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S Le Bozec

Publications and source records attributed to S Le Bozec.

16 recordsLinked to original sources

Determination of joint efforts in the human body during maximum ramp pushing efforts.

Determining with accuracy, the internal efforts in the human body is a great challenge in Biomechanics, particularly in Physical Therapy and Ergonomics. In this context, the present study develops a human body model that permits a non-invasive determination of the joint efforts produced by a seated subject performing maximum ramp pushing efforts. The joint interactions during these experiments are provided by a dynamic inverse model of the human body, using a symbolically generated recursive Newton-Euler formalism. The theoretical investigation is presented in two steps, with increasing complexity and relevance:The dynamic model confirms some previous studies of the effects of biomechanical factors on the performance of the task and is proposed as an accurate method for determining the joint efforts in dynamic contexts. Finally, this application is a preliminary benchmark case that will be extended to: *physical therapy, in order to analyse the joint and muscle efforts in various motion contexts, particularly for patients with fibromyalgia and patients with lumbar diseases; *accidentology, in order to analyse and simulate car occupant dynamics before a crash.

Biomechanical Phenomena↗

Does support surface coefficient of friction influence postural dynamics and isometric force productions of the upper extremities performed by seated subjects?

The purpose of this study is to determine if increasing the potential risk of slipping on support surface materials decreases postural dynamics and task performance. Seated subjects were asked to exert maximum horizontal two-handed isometric pushes as quickly as possible on a dynamometric bar. Reaction forces exerted at seat (Rxs and Rzs) and footrest (Rxf and Rzf) were measured using force sensors. A dynamometric bar measured horizontal push force (Fx). Global adherence ratio (micro) was calculated. Three support surface materials, characterised by different coefficients of friction, were tested. The same surfaces were placed on the seat and the footrest during a series of pushes. It was shown that the different support surfaces significantly influence Fx, Rxs, Rzs, Rzf and micro maximum values obtained at the end of the push. Even when the instructions given to the subject are to produce a maximum push, the maximum horizontal force applied to the bar differs according to the support surface material. Dynamic postural adjustments are influenced by characteristics of slipperiness of support surfaces. The coefficient of friction contributes an essential element to the program of postural dynamics, which in turn modulates the task performance. During brief isometric pushes, seated subjects have the capacity to control the potential risk of slipping.

Adult↗

Does body stability depend on postural chain mobility or stability area?

The purpose of this study was to examine whether postural stability depends only on the support base perimeter, that is the stability area, when body balance is perturbed by respiration. To this end, seven normal subjects were asked to breathe quietly, breathe deeply and to hold their breath (apnoea). They were asked to maintain a standing posture (Sta), and two sitting postures differing by the ischio femoral contact with the seat (Sit100 and Sit30). In other words, these three postures differed not only by the stability area, but also by pelvis mobility. The thoracic perimeter, displacement of the centre of pressure (CP) and iliac crest acceleration (Ah), taken as an index of pelvis mobility, of seven normal subjects were recorded. The results showed that the sway path (SP) was longer in seated subjects than in standing ones, and in Sit100 than in Sit30. The distance between the CP extreme positions (Delta Xp) varied in the opposite direction to SP. Iliac crests and thoracic displacements were shown to be in phase in Sit condition, and did not display any particular pattern in Sta. It was concluded that postural steadiness depends on the postural chain mobility in addition to stability area. As pelvis and lumbar column mobility are related, it is proposed that both contribute to postural chain mobility, owing to respiratory perturbation being compensated.

Abdomen↗

A sequence of postural muscle excitations precedes and accompanies isometric ramp efforts performed while sitting in human subjects.

The purpose of this study was to explore how the muscles which control postural body segments are activated during bilateral isometric ramp pushes exerted with the upper limbs by seated subjects. The paradigm under study presents the advantage that the subject is in a quasi-static posture, and since upper limbs are stretched out, the dynamic phenomena, which might occur, can only originate from the rest of the body, which means from the postural chain. A dynamometer was used to measure the horizontal force, Fx, exerted on the bar, and a custom-designed force-plate was used to measure global reaction forces (Rx) and displacement of the centre of pressure (Xp) along the antero-posterior axis. Electromyograms (EMGs) were picked up by bipolar surface electrodes from 14 muscles crossing the lower limb, pelvis, trunk and upper limb joints. It was shown that transient push efforts require monotonous EMG increase in postural as well as in focal muscles. The EMG sequence starts with the postural muscles and ends with the focal ones. The postural EMG sequence is anticipatory. It is concluded that the EMG sequence is programmed according to the task parameters, and that its role is to counteract in advance the perturbing effect of the effort, in order to allow the effort to be performed efficiently. It is suggested that excitation between the postural muscles is distributed according to their biomechanical role in relation to the supports.

