AIRLINK 74.00 Decreased By ▼ -0.25 (-0.34%)
BOP 5.14 Increased By ▲ 0.09 (1.78%)
CNERGY 4.55 Increased By ▲ 0.13 (2.94%)
DFML 37.15 Increased By ▲ 1.31 (3.66%)
DGKC 89.90 Increased By ▲ 1.90 (2.16%)
FCCL 22.40 Increased By ▲ 0.20 (0.9%)
FFBL 33.03 Increased By ▲ 0.31 (0.95%)
FFL 9.75 Decreased By ▼ -0.04 (-0.41%)
GGL 10.75 Decreased By ▼ -0.05 (-0.46%)
HBL 115.50 Decreased By ▼ -0.40 (-0.35%)
HUBC 137.10 Increased By ▲ 1.26 (0.93%)
HUMNL 9.95 Increased By ▲ 0.11 (1.12%)
KEL 4.60 Decreased By ▼ -0.01 (-0.22%)
KOSM 4.83 Increased By ▲ 0.17 (3.65%)
MLCF 39.75 Decreased By ▼ -0.13 (-0.33%)
OGDC 138.20 Increased By ▲ 0.30 (0.22%)
PAEL 27.00 Increased By ▲ 0.57 (2.16%)
PIAA 24.24 Decreased By ▼ -2.04 (-7.76%)
PIBTL 6.74 Decreased By ▼ -0.02 (-0.3%)
PPL 123.62 Increased By ▲ 0.72 (0.59%)
PRL 27.40 Increased By ▲ 0.71 (2.66%)
PTC 13.90 Decreased By ▼ -0.10 (-0.71%)
SEARL 61.75 Increased By ▲ 3.05 (5.2%)
SNGP 70.15 Decreased By ▼ -0.25 (-0.36%)
SSGC 10.52 Increased By ▲ 0.16 (1.54%)
TELE 8.57 Increased By ▲ 0.01 (0.12%)
TPLP 11.10 Decreased By ▼ -0.28 (-2.46%)
TRG 64.02 Decreased By ▼ -0.21 (-0.33%)
UNITY 26.76 Increased By ▲ 0.71 (2.73%)
WTL 1.38 No Change ▼ 0.00 (0%)
BR100 7,874 Increased By 36.2 (0.46%)
BR30 25,596 Increased By 136 (0.53%)
KSE100 75,342 Increased By 411.7 (0.55%)
KSE30 24,214 Increased By 68.6 (0.28%)

Performance of daily routine tasks for disabled people have now been made easier thanks to the glove developed by Kyujin Cho of Seoul National University.

Cho, Director of Biorobotics Laboratory at SNU, designed the Exo-Glove Poly, a soft wearable robot that addresses hand paralysis by allowing people to grasp or pinch different objects. Exo is a Greek work and refers to outside while Poly indicates the glove being made of polymer.

The goal of SNU Biorobotics Lab is to foster and educate innovative and empathetic reseachers to become agents of change for the future. The team further hopes that more people with disability will be able to live a better independent life. Cho plans to make Exo-Glove Poly available to masses by the end of 2017.

The flexible rubber glove robot is said to be superior to the bulky skeletons due to its lightweight, compactness and increased usability. Foreign media reports that this glove is build in a way that it can be worn everyday and is thus, waterproof. The glove comprises of two fingers and a thumb that can fit over a wearers hand with a soft tendon routing system of wires. The motor is controlled by a simple switch which pulls the wires for the movement of hand.

The design of the glove can be adjusted according to the hand size and will also be able to protect users from any kind of injury.

Kyujin noted that each year about 500, 000 people end up in a wheelchair. Around half of those also suffer injuries to their hand and that number doesnt include the people who sustain injuries just to their hands. To deal with complications like these, Cho and his team developed the robotic glove.

Comments

Comments are closed.