Repeated concussion is becoming increasingly recognized as a serious public health concern around the world. Moreover, there is a greater awareness amongst health professionals of the potential for repeated pediatric concussions to detrimentally alter the structure and function of the developing brain. To better study this issue, we developed an awake closed head injury ACHI model that enabled repeated concussions to be performed reliably and reproducibly in juvenile rats.
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Previous issue Next issue. View all abstracts. In this paper, we propose a low voltage driven RF MEMS capacitive switch with the introduction of perforations and reinforcement.
Medical devices based on direct, pulsed and alternating current. Characteristics of electric current. Ohm's Law and Joule-Lenz in differential form.
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Amblyopia is a reduction of vision in an eye resulting from misalignment of the eyes strabismus or a significant difference in the refractive powers between the eyes. Treatment is more effective if the cause of the amblyopia is detected and treated early. Treatment includes glasses, patching of an eye, and vision therapy.
In a preferred embodiment, the invention relates to therapeutic methods and products for the treatment of inflammation, inflammatory diseases and conditions, and proliferative diseases and conditions. In another embodiment, the invention relates to methods and products for treating excised cells, tissues and organs, hi yet another embodiment, the invention relates to oral care methods and products for the treatment of an animal's mouth. In a fourth embodiment, the invention relates to personal care methods and products, especially for the treatment of the skin of an animal.
Biological materials have robust hierarchical structures capable of specialized functions and the incorporation of natural biologically active components, which have been finely tuned through millions of years of evolution. These highly efficient architectural designs afford remarkable transport and mechanical properties, which render them attractive candidates for flexible electronic sensing technologies. This review provides a comprehensive overview of the fundamental aspects and applications of biological materials for flexible electronic devices and discusses various classes of biological materials by describing their unique structures and functions. We discuss the effect of the biological activity of biological materials on the improved properties in detail, because this effect overcomes the limited bioavailability and restricted morphology of materials generally encountered in traditional flexible electronic devices.
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