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1.
J Biol Regul Homeost Agents ; 35(2): 441-456, 2021.
Article in English | MEDLINE | ID: mdl-33940790

ABSTRACT

Good fundamentals of posture and balance are essential for the efficient performance of both simple daily tasks and more complex movement patterns. In particular, postural balance is the ability to keep the body in equilibrium and to regain balance after the shift of body segments: postural control mechanisms of integration of the visual, vestibular and foot afferential channels contribute to this. This document provides recommendations based on scientific evidence, clinical practice, and consensus between experts concerning the prevention, diagnosis, and treatment of postural dysfunction at the three stages of life as the developmental age, adult age, and old age > 65 years and follows the "National Guidelines on Classification and Measuring of Posture and its Dysfunctions" per the Italian Ministry of Health (December 2017). The paper answers four main questions: i) "Which measures can be adopted to prevent postural dysfunctions?" ii) "What can we do in order to make a correct diagnosis of postural dysfunction?" iii) "What are the correct treatment programs for postural dysfunctions?" iv) Which professional competencies and experiences are useful for preventing, diagnosing and treating postural dysfunctions? By the Consensus of the Experts and the scientific evidence, emerge that the approach to postural dysfunctions requires a multidisciplinary and interdisciplinary team. Furthermore, rehabilitation treatment interventions must be specific to the age groups that have been indicated, to consider the integration of the main systems and subsystems of postural control that change with age.


Subject(s)
Postural Balance , Posture , Consensus , Foot
2.
Br J Ophthalmol ; 93(2): 254-7, 2009 Feb.
Article in English | MEDLINE | ID: mdl-18977789

ABSTRACT

BACKGROUND: Carbon monoxide-releasing molecules (CORMs) are a novel group of substances that are capable of modulating physiological functions via the liberation of CO. AIMS: This study was undertaken to investigate the effects of CORM-3, a water-soluble CO-releasing agent, on two rabbit models of ocular hypertension. METHODS: Ocular hypertension was induced by injecting alpha-chymotrypsin in the rabbit eye. The dose-response effect of CORM-3 on IOP was assessed by topical administration of the drug (0.001, 0.01, 0.1 and 1%). Ocular hypertension was also obtained by weekly subconjunctival injection of betamethasone, and animals were treated topically with CORM-3. A group of animals in both models was treated with the inactive form of the drug (iCORM-3). RESULTS: CORM-3 induced a dose-dependent reduction in IOP in rabbits treated with alpha-chymotrypsin. A similar reduction in IOP was observed in rabbits with betamethasone-induced ocular hypertension treated with the drug. Treatment with the iCORM-3 had no effect on IOP in both models. CONCLUSIONS: Treatment with CORM-3 is associated with a reduction in IOP in two different rabbit models of ocular hypertension. These results support previous findings on the effect of haem oxygenase-derived CO on IOP and suggest a direct involvement of CO system in the regulation of ocular pressure probably through the modulation of aqueous humour dynamics.


Subject(s)
Antihypertensive Agents/therapeutic use , Ocular Hypertension/drug therapy , Organometallic Compounds/therapeutic use , Animals , Antihypertensive Agents/administration & dosage , Chymotrypsin , Disease Models, Animal , Dose-Response Relationship, Drug , Drug Evaluation, Preclinical/methods , Intraocular Pressure/drug effects , Male , Ocular Hypertension/chemically induced , Ocular Hypertension/physiopathology , Organometallic Compounds/administration & dosage , Rabbits
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