992 resultados para Biometrics informations


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Medical images are private to doctor and patient. Digital medical images should be protected against unauthorized viewers. One way to protect digital medical images is using cryptography to encrypt the images. This paper proposes a method for encrypting medical images with a traditional symmetric cryptosystem. We use biometrics to protect the cryptographic key. Both encrypted image and cryptographic key can be transmitted over public networks with security and only the person that owns the biometrics information used in key protection can decrypt the medical image. © Springer Science+Business Media B.V. 2008.

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Comunication in Internationa Conference with Peer Review First International Congress on Cardiovasular Technologies - CARDIOTECHNIX, Vilamoura, Portugal, 2013

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Electrocardiographic (ECG) signals are emerging as a recent trend in the field of biometrics. In this paper, we propose a novel ECG biometric system that combines clustering and classification methodologies. Our approach is based on dominant-set clustering, and provides a framework for outlier removal and template selection. It enhances the typical workflows, by making them better suited to new ECG acquisition paradigms that use fingers or hand palms, which lead to signals with lower signal to noise ratio, and more prone to noise artifacts. Preliminary results show the potential of the approach, helping to further validate the highly usable setups and ECG signals as a complementary biometric modality.

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The Check Your Biosignals Here initiative (CYBHi) was developed as a way of creating a dataset and consistently repeatable acquisition framework, to further extend research in electrocardiographic (ECG) biometrics. In particular, our work targets the novel trend towards off-the-person data acquisition, which opens a broad new set of challenges and opportunities both for research and industry. While datasets with ECG signals collected using medical grade equipment at the chest can be easily found, for off-the-person ECG data the solution is generally for each team to collect their own corpus at considerable expense of resources. In this paper we describe the context, experimental considerations, methods, and preliminary findings of two public datasets created by our team, one for short-term and another for long-term assessment, with ECG data collected at the hand palms and fingers. (C) 2013 Elsevier Ireland Ltd. All rights reserved.

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Electrocardiography (ECG) biometrics is emerging as a viable biometric trait. Recent developments at the sensor level have shown the feasibility of performing signal acquisition at the fingers and hand palms, using one-lead sensor technology and dry electrodes. These new locations lead to ECG signals with lower signal to noise ratio and more prone to noise artifacts; the heart rate variability is another of the major challenges of this biometric trait. In this paper we propose a novel approach to ECG biometrics, with the purpose of reducing the computational complexity and increasing the robustness of the recognition process enabling the fusion of information across sessions. Our approach is based on clustering, grouping individual heartbeats based on their morphology. We study several methods to perform automatic template selection and account for variations observed in a person's biometric data. This approach allows the identification of different template groupings, taking into account the heart rate variability, and the removal of outliers due to noise artifacts. Experimental evaluation on real world data demonstrates the advantages of our approach.

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Behavioral biometrics is one of the areas with growing interest within the biosignal research community. A recent trend in the field is ECG-based biometrics, where electrocardiographic (ECG) signals are used as input to the biometric system. Previous work has shown this to be a promising trait, with the potential to serve as a good complement to other existing, and already more established modalities, due to its intrinsic characteristics. In this paper, we propose a system for ECG biometrics centered on signals acquired at the subject's hand. Our work is based on a previously developed custom, non-intrusive sensing apparatus for data acquisition at the hands, and involved the pre-processing of the ECG signals, and evaluation of two classification approaches targeted at real-time or near real-time applications. Preliminary results show that this system leads to competitive results both for authentication and identification, and further validate the potential of ECG signals as a complementary modality in the toolbox of the biometric system designer.

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Current Electrocardiographic (ECG) signal acquisition methods are generally highly intrusive, as they involve the use of pre-gelled electrodes and cabled sensors placed directly on the person, at the chest or limbs level. Moreover, systems that make use of alternative conductive materials to overcome this issue, only provide heart rate information and not the detailed signal itself. We present a comparison and evaluation of two types of dry electrodes as interface with the skin, targeting wearable and low intrusiveness applications, which enable ECG measurement without the need for any apparatus permanently fitted to the individual. In particular, our approach is targeted at ECG biometrics using signals collected at the hand or finger level. A custom differential circuit with virtual ground was also developed for enhanced usability. Our work builds upon the current stateof-the-art in sensoring devices and processing tools, and enables novel data acquisition settings through the use of dry electrodes. Experimental evaluation was performed for Ag/AgCl and Electrolycra materials, and results show that both materials exhibit adequate performance for the intended application.

