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1.
Eur Rev Med Pharmacol Sci ; 19(20): 3843-9, 2015 Oct.
Article in English | MEDLINE | ID: mdl-26531268

ABSTRACT

Massage therapy is one of the most widely accepted alternative form of medicine helping patients suffering from varied pathological states including arthritis, anxiety, sleep problems, pain management and injury repair. Besides this, it is one of the safest forms of alternative medicine and has become favorite among various health care professionals. However, there is still a lot of debate is going in medical world pertaining to its certain use in modern medicine. So, the present review shall enlighten all the latest aspects of massage therapy in current medicine.


Subject(s)
Massage/methods , Massage/trends , Anxiety/psychology , Anxiety/therapy , Arthralgia/psychology , Arthralgia/therapy , Humans , Neoplasms/psychology , Neoplasms/therapy , Pain Management/methods , Pain Management/trends
2.
Acta Biomater ; 10(12): 5178-5192, 2014 Dec.
Article in English | MEDLINE | ID: mdl-25159371

ABSTRACT

This paper systematically examines the thermomechanical properties and phase transformation behaviour of slightly Ni-rich Ni-Ti biomedical shape memory wires containing homogeneously distributed nanoscale precipitates induced by stress-assisted ageing. In contrast to previous studies, particular attention is paid to the role of precipitates in impeding twin boundary movement (TBM) and its underlying mechanisms. The size and volume fraction of precipitates are altered by changing the ageing time. The martensitic transformation temperatures increase with prolonged ageing time, whereas the R-phase transformation temperature remains relatively unchanged. The stress-strain behaviour in different phase regions during both cooling and heating is comprehensively examined, and the underlying mechanisms for the temperature- and thermal-history-dependent behaviour are elucidated with the help of the established stress-temperature phase diagram. The effect of precipitates on TBM is explored by mechanical testing at 133K. It is revealed that the critical stress for TBM (σcr) increases with increasing ageing time. There is a considerable increase of 104MPa in σcr in the sample aged at 773K for 120min under 70MPa compared with the solution-treated sample, owing to the presence of precipitates. The Orowan strengthening model of twinning dislocations is insufficient to account for this increase in σcr. The back stress generation is the predominant mechanism for the interactions between precipitates and twin boundaries during TBM that give rise to the increase in σcr. Such results provide new insights into the thermomechanical properties of precipitate containing Ni-Ti biomedical shape memory wires, which are instructive for developing high-performance biomedical shape memory alloys.


Subject(s)
Nanowires/chemistry , Nanowires/ultrastructure , Nickel/chemistry , Titanium/chemistry , Chemical Precipitation , Elastic Modulus , Hot Temperature , Materials Testing , Particle Size , Stress, Mechanical , Tensile Strength
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