Schizophrenic patients who are at great risk of relapse are characterized by non-compliance,
denial of illness and need for treatment and no contact with family. So, the prevention of relapse
and readmission to hospital are crucial in mental health practice.
The present study is a descriptive-analytical study that was carried out from November 2nd
2006 through the end of 20 of April 2008.
Objectives: To assess the associated factors with the risk of relapse in schizophrenic patients at
psychiatric hospitals in Baghdad city.
Methodology: A purposive "non-probability" sample of (50) schizophrenic patient who hasd
relapsed was involved in the present study. Data were collected through the use of the constructed
questionnaire and the process of the interview as means for data collection.
The questionnaire was constructed by the researcher to achieve the objectives of the study,
which consisted of two parts; the first one is concerned with the demographic and clinical
characteristics; the second part includes the risk factors of relapse and contains (68) item that
describe the factors related to the family support, factors related to the family hardship and factor
related to the treatment compliance.
Data were analyzed through the application of descriptive statistical analysis (frequency,
percentage, mean and mean of scores and the relative sufficiency and inferential statistic (Multiple
Logistic Regression).
Results: The findings of the study indicated that there was a high family support for schizophrenic
patients, high family hardship, moderate level of non-compliance to the treatment and more than
half of the patients had (30%) chance of relapse related to the recent exposure to recent life events.
The electronic properties (such as energy gap HOMO levels. LUMO levels, density of state and density of bonds in addition to spectroscopic properties like IR spectra, Raman spectra, force constant and reduced masses as a function of frequency) of coronene C24 and reduced graphene oxide C24OX , where x=1-5, were studied.. The methodology employed was Density Functional Theory (DFT) with Hybrid function B3LYP and 6-311G** basis sets. The energy gap was calculated for C24 to be 3.5 eV and for C24Ox was from 0.89 to 1.6862 eV for x=1-5 ,respectively. These energy gaps values are comparable to the measured gap of Graphene (1-2.2 eV). The spectroscopic properties were compared with experimental measurements, specificall
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