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The combined action of exercise and methylprednisolone sodium succinate on the rat gastrocnemius muscle.

1. Methylprednisolone sodium succinate (SM) administration reduces the amount of contractile proteins and increases the collagen in the rat gastrocnemius muscle; it also increases the muscle's isotonic contraction capacity. 2. Exercise in combination with SM treatment reduces this capacity and causes also further reductions of the contractile proteins and increases of collagen. 3. There are no changes of either the relative muscle weight or the number of acetylcholine receptors in any experimental group as compared to controls.

Animals↗

A multipurpose muscle ergometer.

A fast (0.1 mm steps within 2 ms), strong (40 N continuously) and accurate (resolution 0.002 N and 1.0 micron) muscle ergometer was developed to test dynamic and static properties of mammalian muscle. Both for twitches and for tetani isometric, isokinetic and isotonic contractions can be measured accurately. Force-velocity data and time to peak-force data of four EDL muscles, as well as force-extension data of their serial tendinous structures are shown to demonstrate the machine.

Animals↗

Age-related change in alpha-adrenergic responsiveness of the urinary bladder of the rat is regionally specific.

The effects of age on the responsiveness of the body of the urinary bladder and base of the bladder to alpha-adrenergic agonists were studied. Regions of the bladder were isolated from Fischer 344 rats, ages 7, 16, and 27 months. Maximum isotonic contractions elicited by potassium chloride (KCl) in both regions of the bladder were unaffected by age. In the bladder body there was an age-related increase in the maximum contraction elicited by phenylephrine, norepinephrine and clonidine. No such alteration in responsiveness was observed in the base of the bladder with age. The ED50 values of all three agonists were unchanged with age in both regions of the bladder. The pA2 values of prazosin and yohimbine were approximately 8.5 and 6.0, respectively, in the body of the bladder, and these values were not altered by age. Thus, it is concluded that an age-related increase occurs in the responsiveness of the body of the bladder to alpha-adrenergic activation and that these changes are mediated by alpha 1-adrenoceptors.

Aging↗

Augmentation of isoproterenol-induced drinking by acute treatment with certain dopaminergic agonists.

Bromocriptine (1 mg/kg, IP), a dopaminergic agonist that crosses the blood-brain barrier, augmented the dipsogenic responsiveness of rats to acute administration of the beta-adrenergic agonist, isoproterenol (15 micrograms/kg, SC), when administered at the same time. When administered alone, it had no effect on either water intake or urine output. Dopamine (20 mg/kg IP), which does not cross the blood-brain barrier, also augmented the dipsogenic responsiveness to acute administration of isoproterenol. However, a major difference between the responses to bromocriptine and dopamine was that the latter augmented drinking only when administered 15 to 30 min prior to isoproterenol. During the 30 min between injection of dopamine and the injection of isoproterenol, output of urine and sodium increased approximately 6-fold above the level of controls such that the concentration of the urine excreted by the treated group was approximately isotonic. However, in spite of a 6-fold increase in output of urine by the treated, compared to the control group, dopamine-treated rats ingested water only to the same extent as untreated controls when access to water was allowed. This suggests that an isotonic contraction of extracellular fluid may not induce a dipsogenesis. It also suggests that the augmentation of isoproterenol-induced drinking by dopamine was not the result of a dehydration-induced drink superimposed on the isoproterenol-induced drink. The centrally and peripherally acting dopaminergic antagonist, spiroperidol (spiperone), inhibited the isoproterenol-induced drinking response in a dose-related fashion. However, the peripherally acting dopaminergic antagonist, domperidone,was without effect on isoproterenol induced drinking.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

In vitro study of antispasmodic effects of dicyclomine hydrochloride on vesicourethral smooth muscle of guinea pig and rabbit.