Biomechanical Phenomena↗

Changes in reciprocal and transjoint inhibition induced by muscle fatigue in man.

The effects of localised muscle fatigue on group I reflex pathways were studied in the human upper limb. Activation of group I afferents originating from biceps and extensor carpi radialis (ECR) resulted in an inhibition of flexor carpi radialis (FCR) motoneurones, probably through a disynaptic pathway. Reciprocal inhibition (from ECR to FCR) and transjoint inhibition (from biceps to FCR) were compared before and during localised fatigue induced in the muscle from which group I afferents originated. Fatigue of wrist extensors did not modify the reciprocal inhibition, while during fatigue of elbow flexors the transjoint inhibition was less pronounced. This striking difference between reciprocal and transjoint inhibition is discussed in relation to the pattern of diffusion of voluntary contractions during fatigue in the human upper limb.

Adult↗

Development of muscle fatigue during intermittent submaximal static contraction in an agonist heterogeneous muscle group.

A comparison of the mean power frequency (MPF) and the root mean square amplitude (rms) of the myo-electric signal of two agonist muscles [triceps brachii (fast; TB) and anconeus (slow; ANC)] has been made during repeated intermittent static contractions. Subjects were asked to maintain different extension torques at 50% of maximal voluntary contraction until this could no longer be maintained (endurance time). The interval between successive contractions was kept constant at 3 min. During the first six successive contractions, a decrease in MPF and an increase in rms were most pronounced, ANC and TB MPF recovered with subsequent overshoot. A marked decline in endurance time was also seen. The increase in rms was greater for TB than for ANC when the decrease in MPF was greater for ANC than for TB. The differences in power spectrum density function upper frequencies of the two muscles could explain the greater decrease of MPF in ANC. Our data would suggest a greater fatigability in TB relative to ANC. On and after the seventh contraction, a steady-state in duration, muscle temperature, MPF and rms was reached. These results suggested that a slow (ANC) and a fast (TB) muscle acted in a similar way during intermittent static contractions, when the intervening rest was not long enough to allow full recovery of the muscles.

Adolescent↗

An electromyographic study of an all-out exercise on a cycle ergometer.

The electromyograms of the vastus lateralis, the vastus medialis and the biceps femoris have been recorded with surface electrodes during an exhausting exercise on a Monark cycle ergometer, derived from the Wingate test (a 45 second all-out exercise against a braking force equal to 70 N) and during the velocity plateaus of submaximal exercises performed before this exhausting exercise on the same ergometer against the same resistance. This experiment has been carried out in order to study whether central fatigue occurs during an all-out anaerobic capacity test. One subject excepted (a former 800 m runner and road cyclist), there was a decrease in the electro expected integrated electromyogram (iEMG) during the exercise. The iEMG declines of the vastus medialis and the vastus lateralis were parallel and the revolution-to-revolution iEMG changes of the vastus medialis were positively correlated with those of the vastus medialis. These EMG changes suggest the occurrence of a central fatigue during this type of exercise. It was not possible to show a general trend for the effect of fatigue upon the EMG activity pattern of the biceps femoris because of large difference between subjects.

Adult↗

Differences between motor unit firing rate, twitch characteristics and fibre type composition in an agonistic muscle group in man.

A comparison was carried out between the motor unit (MU) firing rate and the characteristics of the twitch and the fibre type composition of anconeus and triceps brachii. Fibre type composition (type I, type II) was determined in whole cross-sections of cadaver specimens. The proportion of type I fibre was 60%-67% in anconeus and 32-40% in the lateral head of triceps brachii. Reflecting these histochemical differences, the contraction time of anconeus and triceps was 92 +/- 9 ms and 68 +/- 9 ms respectively. It follows that anconeus can be classified as a slow muscle, as opposed to the lateral head of triceps. The relationship between MU firing rate and isometric force, tested at 90 degrees elbow flexion, differed between the two muscles for force values below 30% of maximal voluntary contraction. No significant increase in MU firing rate was found in anconeus at forces above 5% of maximal voluntary contraction. It is concluded that even within a single agonistic muscle group acting at a single joint there is an adaptation of MU firing rate to the contractile characteristics of each muscle.

Arm↗

Modulation of slow and fast elbow extensor EMG tonic activity by stretch reflexes in man.

