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1.
Braz J Biol ; 84: e268893, 2023.
Article in English | MEDLINE | ID: mdl-37194801

ABSTRACT

Nanosensors work on the "Nano" scale. "Nano" is a unit of measurement around 10- 9 m. A nanosensor is a device capable of carrying data and information about the behavior and characteristics of particles at the nanoscale level to the macroscopic level. Nanosensors can be used to detect chemical or mechanical information such as the presence of chemical species and nanoparticles or monitor physical parameters such as temperature on the nanoscale. Nanosensors are emerging as promising tools for applications in agriculture. They offer an enormous upgrade in selectivity, speed, and sensitivity compared to traditional chemical and biological methods. Nanosensors can be used for the determination of microbe and contaminants. With the advancement of science in the world and the advent of electronic equipment and the great changes that have taken place in recent decades, the need to build more accurate, smaller and more capable sensors was felt. Today, high-sensitivity sensors are used that are sensitive to small amounts of gas, heat, or radiation. Increasing the sensitivity, efficiency and accuracy of these sensors requires the discovery of new materials and tools. Nano sensors are nanometer-sized sensors that, due to their small size and nanometer size, have such high accuracy and responsiveness that they react even to the presence of several atoms of a gas. Nano sensors are inherently smaller and more sensitive than other sensors.


Subject(s)
Nanoparticles , Organic Chemicals , Agriculture
2.
Dent Traumatol ; 37(4): 557-561, 2021 Aug.
Article in English | MEDLINE | ID: mdl-33571399

ABSTRACT

BACKGROUND: Pediatric maxillofacial fractures always present a challenge due to the unique nature of the facial skeleton anatomy and development. The aim of this study was to investigate the incidence, etiology, site of fracture, and management modalities of pediatric maxillofacial fractures in Kuwait. METHODS: A retrospective cross-sectional study was conducted. The records of all pediatric patients who were diagnosed with maxillofacial fractures and admitted to one of the major hospitals in Kuwait between January 2007 and March 2020 were reviewed. RESULTS: A total of 186 patients aged between 0 and 13 years old were included. An average of 13 patients was seen each year between 2007 and 2020. The leading cause of the pediatric maxillofacial trauma was road traffic accidents (RTA) that accounted for 38.2% of the patients followed by 22% falls from height (FFH). Male patients were more affected than females, with a ratio of 2.3:1. More than half of the children had mid-face fractures, of which 57% were in multiple sites. Conservative management was the main approach for 52.2% of the patients. CONCLUSIONS: Pediatric maxillofacial fractures were mainly attributed to road traffic accidents in Kuwait. Mid-face bone fractures were reported more than mandibular fractures and were mostly managed conservatively.


Subject(s)
Mandibular Fractures , Maxillofacial Injuries , Accidents, Traffic , Adolescent , Child , Child, Preschool , Cross-Sectional Studies , Female , Humans , Infant , Infant, Newborn , Kuwait/epidemiology , Male , Mandibular Fractures/epidemiology , Mandibular Fractures/therapy , Maxillofacial Injuries/epidemiology , Maxillofacial Injuries/therapy , Retrospective Studies
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