Dicyclomine inhibition of acetylcholine-induced and barium chloride-induced isotonic contractions of the smooth muscle from three segments of the lower urinary tract (bladder body, bladder base, and proximal urethra) of the guinea pig and the rabbit was studied in vitro. In the guinea pig dicyclomine caused competitive inhibition of acetylcholine-induced contraction of the bladder body (1 x 10(-7) M to 1 x 10(-5) M) and the bladder base (1 x 10(-6) M, 1 X 10(-5) M) and was less potent than atropine and propantheline. In the rabbit significant blockade of acetylcholine-induced contractions occurred at dicyclomine concentrations of 5 x 10(-6) M to 3 x 10(-5) M in the bladder body and at 1 x 10(-5) M and 3 x 10(-5) M in the bladder base. In both species dicyclomine inhibitory effects were most marked in the bladder body, moderate in the bladder base, and minimal in the proximal urethra. Dicyclomine failed to cause inhibition of the barium chloride-induced contractions in the guinea pig vesicourethral smooth muscle. In rabbits, however, significant antagonism P less than 0.01) of barium chloride-induced muscle contraction was observed with dicyclomine at concentration 1 x 10(-5) M in both bladder body and the bladder base. The clinical implication of such properties of dicyclomine are discussed.

Acetylcholine↗

The synthesis and biological activity of alkyloxy prostaglandin analogues.

Prostaglandin analogues in which the alkyl chain attached to C-15 in the natural compounds is replaced by an alkyoxyalkyl group have been synthesised. Compounds of the 17-oxa series are particularly potent luteolytic agents and are selective in the sense that they are less effective than PGE-2alpha in causing isotonic contractions of isolated uterus muscle.

Alkylation↗

Dependence of peak dP/dt and mean ejection rate on load and effect of inotropic agents on the relationship between peak dP/dt and left ventricular developed pressure--assessed in the isolated working rat heart and cardiac muscles.

To examine the effects of preload (mean left atrial pressure) and afterload on two so-called "contractility indices" and the effects of inotropic agents (isoproterenol and calcium) on the relationship between left ventricular developed pressure and peak dP/dt when afterload was increased, we used a modified working rat heart preparation (perfused with Krebs-Henseleit solution bubbled with a 95% O2 -5% CO2 gas mixture at 37 degrees C). The atrium was stimulated at a rate of 240/min. An increase in preload from 5 to 15 mmHg caused an increase in peak dP/dt from 1,711 +/- 293 mmHg/s to 1,971 +/- 387 mmHg/s (p less than 0.001, n = 15), and an increase in the mean systolic ejection rate from 1.28 +/- 0.31 ml/s to 2.74 +/- 0.80 ml/s (p less than 0.001). An increase in afterload (left ventricular developed pressure) from 66 to 97 mmHg produced by elevating aortic pressure caused an increase in peak dP/dt from 1,829 +/- 222 mmHg/s to 2,449 +/- 254 mmHg/s (p less than 0.001, n = 7), and a decrease in the mean systolic ejection rate from 2.12 +/- 0.36 ml/s to 1.95 +/- 0.33 ml/s (p less than 0.001). Studies using isolated rat papillary muscles ruled out the contribution of an increase in myocardial perfusion to the increase in peak dP/dt, since the maximum rate of rise in tension (dT/dt) increased with an increase in afterload during afterloaded isotonic contraction. Peak dP/dt showed a linear relationship to left ventricular developed pressure when the latter was increased by elevating the aortic reservoir and then clamping the aortic outflow tube (n = 8).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Reactivation of NBD-phallacidin-labelled actomyosin fibrils in cryosections of Physarum polycephalum: a new cell-free model.

Application of ATP to cryosections of plasmodial strands from Physarum polycephalum leads to an isotonic contraction of the cytoplasmic actomyosin fibrils: when the fibrils are labelled with NBD-phallacidin, their contraction can be observed in the fluorescence microscope. While performing contraction, the fibrils separate into many small units and the formerly continuous fibrils exhibit the appearance of beaded chains. The possibility of visualizing directly the contraction of cytoplasmic actomyosin fibrils in the fluorescence microscope represents a favourable condition for the study of their physiological contraction mechanism, because this new and convenient cell-free model offers in situ contractile structures that are non-denatured and non-extracted.

Actomyosin↗

Plantar- and dorsiflexor strength in prepubertal girls with juvenile idiopathic arthritis.

