Search PubMed⌕ Search

Biomedical subjects

S Nadeau

Publications and source records attributed to S Nadeau.

At least 37 records · Page 2Linked to original sources

Relationships between torque, velocity and power output during plantarflexion in healthy subjects.

This study investigated the relationships existing between torque, velocity and power output during plantarflexion. Using a Biodex dynamometric system, 15 healthy subjects performed three maximal dynamic tests, ranging from -12 degrees (-0.209 rad) of dorsiflexion to +47 degrees (+0.818 rad) of plantarflexion and one static test (test 4) at an angle of +10 degrees (+0.174 rad). The dynamic assessment included a 30 degrees s-1 (0.52 rad s-1) concentric isokinetic test (test 1) preceded by a 2-sec maximal pre-loading contraction. The other two dynamic tests were performed using the isotonic mode of testing with a selected torque of 27 N m; one of these tests was executed with pre-loading (test 2) while the other was performed without pre-loading (test 3). The results indicated that the dynamic peak torque, the peak power and the peak velocity were obtained in test 1, test 2 and test 3, respectively. These peak values, as well as the values of torque (test 1 and test 4), power (test 2) and velocity (test 3) obtained at a constant angle +10 degrees (+0.174 rad), were selected for the correlation analyses. The results showed that the torque, velocity and power output during plantarflexion were linearly related to one another with significant correlations (0.71 < r < 0.92; p < 0.01). This finding suggests that a common factor of muscular performance is assessed. Furthermore, these results indicated that the maximal torque produced by a subject can be predictive of his or her maximal velocity and power. Consequently, a stronger subject can generate higher velocity and power than a weaker subject when tested with the same load during maximal effort.

Adult↗

Dynamometric assessment of the plantarflexors in hemiparetic subjects: relations between muscular, gait and clinical parameters.

The aims of this study were to investigate, in 16 subjects with hemiparesis, the plantarflexor muscle performance of the paretic side and to determine the level of the relationships between muscular parameters, clinical measures and gait performance. A Biodex dynamometric system was used to evaluate static and dynamic torques, power and maximal rate of tension development of the plantarflexor muscles. The clinical measures included the Fugl-Meyer assessment (FMA), the "Up & Go" test and an evaluation of ankle muscle tone. Velocity, cadence, stride length and gait cycle duration were determined for each subject at both comfortable and maximal safe speeds using foot contacts and videographic data. Results indicated that dynamometric values produced by the hemiparetic subjects were reduced in comparison to those reported for healthy subjects. Their torque-angle curves had a curvilinear shape which indicated pronounced decrease of torque for plantarflexion efforts at the beginning of the movement. Torques produced at different velocities of testing did not demonstrate significant differences (MANOVAs: p > 0.05) but power values were significantly different. Results also showed that all the selected muscular parameters (torque, power and maximal rate of tension development) were moderately to highly interrelated (0.65 < r < 0.94; p < 0.01) suggesting that a common factor of muscular performance was assessed. Furthermore, the dynamometric data were significantly associated with some of the clinical measures (sensation and lower limb motor control scores of the FMA) but were not related to the gait variables (Pearson's r < 0.45; p > 0.05). This last finding suggests that the relationship between plantarflexor strength and the level of gait performance in adults with stroke is complex. The relationship may be influenced by other factors such as muscular compensations within and between limbs and motor control impairments.

Adolescent↗

Preloading and range of motion effect on plantarflexor muscle performance.

OBJECTIVE: To determine the effects of maximal preloading and range of motion (ROM) on the mechanical parameters of the plantarflexor muscles obtained while using the isotonic mode of testing of a Biodex dynamometer. DESIGN: A convenience sample of healthy subjects in the context of a descriptive comparative study. SETTING: Research laboratory in Canada. SUBJECTS: Fifteen volunteered subjects without history of injury or disorder to the right lower extremity. MEASUREMENTS: Four maximal isotonic tests were performed against a selected load of 27Nm. For the first two tests, the movement at the ankle ranged from -12 degrees (dorsiflexion) to +32 degrees (plantarflexion); one of these tests was preceded by a 2-second maximal preloading contraction, while the other was performed without preloading. For the other two tests, the ROM at the ankle was increased by 15 degrees of plantarflexion and thus ranged from -12 degrees to +47 degrees; again one of these tests was executed with preloading and the other without preloading. RESULTS: The four tests showed differences in the mechanical parameters (MANOVA p < .05). At angles of -10 degrees and +5 degrees, subjects produced higher torque and power but lower velocity values for the two tests preceded by a maximal preloading. The effect of ROM was demonstrated at +20 degrees where tests performed in a small amplitude reached a lower velocity than the corresponding tests performed in a larger amplitude. Based on the velocity profiles, the results also revealed that maximal preloading changed the selected isotonic movement of the Biodex dynamometer to an isoaccelerative movement characterized by high torque and power production. CONCLUSIONS: Isotonic assessment using the Biodex dynamometer provides different values of torque, velocity, and power depending on the testing conditions used. In clinical settings, it would be important to control these testing conditions.

