops at both ends, and simultaneously the propagation time of the mechanical impulse. The elasticity determined by both methods was examined on resting as well as on tetanized frog muscles (Rana esculenta, M. flexor hallucis brevis) in relation to muscle length and at two different temperatures 1 degree C and 20 degrees C. The average propagation velocity of the mechanical impulse of resting muscle was 55.7 +/- 4.7 m/s and of the contracting muscle 104.8 +/- 24.7 m/s at 1 degree C (L0, n = 6), which corresponds to elasticities of 3.3 +/- 0.5 N/mm2 and 14.4 +/- 6.2 N/mm2, respectively. The elasticity modulus calculated from the tension drop was for the resting muscle 2.3 +/- 0.5 N/mm2 and for the contracting muscle 11.1 +/- 2.1 N/mm2 (L0, 1 degree C, n = 6). When the muscle length is varied, the elasticity modulus corresponds to the length-tension relation of the resting and the isometrically contracting muscle. There is a strong correlation between the elasticity moduli which was determined by both methods for measurement of resting (r = 0.99, n = 19, p less than 0.05) and contracting muscle (r = 0.97, n = 19, p less than 0.05). This relation between elasticity and tetanic tension, i.e. filament overlap at constant temperature, can be interpreted in accordance with the sliding filament theory. But if the temperature is increased from 1 degree C to 20 degrees C, an increase of the tetanic tension (Q10 = 1.56) and a decrease of the elasticity measured by both methods (Q10 of 0.86 and 0.84) were obtained. This suggests that the increased tetanic force is generated by a smaller number of attached cross-bridges, but with a higher amount of force generated by each cross-bridge.

Animals

Changes of the conduction velocity of isolated muscles induced by altered external potassium concentration.

The propagation of action potentials along fibre bundles of fast and slow twitch rat muscles was tested by means of two separated different electrodes. In spite of marked differences in contractile properties between fast and slow twitch bundles, the conduction velocity (c.v.) was found to be similar in all preparations at room temperature. At 35 degrees C the c.v. was 2.76 +/- 0.36 m.s-1 in SOL and 3.0 +/- 0.77 m.s-1 in EDL muscles, respectively. An elevation of the extracellular K+ from 5 to 10 mM caused a reduction of the c.v. by 20 - 40% in limb and sternomastoid muscles. The effect increased with higher K+ concentrations. Repeated tetanic stimulation also induced a decrease of the c.v. The opposite effect occurred in solution with reduced external K+. In O K+ solution the c.v. of fast twitch fibres increased by almost 50%. The results show that extracellular K+ interacts with processes of the regeneration of the action potential along the fibres.

Animals

Force, endurance time, and cardiovascular responses in voluntary isometric contractions of different muscle groups.

A study was made to reinvestigate the general validity of the force/endurance relation of isometric contractions. Relative force development, mean bioelectrical muscle activity and circulatory responses (blood pressure, interbeat interval) during isometric contractions of different muscle groups were compared. 6 men performed maximum isometric contractions of foot plantar- and dorsalflexors and hand flexors lasting 10 minutes. The hydrostatic blood pressure was varied by placing subject's arms and legs in two different positions, high and low. 9 Women performed plantarflexion and dorsalflexion with maximum strength and at constant load of 60% MVC to exhaustion. The results confirm that the force/endurance relationship during isometric exercise is not a biological constant, applicable for all muscles. The fibre composition of the muscle and the blood pressure varied by different hydrostatic components are discussed as factors causing differences in force/endurance relationship.

Adult

Temperature influence on phases of the tension response to sudden reduction of muscle length.

Phasic tension transients following a quick release in muscle length were studied to obtain information about the mechanism of force generation at different temperatures. The isometric tetanic tension increased (Q10 = 1.5) in the temperature range of 1.4 degrees C to 11.4 degrees C. The instantaneous stiffness (tension drop during the applied quick release in relation to the percentage of change of length) is slightly reduced by increasing temperature (Q10 = 0.9). The rate constant of the early tension recovery (phase 2) increased with increasing temperature (Q10 = 1.8). The results indicate that the increase of tetanic tension with increasing temperature is due to an increasing amount of force, generated by each cross bridge and a higher speed of rotation of the myosin head. The number of force generating cross bridges defined by the instantaneous elasticity is nearly independent of temperature range studied.

Animals

[The effect of increased environmental temperature on the behavior of physiologic parameters in bicycle ergometry within the scope of the physical endurance limit].