OBJECTIVE: To compare lower-leg strength of young girls with polyarticular juvenile idiopathic arthritis (JIA) with that of healthy, age-matched controls. DESIGN: Isometric and isokinetic strength tests of the plantar- and dorsiflexors. All strength measures were made at an ankle angle of 90 degrees. Isokinetic plantar- and dorsiflexor measures were made at 15 degrees/s during shortening (concentric) and lengthening (eccentric) actions. SETTING: Strength testing laboratory. PARTICIPANTS: Ten prepubertal girls diagnosed with JIA and 10 healthy girls. INTERVENTIONS: Not applicable. MAIN OUTCOME MEASURES: Isometric and isokinetic plantar- and dorsiflexor strength. RESULTS: Isometric plantar- and dorsiflexion torques were significantly lower (48% and 38% respectively; P<.05) for the children with JIA than for the controls. The JIA group also produced lower shortening plantarflexion torques (52%, P<.05). Lengthening plantarflexor torques did not differ significantly between the 2 groups (P<.05). Controls were stronger than the JIA group for both shortening and lengthening maximal dorsiflexor actions (P<.05). All children were 4 to 5 times stronger in plantarflexion than in dorsiflexion. CONCLUSIONS: Girls with JIA had significantly less plantar- and dorsiflexor strength than age-matched, healthy peers. The reduced strength of children with JIA is likely to affect function in daily activities and probably contributes to reduced levels of physical activity.

Activities of Daily Living↗

Muscle strength as a predictor of long-term survival in severe congestive heart failure.

AIMS: The objective of the study was to test the relationship between isolated muscle strength and outcome, and its significance in the context of other exercise variables. METHODS AND RESULTS: 122 consecutive patients (LVEF 21+/-7%) were enrolled in the study. Isokinetic strength testing of the knee extensor and flexor muscles were performed. A subset of 51 patients underwent additional upright bicycle testing with gas exchange analysis. The outcome up to 60 months was defined by event-free survival (group A, n=59) or death (group B, n=34). Patients who had been transplanted were excluded from further analysis. The peak strength of the quadriceps muscle was comparable in both groups (N.S.). In contrast, the index (value adjusted for weight) did reveal significant differences (P<0.04), similar to the peak torque of the knee flexor muscle (P<0.04), whose index was even more significant with regard to differences (P<0.01). Multivariate analysis including muscle strength variables, pVO2 and workload into one model show that the flexor strength index is the only independent variable (x2=9 P<0.003). A cut-off point of 68 Nm x 100/kg in the strength index of the flexor muscles was used to establish a significant difference between groups with regard to outcome (P<0.01). Thus, the isokinetic strength of the knee flexor muscles is related to outcome. Moreover, this parameter is superior to variables such as peakVO2 and workload.

Aged↗

Comparison of a piezoelectric contact sensor and an accelerometer for examining mechanomyographic amplitude and mean power frequency versus torque relationships during isokinetic and isometric muscle actions of the biceps brachii.

The purpose of this study was to compare a piezoelectric contact sensor with an accelerometer for measuring the mechanomyographic (MMG) signal from the biceps brachii during submaximal to maximal isokinetic and isometric forearm flexion muscle actions. Following determination of isokinetic peak torque (PT) and the isometric maximum voluntary contraction (MVC), 10 adults (mean+/-SD age=22.8+/-2.7yrs) performed randomly ordered, submaximal step muscle actions of the dominant forearm flexors in 20% increments from 20% to 80% PT and MVC. Surface MMG signals were recorded simultaneously from a contact sensor and an accelerometer placed over the belly of the biceps brachii muscle. During the isokinetic and isometric muscle actions, the contact sensor and accelerometer resulted in linear increases in normalized MMG amplitude with torque (r(2) range=0.84-0.97) but the linear slope of the normalized MMG amplitude versus isokinetic torque relationship for the accelerometer was less (p<0.10) than that of the contact sensor. There was no significant (p>0.05) relationship for normalized MMG mean power frequency (MPF, %max) versus isokinetic and isometric torque for the contact sensor, but the accelerometer demonstrated a quadratic (R(2)=0.94) or linear (r(2)=0.83) relationship for the isokinetic and isometric muscle actions, respectively. There were also a number of significant (p<0.05) mean differences between the contact sensor and accelerometer for normalized MMG amplitude or MPF values. These findings indicated that in some cases involving dynamic and isometric muscle actions, the contact sensor and accelerometer resulted in different torque-related responses that may affect the interpretation of the motor control strategies involved.

