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1.
Photobiomodul Photomed Laser Surg ; 40(6): 387-394, 2022 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-35749704

RESUMO

Background: Androgenetic alopecia (AGA) is a genetically determined condition, which leads to progressive hair loss (HL) of the vertex, affects hair follicles, and promotes partial or total HL. It may be related to important psychological and social distress. Objective: The aim of the study was to evaluate the effects of photobiomodulation (PBM) in patients with AGA. Methods: Twenty-five men 20-54 years of age participated in this study. The irradiations were punctual, in contact mode, with 1 cm between each point covering the entire affected area. A red low-level laser (λ = 660 nm) (Recover®, MMOptics, São Carlos, Brazil) was used with 100 mW, 30 sec, and 3 J per point, twice a week on alternate days for 10 weeks. Evaluations were made by photographic records from the same area before any intervention (T1), after 5 weeks (T2), after 10 weeks (T3). Two blinded evaluators using the ImageJ® software assessed the hair density. Results: The hair density evaluation showed a significant increase in hair count between T1 and T2 (p = 0.0004) and between T1 and T3 (p = 0.0285), however between T2 and T3 no statistical difference was found (p > 0.05). Conclusions: PBM provides a stimulus for hair density in 5 weeks. After this period, we observed that after five extra sessions, it does not increase hair density in the treated region. This study showed that the PBM is effective and promoted safe results with a reduced number of sessions for the AGA treatment.


Assuntos
Alopecia , Cabelo , Alopecia/radioterapia , Brasil , Humanos , Masculino
2.
Res. Biomed. Eng. (Online) ; 34(3): 279-283, July.-Sept. 2018. graf
Artigo em Inglês | LILACS | ID: biblio-1040973

RESUMO

Abstract Introduction The use of 3D imaging in the medical field has proven to be a benefit to doctors when diagnosing patients. As for different medical applications, 3D visualization systems have advantages in terms of a better spatial understanding of anatomical structures, better performance of tasks that require high level of dexterity, increased learning performance, and improved communications with patients or between doctors. Methods In this technical report, we show how to employ a multi-view autostereoscopic system to provide 3D images without any special glasses or equipment, describing a new way to obtain 3D visualization using sets of 2D images instead of real volumetric data such as magnetic resonance imaging (MRI) or computed tomography (CT). We also propose an application of the images in neuroanatomy. Results We obtained three-dimensional images of anatomical parts for visualization without glasses with resolution of 336 × 210 pixels'. Conclusion The proposed method was able to generate three-dimensional high-resolution images and has great potential to be used in various areas such as anatomy and physiological studies.

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