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J Dimnet

Publications and source records attributed to J Dimnet.

At least 19 recordsLinked to original sources

A new radiographic method for evaluation of the position of the carpus in the coronal plane: results in normal subjects.

The methods used to quantify pathological variations of the position of the carpus in the coronal plane, mainly ulnar translation of the carpus from trauma or rheumatoid disease, are often difficult to use in arthritic or postsurgical wrists; moreover, they require the measurement of the whole length of the third metacarpal. The aim of this study was to determine a reliable and easy-to-use index to analyse the position of the carpus in the coronal plane. One hundred PA X-rays of normal wrists were studied, of which 56 presented with a medial hamate facet of the lunate. An index of position of the carpus in the coronal plane is defined as the ratio of orthogonal distances from [1] the most medial point of the distal radius and [2] the most medial point of the capitate to the long axis of the radius: its mean value being 1.06 (+/- 0.13) in this series of normal wrists. The index is influenced by the presence of a medial hamate facet of the lunate, but is not dependent on the ulnar head and radial styloid process, nor on the length of the third metacarpal. To help to define the usefulness of the index in quantifying the different types of ulnar carpal translations in clinical practice, further studies are required.

Adult↗

The weight-bearing knee after anterior cruciate ligament rupture. An in vitro biomechanical study.

Unilateral weight bearing was simulated on 12 cadaver knees to quantitate anterior tibial translation (ATT) after anterior cruciate ligament (ACL) transection and to asses the role of the posteromedial structure and the hamstrings in controlling laxity. With the ACL intact, ATT was 3.5 +/- 2.8 mm in extension and 4.3 +/- 3.6 mm at 60 degrees flexion. After sectioning the ACL, ATT was 6.5 +/- 4.7 mm in extension and 17.5 +/- 10 mm at 60 degrees flexion (P = 0.001). Applying a force in the hamstrings was unable to correct the pathological ATT observed after ACL section. Partial medial meniscectomy did not increase ATT after the ACL section. Disinsertion of the posterior horn of the medial meniscus and total medial meniscectomy increased ATT significantly compared to isolated ACL section. After ACL transection, sectioning the meniscotibial fibers or posteromedial capsule significantly increased ATT (6.5 +/- 0.5 mm in extension). Section of the postero-oblique ligament or popliteus tendon had no effect on ATT.

Aged↗

A solidification procedure to facilitate kinematic analyses based on video system data.

When video-based motion analysis systems are used to measure segmental kinematics, the major source of error is the displacement of skin-fixed markers relative to the underlying skeletal structure. Such displacements cause the marker representation of the segment to deform, thereby decreasing the accuracy of subsequent three-dimensional kinematic calculations. We have developed a two-step solidification procedure to address this problem. First, the mean rigid shape is computed which best represents the time-varying marker configuration of each segment. Second, a least-squares minimization is used to replace the measured marker coordinates with those corresponding to the best-fit mean rigid shape. Rigid body theory can then be applied unambiguously to perform kinematic analyses. To evaluate this approach, we defined an unperturbed three-dimensional reference movement using kinematic data from the swing phase of gait. After perturbing the marker coordinates with artificial noise, the rotation matrix and translation vector (absolute and relative movement) between each pair of successive images were computed using (1) reference frames fixed directly to the perturbed marker coordinates, (2) a least-squares minimization procedure found in the literature, and (3) the proposed solidification procedure. The least-squares and solidification procedures produced extremely similar results which, relative to the direct calculation, reduced kinematic errors on average by 20-25% when the maximum distance between markers was small (e.g. < 15 cm). The solidification methodology therefore combines the numerical benefits of the least-squares method with the conceptual benefits of a rigid body method.

Algorithms↗

The balance point of the intervertebral motion segment: an experimental study.

A loading or "balance" point was sought that could serve as a functional reference for mechanically testing spinal motion segments. This point is located above the in-vitro motion segment where, when an axial compressive load is applied, the segment exhibits minimal coupled rotation. The balance point is a reliable indicator of the mechanical characteristics of the segment. Segments exhibited increasing rotation as axial compressive loads were applied further and further away from the balance point. The location of the balance point was significantly affected by sustained static or cyclic flexion-compression loading and by brief flexion-compression overloads.