Adult↗

Isokinetic and isometric lifting capacity of Chinese in relation to the physical demand of job.

The aim of the study was to formulate normative data for the lifting capacities of a normal Chinese population, in order to establish a basic foundation for further studies and to investigate the relationship between individual attributes including age, gender, height, weight, job physical demand and each type of lifting capacity. Isokinetic and isometric lifting strength at low, waist and shoulder assessment levels were measured using the LIDO Workset II based on a sample of 93 normal Chinese adults (63 men and 30 women) between the ages of 21-51. The 50th percentile score for adult Chinese female's lifting strength was 17.71% lower than the American female while the adult Chinese male's lifting strength was 14.94% lower than the American male. Lifting forces were higher in the 20-40 year age group. The isometric work mode had considerable impact on the lifting capacities, with shoulder level having the highest lifting capacities. The gender and body weight had a significant positive correlation to lifting capacity while job physical demand had a moderate correlation. Age and body heights were weakly correlated to lifting capacity.

Adult↗

Aftereffects of resisted muscle contractions on the accuracy of joint position sense in elite male athletes.

OBJECTIVE: To examine the effects of quadriceps and hamstring muscle strength testing on the results of subsequent knee joint position sense tests. DESIGN: A case-control study of 40 elite male athletes divided equally into two groups, experimental and control. METHODS: Both groups underwent position sense tests of both knees, with eyes closed, with isometric maintenance of the knee in each test position, return of the limb to the starting position, then active replication of the perceived test position using the same limb. In the experimental group, joint sense testing commenced 5 to 25 min after strength testing of quadriceps and hamstring muscle strength in both legs using maximum isokinetic contractions at plateau speeds of 60 degrees/sec and 120 degrees/sec. The control group did not undergo pretest muscle strength testing. RESULTS: The difference in the mean absolute (signless) and relative (signed) position sense errors between the experimental and control groups was 0.8 degrees and 1.4 degrees, respectively. The difference between the standard deviation of the relative errors was 1.2 degrees. These results were not statistically significant (analysis of variance p = .24, .12, and .13, respectively). CONCLUSION: In elite male athletes knee joint position sense is unaffected by nonfatiguing strength tests conducted 5 to 25 min before position sense testing.

Adult↗

Back and hip extensor muscle function during therapeutic exercises.

BACKGROUND: Therapeutic exercises are widely used in the treatment of low back problems. Clinical knowledge about targeting the load in these exercises, however, is insufficient. This study assessed the L2 and L5 level paraspinal and gluteus maximus muscle activities in different therapeutic exercises. Intramuscular and surface electromyography (EMG) measurements were obtained to study whether surface EMG measurements can be used in the assessment of multifidus muscle function. METHODS: Eleven healthy subjects (5 men, 6 women) 21 to 38 years of age volunteered for the study. The subjects performed 18 different therapeutic exercises. During the exercises paraspinal EMG was recorded using fine wire and surface electrodes. The normalized peak and average muscle EMG activities (percentage of amplitude in maximal voluntary contraction [MVC]) during each task were determined. RESULTS: The correlations between the average intramuscular and surface activities of the normalized EMG (% of MVC) at the L2 and L5 levels were .928 and .950, respectively. The peak and average EMG amplitudes of the exercises were below 50% and 25% of MVC, respectively. At the L5 level, the multifidus peak and average EMG amplitudes (% MVC) were higher in women than in men, whereas no significant difference was found at the L2 level. In women, the normalized multifidus EMG amplitude was higher at the L5 level than at the L2 level, whereas no significant difference was found in men. In both sexes, the normalized EMG amplitude was higher in the multifidus than in the longissimus muscle. CONCLUSION: Surface EMG measurements may be used in the assessment of multifidus muscle function. Simple therapeutic exercises are effective in activating the lumbar paraspinal muscles.

