New PDF release: 14th Nordic-Baltic Conference on Biomedical Engineering and

By Arunas Lukosevicius (auth.), Alexei Katashev, Yuri Dekhtyar, Janis Spigulis (eds.)

ISBN-10: 3540693661

ISBN-13: 9783540693666

ISBN-10: 354069367X

ISBN-13: 9783540693673

14th Nordic – Baltic convention on Biomedical Engineering and scientific Physics NBC 2008 introduced jointly scientists not just from the Nordic – Baltic area, yet from the full global. This quantity offers the court cases of this foreign convention, together equipped through the Latvian clinical Engineering and Physics Society, Riga Technical college and college of Latvia in shut cooperation with overseas Federation of clinical and organic Engineering (IFMBE)

The subject matters lined via the convention complaints contain: Biomaterials and Tissue Engineering; Biomechanics, man made Organs, Implants and Rehabilitation; Biomedical Instrumentation and Measurements, Biosensors and Transducers; Biomedical Optics and Lasers; Healthcare administration, schooling and coaching; details know-how to wellbeing and fitness; clinical Imaging, Telemedicine and E-Health; clinical Physics; Micro and Nanoobjects, Nanostructured structures, Biophysics

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Additional info for 14th Nordic-Baltic Conference on Biomedical Engineering and Medical Physics: NBC 2008 16–20 June 2008 Riga, Latvia

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1994, 12, 637. J. S. Steven, J. Anat. 1977, 123 (2), 437. C. Muehleman, S. Majumdar, A. Sema Issever, F. H. Menk, L. Rigon, G. Heitner, B. Reime, J. Metge, A. E. Kuettner, J. Mollenhauer, Osteoarthritis Cartilage, 2004, 12, 97. I. Zizak, P. Roschger, O. M. Misof, A. Berzlanovich, S. Bernstorff, H. Amenitsch, K. Klaushofer Characteristics of mineral particles in the human bone/cartilage interface. J Struct Biol 2003, 141, 208. J. Mollenhauer, M. Aurich, C. Muehleman, G. C. Irving, Connect Tissue Res 2003, 44:201.

Modern microscopes now give access to a different way and more detailed analyse of these interfaces [15] . II. MATERIALS AND METHODS Human tali were prepared for confocal microscopy investigation as described in [15]. The samples were investigated by CLSM (Zeiss Meta) and data evaluation was made using quantitative image analyses (Leica Quantimed). For CLSM magnifications of 10x and 20x were found to be most appropriated to reveal the structures. Software of CLSM was used to make correction for non planar surfaces.

X-ray diffraction measurements using a vertical diffractometer (Seiffert XRD 3000TT Bragg -Brentano). The used radiation was CuKĮ, and in the diffracted fascicle was a graphite monocromator. The patterns were recorded using the T  T mode, analyzed with the Analyze program and compared with the corresponding JCPDS files. Contact angle measurement. Water contact angle were measured using a DIGIDROP Contact Angle Meter (BGX Scientific Instruments) at room temperature. The contact angle was measured immediately after drop deposition, with a digital camera, using the program Windrop.

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14th Nordic-Baltic Conference on Biomedical Engineering and Medical Physics: NBC 2008 16–20 June 2008 Riga, Latvia by Arunas Lukosevicius (auth.), Alexei Katashev, Yuri Dekhtyar, Janis Spigulis (eds.)

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