3 resultados para traditional development

em Digital Commons @ DU | University of Denver Research


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Identity development in adolescence is a period of exploration and experimentation. During this stage of development, adolescents are defining their identity in terms of ethnicity, sexual orientation, and gender. It can be a confusing time and the lack of resources and support influence the ability of the adolescent to form a cohesive identity. This struggle to define an identity may lead to symptoms of depression and difficulties with interpersonal relationships. Identity interventions are limited and primarily involve the adolescent talking to a therapist and attempting to verbalize and define subjective distress. The use of a phototherapy intervention focuses on using an adolescent's subjective experiences. Phototherapy provides a way for the therapist and client to explore the photographs the client takes and opens different avenues in the areas of non-verbal and visual communication. Photographs can also promote increased communication about an adolescent's ethnic, sexual or gender identity. Interpretations made by the adolescent about images in the photographs will get in touch with emotional experiences that may be missed in traditional "talk therapy." This paper reviews literature on identity development, specifically in the areas of ethnicity, sexual orientation, and gender identity. Phototherapy, the use of photography to enhance traditional psychotherapy, is described and a rationale is provided for the utilization of phototherapy in adolescent identity development. Vignettes are provided illustrating how phototherapy can be used when working with adolescents who are questioning and exploring ethnic identity, sexual orientation, and gender identity.

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The study of masculinity and its impact on men’s psychological development and subsequent functioning has become more prevalent in the last few decades. This area of research has begun to introduce psychological interventions specific to men in treatment settings. Masculinity, like any socially constructed phenomena, is a fluid concept with overlapping variables and characteristics that are specific to what is learned from one’s social, cultural, and familial environment. According to Tremblay & L’Heureux (2005):

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Rapid scan electron paramagnetic resonance (EPR) was developed in the Eaton laboratory at the University of Denver. Applications of rapid scan to wider spectra, such as for immobilized nitroxides, spin-labeled proteins, irradiated tooth and fingernail samples were demonstrated in this dissertation. The scan width has been increased from 55 G to 160 G. The signal to noise (S/N) improvement for slowly tumbling spin-labeled protein samples that is provided by rapid scan EPR will be highly advantageous for biophysical studies. With substantial improvement in S/N by rapid scan, the dose estimation for irradiated tooth enamels became more reliable than the traditional continuous wave (CW) EPR. An alternate approach of rapid scan, called field-stepped direct detection EPR, was developed to reconstruct wider EPR signals. A Mn2+ containing crystal was measured by field-stepped direct detection EPR, which had a spectrum more than 6000 G wide. Since the field-stepped direct detection extends the advantages of rapid scan to much wider scan ranges, this methodology has a great potential to replace the traditional CW EPR. With recent advances in digital electronics, a digital rapid scan spectrometer was built based on an arbitrary waveform generator (AWG), which can excite spins and detect EPR signals with a fully digital system. A near-baseband detection method was used to acquire the in-phase and quadrature signals in one physical channel. The signal was analyzed digitally to generate ideally orthogonal quadrature signals. A multiharmonic algorithm was developed that employed harmonics of the modulation frequencies acquired in the spectrometer transient mode. It was applied for signals with complicated lineshapes, and can simplify the selection of modulation amplitude. A digital saturation recovery system based on an AWG was built at X-band (9.6 GHz). To demonstrate performance of the system, the spin-lattice relaxation time of a fused quartz rod was measured at room temperature with fully digital excitation and detection.