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1.
Psychiatr Serv ; 71(5): 480-486, 2020 05 01.
Article in English | MEDLINE | ID: mdl-31847737

ABSTRACT

OBJECTIVES: Video surveillance is used in inpatient psychiatry in many countries and institutions. However, its use varies considerably because of a lack of research, discussion, and agreement on best practice. This review provides an overview of current issues in the use of video surveillance in psychiatry, with a focus on ethical questions and their practical implications. METHODS: A narrative review of literature on video surveillance in psychiatry was conducted. References were identified through searches of PubMed, CINAHL, MEDLINE, PsycINFO, and Google Scholar for articles published before December 2018. Sixteen articles in English and German were reviewed. RESULTS: The ethical challenges and practical implications differ between surveillance of public spaces versus private areas, such as bedrooms or seclusion rooms. The most common reason for video surveillance was to increase security and safety. However, empirical evidence suggests that it is not useful in increasing security of shared spaces on psychiatric wards. Some evidence exists for clinical benefits of video surveillance in private spaces (e.g., allowing patients to sleep undisturbed). Video surveillance can increase patients' choices regarding monitoring options. The main ethical conflict lies in balancing patients' autonomy and privacy versus patient and staff security and safety. CONCLUSIONS: Whether video monitoring is used in the most effective and ethical manner needs to be reconsidered. Available evidence does not support its use as a security measure. More research is needed to evaluate the benefits, risks, and best practices of using video monitoring for patient observation, with consideration given to increasing the role of patient consent.


Subject(s)
Inpatients , Psychiatric Department, Hospital , Humans , Privacy , Security Measures
2.
Front Psychol ; 10: 2409, 2019.
Article in English | MEDLINE | ID: mdl-31736822

ABSTRACT

Executive functions play an important role in sports since the ability to plan, organize, and regulate behavior to reach an objective or goal depends on these functions. Some of the components of executive functions, such as inhibition of impulsive behavior and cognitive flexibility, are necessary for contact sports (e.g., American football) to carry out successful plays on the sports field. Executive functions have been studied in the sporting environment, but their relationship with the athletes' basic psychological needs (BPN), such as autonomy, competence, and relatedness, remains unexplored. Due to the importance of motivational processes over cognitive functions and in the generated adaptive results in athletes, this relationship should be taken into account. Therefore, the aim of this study was to analyze and compare executive functioning and psychological need thwarting overimpulsivity and psychological distress, before and after the season (4 months) in 28 undergraduate football players. Neuropsychological and psychological tests were applied. The results showed that there was an improvement in inhibition and planning at the end of the season. There was also an increase in attention and motor impulsiveness, and a decrease in need thwarting at the end of the season. A positive association between executive function, impulsiveness, psychological needs, and affective symptoms were also found. Our findings reveal the dynamics of sport-related psychological variables throughout the sport season in American football players, the association of these for the achievement of sport success, and the importance of encouraging proper management of emotions.

3.
J Chem Phys ; 148(3): 034505, 2018 Jan 21.
Article in English | MEDLINE | ID: mdl-29352794

ABSTRACT

The electrical resistance of solid and liquid Bi has been measured at high pressures and temperatures using a novel experimental design for high sensitivity measurements utilizing a "Paris-Edinburgh" toroid large volume press. An anomalous sharp decrease in resistivity with increasing temperature at constant pressures was observed in the region beyond melting which implies a possible novel transition in the melt. The proposed transition was observed across a range of pressures both in heating and cooling cycles of the sample demonstrating its reversibility. From the measurements it was possible to determine a "phase-line" of this transition on the Bi pressure-temperature phase diagram terminating at the melting curve.

4.
Radiat Prot Dosimetry ; 174(2): 185-190, 2017 Apr 25.
Article in English | MEDLINE | ID: mdl-27150524

ABSTRACT

A model was developed at the Nuclear Research Centre Negev (NRCN) to assess historical doses from internal exposures by a relatively fast and simple procedure. These assessments are needed in the framework of a compensation programme for the Israeli Atomic Energy Commission (IAEC) workers, which were diagnosed for cancer diseases. This compensation programme was recently recommended by a public committee to avoid lengthy court procedures. The developed model is based on the recorded doses from external exposures of all the workers at the NRCN, who were divided into groups representing their different working environments. Each group of workers was characterised by three parameters: working period, working areas and occupation. The model uses several conservative assumptions in order to calculate the doses to various body organs in certain years, which are relevant to the calculation of the probability of causation (POC). The POC value serves as a main parameter in the compensation programme.


