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Biomedical subjects

T Leo

Publications and source records attributed to T Leo.

6 recordsLinked to original sources

Motor control of voluntary arm movements. Kinematic and modelling study.

The motor control of pointing and reaching-to-grasp movements was investigated using two different approaches (kinematic and modelling) in order to establish whether the type of control varies according to modifications of arm kinematics. Kinematic analysis of arm movements was performed on subjects' hand trajectories directed to large and small stimuli located at two different distances. The subjects were required either to grasp and to point to each stimulus. The kinematics of the subsequent movement, during which subject's hand came back to the starting position, were also studied. For both movements, kinematic analysis was performed on hand linear trajectories as well as on joint angular trajectories of shoulder and elbow. The second approach consisted in the parametric identification of the black box (ARMAX) model of the controller driving the arm movement. Such controller is hypothesized to work for the correct execution of the motor act. The order of the controller ARMAX model was analyzed with respect to the different experimental conditions (distal task, stimulus size and distance). Results from kinematic analysis showed that target distance and size influenced kinematic parameters both of angular and linear displacements. Nevertheless, the structure of the motor program was found to remain constant with distance and distal task, while it varied with precision requirements due to stimulus size. The estimated model order of the controller confirmed the invariance of the control law with regard to movement amplitude, whereas it was sensitive to target size.

Adult

A computer-aided movement analysis system.

Interaction with biomechanical data concerning human movement analysis implies the adoption of various experimental equipments and the choice of suitable models, data processing, and graphical data restitution techniques. The integration of measurement setups with the associated experimental protocols and the relative software procedures constitutes a computer-aided movement analysis (CAMA) system. In the present paper such integration is mapped onto the causes that limit the clinical acceptance of movement analysis methods. The structure of the system is presented. A specific CAMA system devoted to posture analysis is described in order to show the attainable features. Scientific results obtained with the support of the described system are also reported.

Biomechanical Phenomena

Reliable in vivo estimation of the instantaneous helical axis in human segmental movements.

The assessment of the experimental setup and of the data processing methods for the in vivo kinematic investigation of the human joints is described here. The relative movement of contiguous body segments, supposed rigid, is described by means of the instantaneous helical axis (IHA). Great attention has been paid to the stereophotogrammetric aspects and to the filtering and numerical differentiation procedures, in order to obtain reliable estimation of IHA parameters. Their accuracy has been estimated in a simulation context. One experimental case relative to the metacarpophalangeal (MCP) joint is described in detail. The clinical application of the procedures and of the experimental protocol has been used in the entire work.

Algorithms

Stereometry in very close-range stereophotogrammetry with non-metric cameras for human movement analysis.

In this paper a stereophotogrammetric algorithm based on a black-box approach to the modelling of object to image spaces relationship is proposed. The algorithm is well suited for 'very close-range photogrammetry', with respect to experiments in which the measurement field is 0.5 X 0.5 X 0.5 m or smaller, as in the analysis of a few or small body segments movements. The attainable accuracy is high, better than 0.1% of the observation distance. Non-professional and even different cameras can be used. Consequently an inexpensive experimental set-up can be realized. A very simple, cheap and easily usable calibration object is needed. Computation time for the reconstruction of object-space co-ordinates of point body landmarks is one order of magnitude lower than in the case of the Direct Linear Transformation (DLT) (Abdel Aziz and Karara, Proceedings of the ASP/U1 Symposium on Close-Range Photogrammetry, pp. 1-18. American Society of Photogrammetry, 1971; Marzan and Karara, Proceedings of the Symposium on close-range Photogrammetric Systems, pp. 420-467. American Society of Photogrammetry, 1975). Computation time for calibration is two-fold in respect of the DLT. An example of application to the recording of the movements of the index finger with respect to the metacarpophalangeal joint is given.

Biomechanical Phenomena

Modification of nucleic acid levels per mitochondrion induced by thyroidectomy or triiodothyronine administration.

The authors have determined the liver mitochondrial population (number of mitochondria/nucleus) in young rats, which has been thyroidectomized (T) or thyroidectomized and subsequently treated with triiodothyronine (T3). They have observed that thyroidectomy decreased such a population to 72.3% with respect to the normal one, while the T3 administration (at the dose of 10 mug/100 g body weight every second day, from day 50 to day 60 of age) restored the mitochondria number to 81.8% of normal ones. The average levels of proteins per mitochondrion were 8.90 X 10(-13) g in the liver of normal 60-day-old rats. This content was doubled in T rats of the same age while the levels of nucleic acids or the nucleic acid polymerase activities per mitochondrion were enhanced, notwithstanding that the specific values (referred to mg mitochondrial protein) decreased. The T3 administration severely lowered the content of protein per mitochondrion, and this may indicate that thyroid hormones control the normal assemblage of mitochondrial protein.

Age Factors