KiddieGAIT® Baby

KiddieGAIT® tilbyder en tidlig dynamisk ortosebehandling som kan hjælpe barnet til et jævnere og et mere naturligt biomekanisk gangmønster. Ortosen hjælper barnet igennem svingfasen og kontrollerr fodens bevægelighed i flere niveauer igennem stødfasen. Skinnens placering på forsiden af tibia er til hjælp ved andre proximale problemer, som fx. hyperextension i knæet eller "Crouch"-gang. KiddieGAIT® er beregnet i kombination med en individuel fodpasning for at kontrollere fodens position. KiddieGAIT® Baby findes i tre størrelser og passer til børn fra ca 9 måneders alderen.

Anvendelsesområde

Dropfod. Forandring i gangmønster som følge af proprioceptive forstyrrelser, tågænger med intakt mellemfod. Crouch-gang som følge af lav tonus (fleksion i hofte/knæ/ankel. Spina Bifida, Cerebral Parese. Muskeldystrofi og MMC.

Kontraindikationer

Begrænset bevægelighed i ankelleddet (mindst 5 grader dorsalfleksion ved passiv bevægelse) alt for rigid fodstruktur. Spastisk Quadricepsmuskel. Strukturelle fejlstillinger i knæ og/eller fodled.

Art.nr. Model Størrelse Ve/Hø Fodplade længde Højde
283721008 KiddieGAIT Baby Baby Small Venstre 11 cm 15 cm
283721009 KiddieGAIT Baby Baby Medium Venstre 12,5 cm 18 cm
283721010 KiddieGAIT Baby Baby Large Venstre 14 cm 20 cm
283722008 KiddieGAIT Baby Baby Small Højre 11 cm 15 cm
283722009 KiddieGAIT Baby Baby Medium Højre 12,5 cm 18 cm
283722010 KiddieGAIT Baby Baby Large Højre 14 cm 20 cm
Energy expenditure in stroke subjects walking with a carbon composite ankle foot orthosis

Author: Danielsson A, Stibrant Sunnerhagen K.

Source: J Rehabil Med 2004; 36: 165–168

One clinic's experience with carbon fiber orthoses in neuromuscular disease

Author: ANI MNATSAKANIAN BS et al.

Source: Muscle Nerve 000:000–000, 2016

Efficacy of prefabricated carbon-composite ankle foot orthoses for children with unilateral spastic cerebral palsy exhibiting a drop foot pattern.
Characterization of Defects in Polymaer Composites Used in Medical Devices by Means of X-ray Microtomography.

Author: Roberts Joffe, Fredrik Forsberg, Henrik Lycksam, Anders Sjögren

Source: ICTMS 2017 - 3rd International Conference on Tomography of Materials and Structures, 26-30 June 2017, Lund, Sweden

Multiplanar Stiffness of Commercial Carbon Composite Ankle-Foot Orthoses.
Comparison of five different methodologies for evaluating ankle–foot orthosis stiffness.
Carbon fiber ankle-foot orthoses in impaired population

Author: Megan M. Grunst, Robert C. Wiederien and Jason M.

Source: A systematic review Prosthetics and Orthotics International 2023

A Pilot Study to Assess the Immediate Effect of Dynamic Carbon Ground Reaction Ankle Foot Orthoses on Balance in Individuals with Charcot-Marie-Tooth in a Clinical Setting

Author: Burke K1,2, Cornell K1,3, Swartz Ellrodt A1,2, Grant N1,2, Paganoni S2,4,5 and Sadjadi R1,2*

Source: CMT study.2021

Preliminary research suggests the use of a kinetic return ankle foot orthosis is associated with small but significant shortterm increases in calf circumference, which in turn suggests [...]

Preliminary research suggests the use of a kinetic return ankle foot orthosis is associated with small but significant shortterm increases in calf circumference, which in turn suggests this type of device might reduce or protect against the risk of disuse muscle atrophy.

Author: Robert H. Meier, CO, BOCO; David C. Ruthsatz, CO, CPA; and Daniel, Cipriani, PT, PhD. 

Source: Lermagazine 2014

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