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1.
J Med Syst ; 43(5): 109, 2019 Mar 19.
Artículo en Inglés | MEDLINE | ID: mdl-30887234

RESUMEN

During an FDM production process, there are different external disturbances to the characteristics of the machine that can affect to the production process. These disturbances will cause the final result differs from the desired one. Moreover, these disturbances, such as temperature or chamber humidity, are extremely important in case of using biocompatible materials. The use of these kind of materials with not controlled environment, can cause them to modify or loss of their properties; what will make the product unusable. Apart from these external disturbances, the conditions of the machine to which the material is subjected must also be considered, such as temperature, vibrations or extrusion speed. The monitoring of all these data will allow to know the conditions to which the product was exposed during the process. In this way, it will be able to verify the validity of the final product. For these reasons, the purpose of this work is to monitor the conditions of production of structures with biocompatible materials by fused deposition modelling (FDM) technique. This monitoring will allow us to obtain a report that guarantee the technical and geometrical characteristics of the model and the biomaterial properties. The parameters chosen to be monitored are: Diameter of filament use, temperature in extrusion nozzle, ambient temperature in closed chamber, ambient humidity in closed chamber. The obtained results, after collected and analysing the data, present variations of up to 3% in the temperature of the nozzle of the extruder with respect to set temperature. In the case of the filament diameter the difference with respect to the value provided from the filament supplier is of 13,7%. In addition, the results show how the ambient humidity in closed chamber has changed by 2 percentage points and the ambient temperature in closed chamber has been increased 6,52 °C with respect to the set values.


Asunto(s)
Materiales Biocompatibles/normas , Industria Manufacturera/organización & administración , Humanos , Humedad , Industria Manufacturera/normas , Temperatura
2.
J Med Syst ; 42(3): 36, 2018 Jan 15.
Artículo en Inglés | MEDLINE | ID: mdl-29333590

RESUMEN

Currently, there are sophisticated applications that make it possible to visualize medical images and even to manipulate them. These software applications are of great interest, both from a teaching and a radiological perspective. In addition, some of these applications are known as Free Open Source Software because they are free and the source code is freely available, and therefore it can be easily obtained even on personal computers. Two examples of free open source software are Osirix Lite® and 3D Slicer®. However, this last group of free applications have limitations in its use. For the radiological field, manipulating and post-processing images is increasingly important. Consequently, sophisticated computing tools that combine software and hardware to process medical images are needed. In radiology, graphic workstations allow their users to process, review, analyse, communicate and exchange multidimensional digital images acquired with different image-capturing radiological devices. These radiological devices are basically CT (Computerised Tomography), MRI (Magnetic Resonance Imaging), PET (Positron Emission Tomography), etc. Nevertheless, the programs included in these workstations have a high cost which always depends on the software provider and is always subject to its norms and requirements. With this study, we aim to present the advantages and disadvantages of these radiological image visualization systems in the advanced management of radiological studies. We will compare the features of the VITREA2® and AW VolumeShare 5® radiology workstation with free open source software applications like OsiriX® and 3D Slicer®, with examples from specific studies.


Asunto(s)
Procesamiento de Imagen Asistido por Computador/métodos , Imagen por Resonancia Magnética/métodos , Tomografía de Emisión de Positrones/métodos , Diseño de Software , Tomografía Computarizada por Rayos X/métodos , Humanos
3.
J Med Syst ; 41(5): 83, 2017 May.
Artículo en Inglés | MEDLINE | ID: mdl-28386686

RESUMEN

The creation of new rapid prototyping techniques, low cost 3D printers as well as the creation of new software for these techniques have allowed the creation of 3D models of bones making their application possible in the field of teaching anatomy in the faculties of Health Sciences. The 3D model of cranium created in the present work, at full scale, present accurate reliefs and anatomical details that are easily identifiable by undergraduate students in their use for the study of human anatomy. In this article, the process of scanning the skull and the subsequent treatment of these images with specific software until the generation of 3D model using 3D printer has been reported.


Asunto(s)
Cráneo , Humanos , Modelos Anatómicos , Impresión Tridimensional , Programas Informáticos
4.
J Med Syst ; 41(5): 77, 2017 May.
Artículo en Inglés | MEDLINE | ID: mdl-28337668

RESUMEN

The increasing relevance of Information and Communication Technologies (ICTs) in medical care is indisputable. This evidence makes it necessary to start studies that analyse the scope these new forms of access to information and understanding of medicine have on the professional activity of the physician, on the attitude and on the knowledge of patients or, on the doctor-patient relationship. The purpose of this study is to explore some of these aspects in a group of physicians whose clinical activity is related to one of the greatest social impact health problems which is the treatment of chronic pain. Starting with the completion of a questionnaire, in the study group it is observed that the interaction between social structure, increase of information flows and ICTs generate transformations in social practices and behaviour of the actors of the health system. Internet is confirmed as an information space on the subject, but is shown as an underutilized space of interaction between the doctor and his patient.


Asunto(s)
Anestesiología/economía , Dolor Crónico/terapia , Educación Médica Continua/métodos , Tecnología Educacional/métodos , Informática Médica/métodos , Manejo del Dolor/normas , Relaciones Médico-Paciente , Adulto , Actitud del Personal de Salud , Dolor Crónico/psicología , Comunicación , Educación Médica Continua/tendencias , Tecnología Educacional/tendencias , Femenino , Humanos , Difusión de la Información/métodos , Masculino , Informática Médica/tendencias , Persona de Mediana Edad , Manejo del Dolor/métodos
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