Analysis of Variance↗

A mechanical model to study the relationship between gait speed and muscular strength.

This study proposes a mechanical model to investigate the relationship between gait speed and strength of the ankle plantarflexor muscles. The model calculates the muscular utilization ratio (MUR) of the plantarflexor muscles during gait by comparing the plantarflexion moment used while walking to the maximal moment of the plantarflexors estimated from dynamometric measurements. To verify the model, MURs of the plantarflexor muscles were calculated for five healthy subjects and one hemiparetic subject walking at different speeds (slow, self-selected, and fast). Generally, the results of the healthy subjects revealed that MURs increase with an increasing gait speed: average (+/-SD) peak values of MUR reached 58.8% (+/-18.5), 65.6% (+/-17.2) and 71.0% (+/-17.8) for the slow, self-selected, and fast speeds, respectively. The average peak value of MURs at the self-selected speed corresponds to values reported in electromyographic studies of the plantarflexor muscles. At self-selected gait speed, the hemiparetic subject presented a higher peak MUR (80.5%) of the plantarflexors and a lower gait velocity when compared to healthy subjects. For the hemiparetic subject, peak values of MUR of the plantarflexor muscles at maximal walking speed reached 100% suggesting that full activation of the plantarflexors had been reached preventing him from walking faster. From these preliminary results, it appears that MURs calculated by the proposed model are sensitive to the mechanical demands imposed on a group of muscles during a task (eg., increase in gait speed) and to change in the maximal plantarflexor's strength (eg., weakness). The proposed model seems to have the potential to demonstrate whether muscle weakness limits maximal gait speed in hemiparetic subjects. However, considering the complexity of gait speed regulation in hemiparetic patients, the model should be tested on a large number of hemiparetic subjects.

Adolescent↗

Evidence that the brain of the conscious dog is insulin sensitive.

The aim of this study was to determine whether a selective increase in the level of insulin in the blood perfusing the brain is a determinant of the counterregulatory response to hypoglycemia. Experiments were carried out on 15 conscious 18-h-fasted dogs. Insulin was infused (2 mU/kg per min) in separate, randomized studies into a peripheral vein (n = 7) or both carotid and vertebral arteries (n = 8). This resulted in equivalent systemic insulinemia (84 +/- 6 vs. 86 +/- 6 microU/ml) but differing insulin levels in the head (84 +/- 6 vs. 195 +/- 5 microU/ml, respectively). Glucose was infused during peripheral insulin infusion to maintain the glucose level (56 +/- 2 mg/dl) at a value similar to that seen during head insulin infusion (58 +/- 2 mg/dl). Despite equivalent peripheral insulin levels and similar hypoglycemia; steady state plasma epinephrine (792 +/- 198 vs. 2394 +/- 312 pg/ml), norepinephrine (404 +/- 33 vs. 778 +/- 93 pg/ml), cortisol (6.8 +/- 1.8 vs. 9.8 +/- 1.6 micrograms/dl) and pancreatic polypeptide (722 +/- 273 vs. 1061 +/- 255 pg/ml) levels were all increased to a greater extent during head insulin infusion (P < 0.05). Hepatic glucose production, measured with [3-3H]glucose, rose from 2.6 +/- 0.2 to 4.3 +/- 0.4 mg/kg per min (P < 0.01) in response to head insulin infusion but remained unchanged (2.6 +/- 0.5 mg/kg per min) during peripheral insulin infusion. Similarly, gluconeogenesis, lipolysis, and ketogenesis were increased twofold (P < 0.001) during head compared with peripheral insulin infusion. Cardiovascular parameters were also significantly higher (P < 0.05) during head compared with peripheral insulin infusion. We conclude that during hypoglycemia in the conscious dog (a) the brain is directly responsive to physiologic elevations of insulin and (b) the response includes a profound stimulation of the autonomic nervous system with accompanying metabolic and cardiovascular changes.

