Objective:
This study aims to asses the patients' compliance with essential hypertension in respect to antihypertensive
medications, follow-up, dietary pattern and health habits, to identify the associated long-term complications, and
to find out the relationship between patient's compliance, and demographic characteristics such as age, gender,
level of education, and duration of disease.
Methodology:
A descriptive study was carried out in Nasiriyah Teaching Hospital to achieve presented objectives .
Results:
The results of the study revealed that there were a significant association between educational level and total
patient's compliance, a significant association was found between the duration of disease and complications, the
majority (63%) of the sample was non-complaint, most of them was males with low level of education and
(70%) of them had complications. A greater number (21%) suffering from (Cerebrovascular accident).
Recommendation:
The research recommends that establishing well-equipped specialized hypertension clinics, educational program
should be designed, antihypertensive drugs should be supported by government, antihypertensive medications
must be obtained from the out patient clinic to avoid buying them from private pharmacies to maintain patients
compliance, and further study can be conducted in Iraq to determine the impact of non-compliance of patients
with essential hypertension.
summary
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... Show MoreAbstract:
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... Show MoreIn this study, geopolymer mortar was designed in various experimental combinations employing 1% micro steel fibers and was subjected to different temperatures, according to the prior works of other researchers. The geopolymer mortar was developed using a variety of sustainable material proportions (fly ash and slag) to examine the influence of fibers on its strength. The fly ash weight percentage was 50%, 60%, and 70% by slag weight to study its effect on the geopolymer mortar's properties. The optimal ratio produced the most significant results when mixed at a 50:50 ratio of fly ash and slag with 1% micro steel fibers at curing temperature 240oC for 4 hours through two days. The compressive strength of the geopolymer mortar increas
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