For determination of the endurance limit range, 8 healthy male probands aged between 20 and 26 years loads had carried out for one hour on a bicycle ergometer at an ambient temperature of +20 degrees C, +28 degrees C and +35 degrees C. Staying in an ambient temperature of 35 degrees C leads to a decrease in the physical endurance limit in an order of magnitude of 10 W. At 20 degrees C, in the endurance range the following values result (mean +/- s): load 68+/- 10.3 W, heart rate 113.6 +/- 5.8 beats per min., net heart rate 31.8 +/- 2.4 beats per min., oxygen uptake 1340 +/- 170 ml per min., auditory canal temperature 36.5 +/- 0.24 degrees C, sweat rate 275 +/- 143 g. At 35 degrees C, the endurance limit is attained at the following values: 57 +/- 10.6 W, heart rate 125 +/- 11.8 beats per min., net heart rate 27.4 +/- 3.6 beats per min., oxygen uptake 1210 +/- 130 ml per min., auditory canal temperature 37.2 +/- 0.3 degrees C, sweat rate 577 +/- 96 g.

Exercise Test

Effects of free fatty acids on the muscle cell membrane and their possible relations to the depression of contraction.

High concentrations of free fatty acids (FFA) depolarize the resting muscle cell membrane and decrease the membrane resistance. In contrast, low concentrations have a "membrane stabilizing effect" which decreases action potential (AP) and voltage-dependent ionic currents. The changes of AP may result in a decrease of excitation-induced Ca++ release from cellular stores. This may be a causal factor for depression of contraction by FFA.

Animals

Depressive effects of free fatty acids on the development of tension in different muscle types.

The depression of twitch and tetanic tensions, contractures, and spontaneous activities of various muscle preparations by a selected free fatty acid (Na-octanoate, NaC8) depends on the concentration, the temperature, the time of exposure, and the type of muscle. Among skeletal muscles, there is neither a significant difference between frog and rat twitch muscles nor between fast- and slow-twitch rat muscles at room temperature. Small differences seem to occur between frog tonic and phasic fibres as well as between fast- and slow-twitch rat muscles at 32 degrees C. Smooth muscles are more sensitive than skeletal muscles but less sensitive than papillary muscles in which 0.5 mmol/l NaC8 decrease the contractility by about 50%. The different sensitivity of the various muscle types might be caused by unequal alterations of membrane properties responsible for excitation-contraction coupling. It is supposed that free fatty acids interact with the calcium binding sites of the membranes.

Adenosine Triphosphatases

[Muscle activity and heart rate during rhythmical work using a hand ergometer. II. Heart rate, mechanical and bioelectrical activity of muscles during work with different loads and in relation to endurance].

The study has been made to analyse changes in heart rate, in mechanical and bioelectrical muscle activity during thythmical handgrip contractions. Loads of 20% to 100% of the maximal voluntary contraction (MVC) were applied. The working frequency was 30 cpm. With loads of 40%--100% of the maximal voluntary contraction (MVC) the following characteristic changes were obtained: Both the plane of the mechanogram and the duration of the mechanogram increased permanently. The heart rate rose to the end of the experiment and so did the EMGs of the flexor, the extensor, the brachioradial muscle and the muscle of the thenar. The rate of the rise (%/s) of all physiological functions was greatest during maximal load test and decreased with decreasing contraction strength. The endurance as a function of the force showed a parabolic curve. The physical endurance capacity of this rhythmical hand work is between 20% and 40% MVC.

Female

[Influence of homologous n-alcanoic acids on the function properties of isolated skeletal muscles. III. Contractures by fatty acids and relations to the effects of caffeine].

The influences of octanoic, decanoic, and hexadencanoic acid were tested on the contracture capability of isolated skeletal muscle of frogs and rats. 1. 100 mM octanoic or 10mM decanoic acid induce contractures in skeletal mucles after 20-30 min of exposure. 2. The time of exposure necessary for induction of contractures is shortened by an increase of bath temperature, electrical stimulation or KCl-depolarization of muscles. 3. Simultaneous addition of fatty acid and caffeine (10 mM) effects a depression and a delay of the caffeine contracture. The contractures evoked by 5 mM caffeine are inhibited by lower concentrations of fatty acids (1 mM octaonoic acid, 0,1 mM hexadecanoic acid). 4. After the complete development of a caffeine (or fatty acid) contracture the muscle is not able to develop an identical contracture by a second application of the same drug, even after intermediate treatment during one or two hours in Ringer solution. If the contracture is interrupted one minute after the caffeine application by changing the solution, the tension returns quickly to the resting level. A subsequent addition of caffeine (10 mM) after about 10 minutes effects an identical contracture. Thus the effect of fatty acids on caffeine contracture may be studied on the same muscle which served as its own control. 5. As mechanisms involved in the development of fatty acid contractures and in the inhibition of caffeine contractures, interactions of free fatty acids and lipids of biological membranes are disucssed. Especially, there may be changes of the calcium affinity of cellular membranes.

