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Neuroprotective effect of erythropoietin against pressure ulcer in a mouse model of small fiber neuropathyImproving Outcomes by Implementing a Pressure Ulcer Prevention Program (PUPP): Going beyond the Basics.A MRI-Compatible Combined Mechanical Loading and MR Elastography Setup to Study Deformation-Induced Skeletal Muscle Damage in Rats.A Multimodality Imaging and Software System for Combining an Anatomical and Physiological Assessment of Skin and Underlying Tissue Conditions.Pressure Combined with Ischemia/Reperfusion Injury Induces Deep Tissue Injury via Endoplasmic Reticulum Stress in a Rat Pressure Ulcer Model.Blood flow responses over sacrum in nursing home residents during one hour bed rest.Heat transfer model for deep tissue injury: a step towards an early thermographic diagnostic capability.TRPM2: a multifunctional ion channel for calcium signalling.Evaluation of the effect of different sitting assistive devices in reclining wheelchair on interface pressure.Subepidermal moisture (SEM) and bioimpedance: a literature review of a novel method for early detection of pressure-induced tissue damage (pressure ulcers).The aetiology of deep tissue injury: a literature review.Pressure induced deep tissue injury explained.The effects of intermittent electrical stimulation on the prevention of deep tissue injury: varying loads and stimulation paradigms.Effects of intermittent electrical stimulation on superficial pressure, tissue oxygenation, and discomfort levels for the prevention of deep tissue injury.The influence of ischemic factors on the migration rates of cell types involved in cutaneous and subcutaneous pressure ulcers.Relationship between strain levels and permeability of the plasma membrane in statically stretched myoblasts.Distribution of internal pressure around bony prominences: implications to deep tissue injury and effectiveness of intermittent electrical stimulation.Ratio of total traction force to projected cell area is preserved in differentiating adipocytes.Pressure ulcer prevalence and prevention practices in care of the older person in the Republic of Ireland.Clinically oriented real-time monitoring of the individual's risk for deep tissue injury.A Simulation of the Viscoelastic Behaviour of Heel Pad During Weight-Bearing Activities of Daily Living.Combination of thermographic and ultrasonographic assessments for early detection of deep tissue injury.Improving patient outcomes: bridging the gap between science and efficacy.Review of the socket design and interface pressure measurement for transtibial prosthesis.Modelling the effect of repositioning on the evolution of skeletal muscle damage in deep tissue injury.Muscle apoptosis is induced in pressure-induced deep tissue injury.The effects of deformation, ischemia, and reperfusion on the development of muscle damage during prolonged loading
P2860
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P2860
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on July 2008
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
@da
vědecký článek
@cs
name
Deep tissue injury: how deep is our understanding?
@en
Deep tissue injury: how deep is our understanding?
@nl
type
label
Deep tissue injury: how deep is our understanding?
@en
Deep tissue injury: how deep is our understanding?
@nl
prefLabel
Deep tissue injury: how deep is our understanding?
@en
Deep tissue injury: how deep is our understanding?
@nl
P2093
P1476
Deep tissue injury: how deep is our understanding?
@en
P2093
Anke Stekelenburg
Cees W Oomens
Dan L Bader
Debby Gawlitta
P304
P356
10.1016/J.APMR.2008.01.012
P577
2008-07-01T00:00:00Z