3-Hydroxybutyric Acid↗

Comparison of the EMG power spectrum of the human soleus and gastrocnemius muscles.

The purpose of this study was to compare the behaviour of electromyographic (EMG) power spectrum statistics, mean power frequency (MPF) and median frequency (MF), across increasing force levels of the soleus (SO), gastrocnemius medialis (GM) and gastrocnemius lateralis (GL) muscles. Surface EMG signals of these three muscles were recorded in 12 men and 10 women during both (1) ramp (single ongoing contractions with the force increasing linearly from 0 to 100% of the maximum voluntary contraction (MVC); and (2) step (steady force levels: 10, 20, 30, 40, 60 and 80% MVC) static (isometric) plantar flexions. Power spectral analysis of these signals was performed on single 256-ms windows at all of the above-mentioned force levels, for both types of contraction. The MF and MPF were calculated from each of the obtained spectra. A less pronounced increase in the MF or MPF was expected for the SO because of its higher type I fibre content. The main results are as follows: (1) similar behaviours were found in the value of MPF and MF across increasing force for the SO and GL muscles, while the GM gave rise to a different behaviour; (2) no difference was found between ramp and step contractions in the behaviour of either MF or MPF across force levels; and (3) different behaviours were observed between the MF and MPF across increasing force levels, for both ramp and step contractions. Our initial expectations were thus not confirmed. It is concluded that the present results support the hypothesis that the EMG power spectrum may be more sensitive to the diameter of the fibres than to the fibre type proportion of the triceps surae muscles. Furthermore, the sensitivity of the power spectrum statistics of a given muscle to the low-pass filter effect of its skin layer was also emphasized.

Adult↗

Cloning and characterization of the human t(3;6)(p14;p11) translocation breakpoint associated with hematologic malignancies.

The t(3;6)(p14;p11) chromosome translocation was identified in a family in which three members developed hematologic malignancies. To help characterize the region on chromosome 3 surrounding this translocation breakpoint, two flanking lambda clones, MS156 and MJ1525, were linked by pulsed-field gel electrophoresis to the same 510-kb NotI fragment on chromosome 3. MS156 was localized to a region proximal to the breakpoint of a der(3) chromosome somatic cell hybrid (derived from the t(3;6) cell line), and MJ1525 localized distal to the breakpoint. MJ1525 was used to screen the CEPH yeast artificial chromosome (YAC) library, which revealed a YAC, 195F3, that spanned the breakpoint. Subcloning into Lambda DASH II and production of a contiguous array of overlapping lambda clones revealed a clone, L17, that spanned the breakpoint. A rare restriction endonuclease map for the YAC 195F3 was constructed, and multiple clusters of rare restriction sites within the YAC were identified, possibly indicating the disruption of a gene by the t(3;6) translocation breakpoint.

Animals↗

Clinical presentation as a guide to early prognosis in vertebrobasilar stroke.

BACKGROUND AND PURPOSE: This study attempts to assess the feasibility and heuristic value of a classification scheme for vertebrobasilar stroke. METHOD: Fifty-seven consecutive patients with vertebrobasilar stroke were classified on the basis of clinical features and computed tomographic abnormalities into single-sector (n = 19), multisector (n = 11), and top-of-the-basilar (n = 27) groups; a sector was defined as that portion of the brain stem supplied by a single penetrating (median) or branch (paramedian or lateral) artery. RESULTS: Thirty-day and 3-year survival rates were 100% and 71%, respectively, in the single-sector group, and 96% and 73%, respectively, in the top-of-the-basilar group. Thirty-day and 3-year stroke recurrence free survival rates were 89% and 76%, respectively, in the single-sector group, and 96% and 88%, respectively, in the top-of-the-basilar group. Seven of the 11 patients in the multisector group died within 2 months of ictus, three having experienced recurrence. CONCLUSIONS: These data, in part supported by prior studies, demonstrate the feasibility and heuristic value of the classification scheme and suggest that single-sector and top-of-the-basilar stroke patients have a relatively benign early prognosis and modest long-term stroke rates.

Actuarial Analysis↗

Halothane induced vasomotion of coronary, renal and iliac arterial rings in malignant hyperthermia susceptible swine.