Adult↗

Intrinsic shortening speed of temperature-jump-activated intact muscle fibers. Effects of varying osmotic pressure with sucrose and KCl.

Effects of intracellular ionic strength on the isotonic contraction properties of both intact fibers and skinned fibers give insights into the cross-bridge mechanism, but presently there is fundamental disagreement in the results on the two fiber preparations. This paper, which studies the effects on contraction of varying the osmotic pressure of the bathing medium with impermeant and permeant solutes, explains the above controversy and establishes the physiological significance of the previous results on skinned fibers. Fast-twitch fibers, isolated singly from tibialis and semitendinosus muscles of frogs, were activated by a temperature-jump technique in hyperosmotic solutions with either 100 or 150 mM sucrose (impermeant), or 50 or 75 mM KCl (permeant). Intracellular ionic strength was expected to rise in these solutions from the standard value of approximately 190 to 265 mM. Cell volume and the speed of unloaded shortening both decreased with sucrose and were constant with KCl. On the other hand, isometric force decreased equally with equiosmolar addition of either solute; this is additional evidence that contractile force decreases with ionic strength and is independent of fiber volume. Therefore, for the main cross-bridges, force per bridge is constant with changes in the lateral separation between the myofilaments. The next finding, that at a fixed cell volume the contraction speed is constant with KCl, provides clear evidence in intact fibers that the intrinsic speed of shortening is insensitive to increased ionic strength. The data with KCl are in agreement with the results on skinned fibers. The results suggest that in the cross-bridge kinetics in vivo the rate-limiting step is different for force than that for shortening. On the other hand, the decrease in speed with sucrose is associated with the shrinkage in cell volume, and is explained by the possibility of an increased internal load. A major fraction of the internal load may arise from unusual interactions between the sliding filaments; these interactions are enhanced in the fibers compressed with sucrose, but this does not affect the intrinsic kinetics of the main cross-bridges.

Animals↗

The functional effect of adenoviral Na+/Ca2+ exchanger overexpression in rabbit myocytes depends on the activity of the Na+/K+-ATPase.

OBJECTIVES: The functional consequences of Na+/Ca2+ exchanger (NCX) overexpression in heart failure have been controversially discussed. NCX function strongly depends on intracellular sodium which has been shown to be increased in heart failure. METHODS AND RESULTS: We investigated the Na+/K+-ATPase (NKA) inhibitor ouabain (0.5-16 micromol/l) in electrically stimulated, isotonically contracting adult rabbit cardiocytes overexpressing NCX after adenoviral gene transfer (Ad-NCX-GFP, 48 h culture time). Myocytes transfected with adenovirus encoding for green fluorescent protein (Ad-GFP) served as a control. Contractions were analyzed by video-edge detection. In the Ad-NCX-GFP group, the maximum inotropic response was significantly reduced by 50.7% (P<0.05). This was a result of an enhanced susceptibility to contracture after exposure to the drug (median concentration (25-75%): 4 (4-8) vs. 8 (6-16) micromol/l, P<0.05). When analyzing relaxation before contracture, the maximum relaxation velocity was reduced (0.15+/-0.04 vs. 0.27+/-0.04 microm/s, P<0.05) and the time from peak shortening to 90% of relaxation was increased (298+/-39 vs. 185+/-15 ms, P<0.05). No differences in systolic and diastolic parameters were observed with the Na+ channel modulator BDF9198 (1 micromol/l). CONCLUSIONS: Inhibition of NKA by ouabain induces a combined diastolic and systolic dysfunction in NCX overexpressing rabbit myocytes. This may be the consequence of cytoplasmic Ca2+ overload due to inhibition of forward mode or induction of reverse mode Na+/Ca2+ exchange. In end-stage failing human myocardium and during digitalis treatment this mechanism may be of major importance.

Adenoviridae↗