Animals

[Muscle activity and heart rate during rhythmical work on the hand ergometer. I. Heart rate, bioelectric muscle activity and mechanogram relative to the strength of contraction].

The experiments were carried out on 11 subjects ranging in the age from 23 to 37 years. Heart rate, integrated electrical activity from 4 muscles of the forearm and the hand and mechanical activity were measured simultaneously during rhythmical work using a hand-ergometer. The strength of the dynamic contractions was 20, 40, 60, 80 and 100% of a maximal voluntary contraction. The mean values of the maximal voluntary contraction obtained on male subjects were 57.3 kp and on female subjects 33.2 kp. The results showed that during dynamic contractions mechanical activity was related to the integrated electrical activity and both integrated electrial activity of 3 muscles and heart rate were linearly related to the load. The correlation coefficients for the EMG/EMG relationships of different muscles and for the EMG/heart rate varied between 0.83 and 0.98.

Adult

[Influence of static muscle tension on acoustically evoked brain potentials, changes in skin resistance and bioelectric muscle activity].

Auditory evoked brain potentials (AEP), galvanic skin responses (GSR) and auditory evoked bioelectrical muscular responses were recorded in 16 male human subjects during voluntary isometric contraction of m. triceps brachii dexter. The electromygraphically controlled strength of muscular innervation corresponded to 20, 30, 40 and 50% of the maximal voluntary contraction. The trials were organized according to a change-over design. The following results could be obtained: The stepwise increase of the strength of muscular innervation effected an increase of the mean amplitude of auditory evoked EMG responses. The N1-P2 amplitudes of the AEP decreased with increasing strength of muscular innervation. The mean amplitude of the auditory evoked galvanic skin response was not changed significantly by the strength of muscular innervation, however, the spontaneous changes in galvanic skin resistance increased monotonously. Habituation effects were evident regarding amplitudes of AEP and GSR. The results indicate that muscular activity affects sensory information processing.

Acoustic Stimulation

[Influence of homologous n-alkanoic on functional properties of isolated skeletal muscles. II. Membrane resting potential and the osmotic effectiveness of alkanoic acid].

The influence of butyric, hexanoic, octanoic, and decanoic acid on the membrane resting potential of isolated frog skeletal muscles were studied and the osmotic effects of n-alkanoic acids tested. 1. n-alkanoic acids cause osmotic effects like impermeable non-electrolytes (sucrose). Therefore, the permeability to alkanoic acids of the resting muscle cell membrane seems to be small. There are no differences between the acids tested. 2. The membrane resting potential is differently affected. Butyric acid in high concentration effects a hyperpolarization of the membrane whereas higher homologues (C6--C10) cause a depolarization. The depolarizing action increases with increasing concentration, exposure, and with the length of the hydrocarbon chain of the alkanoic acids. 3. It is suggested that osmotic effects are the cause for hyperpolarization of the membrane by high concentrations of butyric acid. 4. The depolarizing action of hexanoic, octanoic, and decanoic acid is discussed with regard to alterations induced by alkanoic acids in the membrane permeability and/or in the metabolism of the cells.

Alkanes

[Influence of homologous n-alkanoic acids on functional properties of isolated skeletal muscles. I. Muscle contraction].

1. The contractility of isolated muscles of the frog (and in some instances of the rat) was investigated at room temperature in Ringer's solutions containing homologous alkanoic acids (100 mM C4 to 0.4 mM C10). 2. Free fatty acids decrease the contraction amplitudes evoked by direct stimulation. The effects increase with concentration, exposure, and chain length of the fatty acids. In Ringer's solution the changes are totally or partly reversible. 3. The depression of contraction amplitude induced by free fatty acids is removed by small concentrations of caffeine (2--5 mM) in Ringer's solution. 4. Interactions of fatty acids with different structures of skeletal muscle (mitochondria, sarcolemma and membranes of sarcoplasmic vesicles) are discussed. The distinct effect of fatty acids on stimulated muscles and the importance of membranes in the regulation of the calcium ion concentration in the cytoplasm suggest that fatty acids interact with membrane lipids.

Alkanes

A combined sensor suitable for telemetering respiratory functions.

A system for measuring oxygen consumption from momentary respiratory values of free moving person is described. The main part presented here is a sensor consisting of a flowmeter based on the impeller principle, called 'Wirbelrespirometer', joint with a polarographic electrode sensitive to oxygen, and a very fast reacting thermistor. First comparative studies in computation of respiratory volume and oxygen consumption yielded average deviations against comparison methods of less than +/- 1% for computation of volume, and +/- 4% for computation of oxygen consumption.

Electrodes