Biomechanical Phenomena↗

[The Armstrong procedure in scoliosis surgery. Clinical, biomechanical and tridimensional study].

The Armstrong procedure combines the use of a conventional Harrington rod in the concavity of a curve, together with a distracting force on the convex side, this force being applied one vertebra lower. Workers have used this procedure in 35 cases. It is concluded that there are three advantages: A better horizontal disposition of the lower vertebra. Greatly diminished stress on the two rods shown by a biomechanical study. Derotation is more easily obtained and the spine is better balanced as a whole, as shown by a three-dimensional study comparing this method and conventional Harrington rodding.

Adolescent↗

The finite displacements vector's method: an application to the scoliotic spine.

This paper presents a vectorial method to directly obtain the components of the screw displacement between two positions of a body in a three-dimensional space (position of the helical axis of motion, rotation around this axis and translation along it). This method can be applied either to the case of a bone, moving with respect to the reference frame, or to the case of the relative motion of a joint; it gives exact formulae even if the displacements are finite; it generalizes the results (already published) obtained for finite displacements in the plane. The involved computation is easy, and the use of this method deals with only a small magnification of experimental errors. The technique of a screw displacement is applied to the vertebral segments of a scoliolic spine. The necessary data is taken from a couple of in-vivo X-rays. The goals of this study are: first, to describe the shape of the spine at each step of its evolution and second, to quantify the evolution in time of any segment of the spine between two states.

Biomechanical Phenomena↗

[Cinematic study of the cervical spine during flexion-extension movements].

By means of dynamic roentgenographic study (5 to 7 X-rays) of the cervical spine in sagittal plane, the authors were able to define: amplitudes of each intervertebral joints. C4, C5 and C6 are the more mobile levels, position of instant centers of rotation for each intervertebral joint in healthy and pathologic individuals. This method allows a kinematic diagnosis of discopathies.

Biomechanical Phenomena↗

Cervical spine motion in the sagittal plane: kinematic and geometric parameters.

The kinematic function of the cervical spine has been examined previously by means of cineradiography or a sequence of lateral X-rays, usually of a flexion-extension range of motion. Interpretation of these studies, however, presents difficulties. One of the major problems is how to extract information from the X-ray images which is not only explicit, quantitative and accurate, but which is also diagnostically useful. Another problem is that as one increases the number of steps of motion between full flexion and full extension to obtain a more detailed examination, one also increases the amount of radiation exposure and the bulk of the data. Reported here is a technique which uses one lateral-view X-ray for each of five neck positions: full flexion, full extension, and three intermediate positions. From each set of X-rays, various parameters are derived to describe two types of data: kinematic (angles and centers of rotation), and geometric (pattern of curvature). This technique has been shown capable of identifying functional abnormalities in patients with neck pain who have no structural abnormalities detectable by X-ray. Further experience will be useful in better defining various types of functional abnormalities.

Adult↗

[Cinematic study of prosupination at the level of the radiocubital (radioulnar) articulations].

The authors, using cinematic methods have determined the positions of Instant Rotation Center (IRC) in upper and lower radio-ulnaris joints, in the movement of prosupination : -- At the upper radio ulnaris joint, the IRC divide themselves into 2 zones (I and II), corresponding to the centres of 2 circles of different diameters, each one respectively corresponding to large and small anatomical curves of the head of the radius. -- At the lower radio ulnaris joint, the IRC divide themselves into a third zone (III), situated opposite the head of ulna. The prosupination movement is effectuated around 2 axes delta I - II, and delta II - III : supination around delta I - III, and pronation around delta II - III in a first phase, ten around delta I - II in a second phase. The movement is not impaired if the ligamentum annulare radii is cut, but it is considerably impaired if the ligamentum quadratum is cut.

Elbow Joint↗