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1.
Article in English | MEDLINE | ID: mdl-38194380

ABSTRACT

In the field of coordination and bioorganometallic chemistry, a notable shift is occurring. This mini-review explores a new generation of carefully 3D-crafted coordination and organometallic complexes that differ from conventional structures. Emphasizing disease intervention and microbial control, these compounds, incorporate noble and transition metals, and aim to enhance therapeutic efficacy while minimizing potential health risks. The mini-review covers diverse applications, showcasing their effectiveness against bacteria, viruses, fungi, and as potential tools in cancer treatment. Additionally, it sheds light on the inventive aspects of these complexes within biological systems. By highlighting advancements in bioorganometallic chemistry, the review offers insights and guidance for future developments in safer and more effective therapeutics.

2.
Rev Med Chil ; 121(11): 1284-8, 1993 Nov.
Article in Spanish | MEDLINE | ID: mdl-8191136

ABSTRACT

AIM: to validate an easy and simple test to measure cognitive function: the clock drawing test. STUDY DESIGN: 138 hospitalized and free living elders (96 female, mean age 77.9 years) were studied. They were requested to draw a clock, using standardized instructions. The drawings were independently analyzed and scored by the authors. The Mini Mental State test was used as reference and the scores of both tests were correlated. RESULTS: there was a correlation of 0.73 between the scores of the clock drawing and Mini Mental State tests. Using a score of 7 points in tye clock drawing and 26 points in the Mini Mental State test as cut of points for the diagnosis of dementia, the former's sensitivity and specificity was 0.82 and 0.71 respectively. CONCLUSIONS: the clock drawing test appears as a simple and effective test for the initial assessment of cognitive functions in patients with suspected dementia.


Subject(s)
Dementia/diagnosis , Intelligence Tests , Aged , Cognition/physiology , Female , Humans , Male , Sensitivity and Specificity
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