Animals were identified as porcine malignant hyperthermia susceptible by halothane testing and were slaughtered at 90 kg of body weight. Coronary, renal and iliac arteries were isolated, dissected and 5 mm rings were mounted in 20 mL organ baths with modified Krebs solution maintained at 37 degrees C and oxygenated with 95% O2, 5% CO2. Halothane at 0%, 0.5%, 2% and 5% concentration was bubbled in the organ baths and mechanical responses were recorded over a period of 25 min. Halothane free arteries remained quiescent and the arteries from the halothane sensitive and from the halothane resistant groups reacted similarly. All arteries in the presence of halothane responded with an initial contraction of short duration followed by a relaxation and both phenomena occurred in a concentration-dependent fashion. The iliac artery was the most sensitive to halothane and responded to 0.5% concentration while coronary and renal arteries maintained the resting tension of 4 g. These results demonstrate that vascular smooth muscle, like skeletal muscle and unlike respiratory smooth muscle, has a direct pharmacological response to halothane. These observations led to the postulate that halothane by its transient but significant vasoconstrictive action could be a contributing factor to initiate the fulminant reactions occurring in malignant hyperthermia.

Animals↗

Use of a urologic set for improved fluid administration rates.

This study was designed to compare flow rates of three sets of tubings: a large bore (8 mm) Y-urologic set (Y-URO); a Y-URO with an added in-line blood filter (Y-URO + BF); and a currently used (3.5 mm diameter) blood transfusion set (Y-TRANSFUSION). The time required to empty a one litre bag of Ringer's Lactate from a 1.0 meter vertical drop was measured while using four different IV catheters (9.5, 10, 14 and 16 gauge), and the flow rates calculated. When a 9.5-gauge catheter was used, the flow rates obtained by the Y-URO and the Y-URO + BF were respectively 269 and 162 per cent higher than those achieved by the Y-TRANSFUSION. This wide margin was decreased to 41 and 39 per cent with a 16-gauge catheter. A 9.5-gauge catheter, when compared to a 16-gauge, allowed a 346 per cent improvement in flow rates with the Y-URO, a 225 per cent with the Y-URO + BF and only a 71 per cent increase with the Y-TRANSFUSION. The urologic set allows better fluid flow because of the larger diameter of its tubing. This adaptation of a large bore urologic irrigation set can be very useful when rapid fluid administration is imperative.

Blood Transfusion↗

Hyperglycemic effect of high doses of dobutamine in the rat: studies of insulin and glucagon secretion.

The influence of dobutamine on glucoregulation has been assessed in the rat during and after an intravenous infusion given at the following doses: 0, 0.1, 1.0, 10, 100, and 1000 micrograms X kg-1 X min-1. Plasma glucose, insulin, and glucagon levels were measured at 15-min intervals in unanesthetized previously cannulated rats. Basal glucose levels were preserved with the less than or equal to 10 micrograms X kg-1 X min-1 doses. At the greater than or equal to 100 micrograms X kg-1 X min-1 doses, a marked hyperglycemic effect was observed, partly attributable to some inhibitory effect of dobutamine on glucose-induced insulin secretion and to its stimulatory effect on glucagon secretion. Such data suggest that dobutamine may disturb the normal glucose homeostasis, particularly in situations of deficient insulin reserve.

Animals↗

Analysis of the clinical factors determining natural and maximal gait speeds in adults with a stroke.

The objective of this study was to identify the most important clinical variables determining gait speed in persons with stroke. Sixteen chronic stroke subjects (mean age, 47.9 (+/-15.6) yr; mean time post-stroke, 43.9 (+/-36.5) mo) able to walk independently without a brace participated in the study. The impairments in motor function, sensation of the paretic lower limb, and balance were evaluated with the Fugl-Meyer Assessment. A spasticity index was used to assess the muscle tone of the plantarflexors. The maximal strengths in plantarflexion and hip flexion were measured with a Biodex dynamometric system. Cinematography and foot-contact data collected on the paretic side were used to determine the comfortable and maximal gait speeds. The level of association between gait speeds and the clinical variables were first examined with Pearson's correlation coefficients and, then, with multiple linear regression analyses using the stepwise method. Results revealed that the motor function of the lower limb, balance, and hip flexion strength were significantly related to comfortable and maximal gait speeds (0.5 < r < 0.88; P < 0.05). For the comfortable gait speed, the regression analysis selected only the hip flexor strength as a significant variable (R2 = 0.69). For maximal gait speed, the variables retained were hip flexor strength, sensation at the lower limb, and plantarflexor strength (R2 = 0.85). The present results suggest that strength and sensation at the lower limb are important factors to consider in determining the gait capacity of chronic stroke subjects.

Adolescent↗