Reflex EMG responses to sudden passive flexion of the elbow were recorded from anconeus and triceps brachii in 5 human volunteers. While the subjects were required not to resist the flexion movement, they were required to maintain an extension torque of 3.5 or 7.0 Nm prior to its onset. Under these isotonic conditions, the latency and amplitude of the reflex activities from anconeus and triceps brachii did not differ significantly, in contrast to the findings of Le Bozec (1986) in actively relaxed subjects. The myotatic/postmyotatic EMG amplitude ratio did not provide a further quantitative way to distinguish between these muscles. The absence of a difference between the reflex activities of a slow (anconeus) and a fast (triceps brachii) muscle is interpreted as resulting from a strong drive of spindle activity on the whole extensor motoneuron pool, which outweights the differences in recruitment due to the differing relative amounts of type I and type II fibres in the two muscles. Differences like those described between finger and calf muscles by other authors are thought to be due to the relative degree of corticalization of these muscles. All short and long latency responses of the muscles increased in magnitude and decreased in latency with increasing background EMG activity as well as with increasing initial length. The position and tonic activity dependency of these responses is explained in terms of alpha-gamma coactivation.

Adult↗

Long-latency stretch reflexes of the human elbow extensors during voluntary relaxation: differences between agonistic muscles.

Reflex electromyographic (EMG) responses of elbow extensor muscles to unexpected elbow flexion were recorded in the absence of initial tonic activity from subjects instructed not to resist the stretch. The monosynaptic component M1 was present only in the anconeus muscle and only for high accelerations. The acceleration value at which the long-latency components M2 and M3 appeared was lower for anconeus than for triceps brachii. Increases in peak acceleration of stretch resulted in decreases in M2 and M3 latencies and increases in M2 and M3 magnitudes in both muscles. However, M2 and M3 latencies for anconeus were shorter than those of triceps brachii, except at high acceleration values. Furthermore, the magnitude of M2 and M3 components of anconeus activity increased faster for low accelerations than for high accelerations, whereas those of triceps brachii increased in proportion to the acceleration. These differences between anconeus and triceps brachii were similar to those described earlier for voluntary movements. It is suggested that the motoneurons of all elbow extensor muscles may be recruited as a single motoneuron pool following Henneman's size principle, irrespective of whether the activity is voluntary or reflex in origin.

Adult↗

Contributions of slow and fast muscles of triceps surae to a cyclic movement.

The relative contribution of synergistic muscles has been studied during pedalling on a bicycle. The electromyographic (EMG) activity of the different components of triceps surae (namely soleus or SOL and medial gastrocnemius or MG) has been recorded and analyzed for increasing pedalling speed performed against increasing resistance. The results indicate that SOL IEMG (integrated EMG) increases linearly (y = 2x-12.1; r = 0.98) with increasing load (10-70 N) at constant speed (60 rpm), whereas no change is noted in MG IEMG below 40 N. In contrast, when the pedalling speed is increased (from 30 to 170 rpm) at constant load, MG IEMG shows the largest increase. Furthermore, although in both muscles EMG activity appears earlier in the movement with increases in load and/or speed, the delay between the onset of both EMGs remains unchanged at constant speed and synchronization of MG with SOL is only observed when speed is increased above 140 rpm. These results suggest that the different muscles of the triceps surae make specific contributions to the development of the mechanical tension required to maintain or increase the speed of movement.

Adult↗

The synergy of elbow extensor muscles during dynamic work in man. I. Elbow extension.

This study concerns the synergy of the elbow extensor muscles during voluntary elbow extension performed at various velocities against different intertia and in a horizontal plane. The quantity of excitation (Q) of the three heads of the triceps brachii muscle increases linearly with the external work (W). On the contrary, the anconeus Q increases rapidly for low values of W while for higher values it increases very slowly but linearly with the W. These results imply a proportionality between Q and W of the different muscles except in the case of anconeus for low values of W. Furthermore, it is shown that the position of the shoulder does not influence the relative contribution of the different muscles to W but leads to an adjustment of the activity of the long head. The different extensor muscles do not come into play simultaneously. The chronology of the muscular activities depends on velocity and inertia. The importance of anconeus activity for slow movements is pointed out, and it is suggested that there exists a specific control of the motoneurons of the different elbow extensor muscles. The limits of the concept of muscle equivalent are also discussed.

Adolescent↗

The synergy of elbow extensor muscles during dynamic work in man. II. Braking of elbow flexion.

The muscular synergy between the elbow extensors was studied during the braking of voluntary elbow flexion performed in a horizontal plane at various velocities and inertias. The braking of movements performed at very low velocity is effected by passive viscoelastic forces. For higher velocities there exists a chronology of muscular activities which depends on both velocity and inertia. From the characteristics of this muscular chronology it is inferred that: 1. The anconeus plays an important role in braking slow movements. 2. The motor output is distributed separately to the motoneurons of each muscle. The muscular activity patterns are of three distinct types. The agonist-antagonist timing is correlated with velocity and inertia. Its dependence on reciprocal inhibition mechanisms is discussed.

Adult↗