Subject(s)
Occupational Exposure , Radiation Dosage , Humans , Israel , Nuclear Energy
5.
J Chem Phys ; 142(19): 194501, 2015 May 21.
Article in English | MEDLINE | ID: mdl-26001463

ABSTRACT

The short range order (SRO) in liquid elements of column IV is analysed within the quasi-crystalline model across a wide range of temperatures. It is found that l-Si, Ge, and Sn are well described with a beta-tin like SRO. In contrast, Pb retains a bcc-like SRO similar to other simple elemental liquids. However, a distinction is found between the SRO in Si and Ge and that in Sn, where the latter has a more rigid structure. This difference persists across the entire temperature range examined but is overcome in Si at pressures above 8 GPa, where the liquid structure evolves towards that of Sn.

6.
J Chem Phys ; 140(9): 094502, 2014 Mar 07.
Article in English | MEDLINE | ID: mdl-24606363

ABSTRACT

Structural rearrangement of liquid Bi in the vicinity of the melting point has been proposed due to the unique temperature invariant sound velocity observed above the melting temperature, the low symmetry of Bi in the solid phase and the necessity of overheating to achieve supercooling. The existence of this structural rearrangement is examined by measurements on supercooled Bi. The sound velocity of liquid Bi was measured into the supercooled region to high accuracy and it was found to be invariant over a temperature range of ∼60°, from 35° above the melting point to ∼25° into the supercooled region. The structural origin of this phenomenon was explored by neutron diffraction structural measurements in the supercooled temperature range. These measurements indicate a continuous modification of the short range order in the melt. The structure of the liquid is analyzed within a quasi-crystalline model and is found to evolve continuously, similar to other known liquid pnictide systems. The results are discussed in the context of two competing hypotheses proposed to explain properties of liquid Bi near the melting: (i) liquid bismuth undergoes a structural rearrangement slightly above melting and (ii) liquid Bi exhibits a broad maximum in the sound velocity located incidentally at the melting temperature.

7.
J Phys Condens Matter ; 25(50): 505102, 2013 Dec 18.
Article in English | MEDLINE | ID: mdl-24219904

ABSTRACT

Liquid pnictides have anomalous physical properties and complex radial distribution functions. The quasi-crystalline model of liquid structure is applied to interpret the three-dimensional structure of liquid pnictides. It is shown that all the column V elements can be characterized by a short range order lattice symmetry similar to that of the underlying solid, the A7 structure, which originates from a Peierls distorted simple cubic lattice. The evolution of the liquid structure down the column as well as its temperature and pressure dependence is interpreted by means of the effect of thermodynamic parameters on the Peierls distortion. Surprisingly, it is found that the Peierls effect increases with temperature and the nearest neighbour distances exhibit negative thermal expansion.


Subject(s)
Alloys/chemistry , Inorganic Chemicals/chemistry , Quartz/chemistry , Water/chemistry , Models, Chemical , Quantum Theory
8.
J Chem Phys ; 134(20): 204507, 2011 May 28.
Article in English | MEDLINE | ID: mdl-21639456

ABSTRACT

The phase diagram of elemental liquids has been found to be surprisingly rich, including variations in the melting curve and transitions in the liquid phase. The effect of these transitions in the liquid state on the shape of the melting curve is analyzed. First-order phase transitions intersecting the melting curve imply piecewise continuous melting curves, with solid-solid transitions generating upward kinks or minima and liquid-liquid transitions generating downward kinks or maxima. For liquid-liquid phase transitions proposed for carbon, phosphorous selenium, and possibly nitrogen, we find that the melting curve exhibits a kink. Continuous transitions imply smooth extrema in the melting curve, the curvature of which is described by an exact thermodynamic relation. This expression indicates that a minimum in the melting curve requires the solid compressibility to be greater than that of the liquid, a very unusual situation. This relation is employed to predict the loci of smooth maxima at negative pressures for liquids with anomalous melting curves. The relation between the location of the melting curve maximum and the two-state model of continuous liquid-liquid transitions is discussed and illustrated by the case of tellurium.

9.
Phys Rev Lett ; 105(18): 186101, 2010 Oct 29.
Article in English | MEDLINE | ID: mdl-21231117

ABSTRACT

The structural and mechanical properties of 2D crystalline surface phases that form at the surface of liquid eutectic Au82Si18 are studied using synchrotron x-ray scattering over a large temperature range. In the vicinity of the eutectic temperature the surface consists of a 2D atomic bilayer crystalline phase that transforms into a 2D monolayer crystalline phase during heating. The latter phase eventually melts into a liquidlike surface on further heating. We demonstrate that the short wavelength capillary wave fluctuations are suppressed due to the bending rigidity of 2D crystalline phases. The corresponding reduction in the Debye-Waller factor allows for measured reflectivity to be explained in terms of an electron density profile that is consistent with the 2D surface crystals.

10.
Phys Rev Lett ; 76(12): 2149-2152, 1996 Mar 18.
Article in English | MEDLINE | ID: mdl-10060618
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