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Electrocardiogram (ECG) biometrics are a relatively recent trend in biometric recognition, with at least 13 years of development in peer-reviewed literature. Most of the proposed biometric techniques perform classifi-cation on features extracted from either heartbeats or from ECG based transformed signals. The best representation is yet to be decided. This paper studies an alternative representation, a dissimilarity space, based on the pairwise dissimilarity between templates and subjects' signals. Additionally, this representation can make use of ECG signals sourced from multiple leads. Configurations of three leads will be tested and contrasted with single-lead experiments. Using the same k-NN classifier the results proved superior to those obtained through a similar algorithm which does not employ a dissimilarity representation. The best Authentication EER went as low as 1:53% for a database employing 503 subjects. However, the employment of extra leads did not prove itself advantageous.

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Biometric recognition is emerging has an alternative solution for applications where the privacy of the information is crucial. This paper presents an embedded biometric recognition system based on the Electrocardiographic signals (ECG) for individual identification and authentication. The proposed system implements a real-time state-of-the-art recognition algorithm, which extracts information from the frequency domain. The system is based on a ARM Cortex 4. Preliminary results show that embedded platforms are a promising path for the implementation of ECG-based applications in real-world scenario.

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La télémédecine occupe une place de choix dans les discours internationaux et les initiatives pour la promouvoir foisonnent, notamment dans les pays du Sud. En dépit de cet engouement, il n'existe que peu d'informations concernant l'accès à Internet par le personnel de santé dans ces pays et les usages sociaux de ce média. Cet article présente les résultats d'une recherche qualitative réalisée en 2007 au Mali sur les pratiques associées à la télémédecine. Il montre, d'une part, que ces pratiques sont structurées par la hiérarchie existant au sein du personnel de santé. D'autre part, de nombreux intermédiaires s'interposent entre l'univers d'Internet et les professionnels de la santé, faisant ainsi apparaître une nouvelle figure, celle du « courtier du virtuel ». Aussi, la dimension des rapports de pouvoir est essentielle pour comprendre l'appropriation de la télémédecine par le personnel de la santé.

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1. Abstract Au XXème siècle la médecine a passablement évolué et la question de l'implication du patient dans le processus de décision thérapeutique devient petit à petit une nécessité. La théorie du consentement éclairé apparaît en Suisse à la fin des années 70 et l'information du patient devient un thème incontournable. C'est dans cette perspective que le formulaire de consentement vient progressivement s'imposer. Dans la première partie de ce travail, nous avons cherché à mettre en évidence qu'elles pouvaient être les directives éthiques et juridiques en matière de formulaire de consentement en vue d'une intervention chirurgicale. Pour que ce formulaire soit validé, il doit être accompagné d'une information claire et appropriée afin obtenir un consentement libre et éclairé du patient tant du point de vue éthique que juridique. Dans la deuxième partie, nous nous sommes intéressés à l'usage et l'utilisation du formulaire de consentement employé au sein du service de chirurgie pédiatrique au CHUV et à l'HEL. Afin d'en avoir un bon reflet, nous avons soumis un questionnaire à des chirurgiens cadres ou chefs de cliniques du service de chirurgie pédiatrique. Ce questionnaire se base sur des questions soulevées par la littérature traitant du sujet ainsi que sur l'article 21 de la loi sur la Santé publique du canton de Vaud qui dit, en résumé, que le minimum requis est le droit à l'information afin de donner valablement un consentement. Il est composé de trois parties. Dans la première partie, il en ressort qu'en règle générale les chirurgiens s'accordent sur la définition du formulaire de consentement. Ils sont dans l'ensemble satisfaits du formulaire en vigueur et n'en modifieraient pas la structure. Dans la deuxième partie, la signature du formulaire est vue comme une obligation mais la raison de cette obligation n'a pas la même signification pour chacun et les avis divergent quant il s'agit de savoir qui cela protège. Dans la troisième partie, ils s'accordent tous sur le contenu de l'information jugé nécessaire à donner aux parents des futurs opérés. En conclusion, les chirurgiens pédiatres semblent globalement satisfaits du formulaire actuel et peu le modifieraient. Nous trouvons important de mentionner que peu soulèvent le fait que le principal concerné par l'intervention est l'enfant et que son avis n'est pas toujours sollicité. A l'avenir, il sera important d'impliquer l'enfant dans cette démarche tout en tenant compte de son degré de maturité.