foot orthotic
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2021 ◽  
Vol 16 (2) ◽  
pp. 165
Author(s):  
Dwi Basuki Wibowo ◽  
Gunawan Dwi Haryadi ◽  
Eko Saputra

Pemindaian 3D telah banyak diterapkan di berbagai bidang kedokteran, <em>forensic</em>, <em>anthropology</em>, <em>anthropometry</em>, <em>topography</em>, hingga <em>reverse engineering</em>. Penelitian ini mengkaji pemindaian 3D telapak kaki dan cara menghasilkan koordinat kontur xyz–nya. Alat pemindai yang digunakan adalah 3D <em>scanner for foot orthotic</em> buatan Vismach Technology China yang dilengkapi <em>software</em> untuk menghasilkan luaran berekstensi standard dxf/stl/wrl/obj/ply/asc. Koordinat kontur xyz diperoleh dari <em>software</em> AutoCAD dan MS Excel yang sudah terdapat <em>coding</em> khusus untuk membaca koordinat dari <em>fil</em>e AutoCAD. Struktur data koordinat xyz di MS Excel berbentuk baris pertama menyatakan ujung jari jempol dan baris terakhir menyatakan ujung tumit. Dari hasil koordinat ini evaluasi panjang dan lebar telapak kaki, menentukan ukuran sepatu, mendesain sepatu <em>orthotic</em> bagi penderita <em>flat foot</em> dan <em>calcanea spur</em>, dan pembagian area telapak kaki untuk pengukuran beban menjadi mudah dilakukan. Disamping itu luaran <em>scanner</em> berbentuk 3D <em>mesh</em> dan citra berekstensi stl bermanfaat dalam memodelkan kontak telapak kaki menggunakan MEH serta merancangbangun <em>prototype</em> sol sepatu dengan bantuan <em>software</em> SOLIDWORKS dan Rhinoceros.


2020 ◽  
Author(s):  
Adriana Gorea ◽  
Julie Orlando ◽  
Katharine Orlando ◽  
Michele Lobo
Keyword(s):  

2020 ◽  
Vol 26 ◽  
pp. 918-921
Author(s):  
Tribedi Sarma ◽  
Kuldeep Kumar Saxena ◽  
Vinayak Majhi ◽  
Divya Pandey ◽  
Ravi Prakash Tewari ◽  
...  

2019 ◽  
Vol 2 (11) ◽  
pp. 40-43
Author(s):  
U Albert Anand ◽  
Bernard Dino Santiago ◽  
Percival Victor Beuke ◽  
Lizette Fernandez ◽  
Sherwin Abat ◽  
...  

2019 ◽  
Vol 890 ◽  
pp. 301-313
Author(s):  
Jessica Jorge Gordo ◽  
Paula Pascoal-Faria ◽  
Artur Mateus ◽  
Pedro Morouço ◽  
Verónica Schiriati ◽  
...  

Gait in children with cerebral palsy (CP) is often affected by motor impairments which limit the patient's ability to walk. To improve gait and reduce walking limitations, children with CP need to use ankle foot orthoses. An orthosis is an externally applied device that is designed and fitted to the body to achieve one or more of the following goals: a) Control biomechanical alignment. b) Correct or accommodate deformity, and 3) Protect and support an injury. This systematic review aims to describe research evidence supporting the use of ankle-foot orthoses to improve gait biomechanical outcomes among individuals with CP. Literature search was pursued from PubMed database. Studies were included if (1) they evaluated an outcome measure related with gait using ankle-foot orthotic (AFO) in children (2) considered children with a diagnosis of CP and have a (3) GMFCS classification of I, II or III. Papers were excluded if they evaluated (1) other population besides CP, (2) the use of orthoses other than AFOs and (3) gait analysis procedure was not presented. All the included studies have analyzed spatiotemporal parameters, the step length (m), stride length (m) and cadence (steps/minute) were the most frequently reported. Our findings showed that several studies have investigated the effects of AFOs, all of which have reported positive influences on at least one gait parameter, as well as positive changes in joint kinematics and kinetic in children with CP.


2019 ◽  
Vol 18 ◽  
pp. 2509-2514 ◽  
Author(s):  
Tribedi Sarma ◽  
Divya Pandey ◽  
Nitin Sahai ◽  
Ravi Prakash Tewari

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