AIRLINK 73.18 Increased By ▲ 0.38 (0.52%)
BOP 5.00 Decreased By ▼ -0.06 (-1.19%)
CNERGY 4.37 Increased By ▲ 0.04 (0.92%)
DFML 29.95 Decreased By ▼ -0.57 (-1.87%)
DGKC 91.39 Increased By ▲ 5.44 (6.33%)
FCCL 23.15 Increased By ▲ 0.80 (3.58%)
FFBL 33.50 Increased By ▲ 0.28 (0.84%)
FFL 9.92 Increased By ▲ 0.14 (1.43%)
GGL 10.35 Decreased By ▼ -0.05 (-0.48%)
HBL 113.01 Decreased By ▼ -0.61 (-0.54%)
HUBC 136.28 Increased By ▲ 0.08 (0.06%)
HUMNL 9.60 Decreased By ▼ -0.43 (-4.29%)
KEL 4.78 Increased By ▲ 0.12 (2.58%)
KOSM 4.72 Increased By ▲ 0.32 (7.27%)
MLCF 39.89 Increased By ▲ 1.54 (4.02%)
OGDC 133.90 Increased By ▲ 0.50 (0.37%)
PAEL 28.85 Increased By ▲ 1.45 (5.29%)
PIAA 25.00 Increased By ▲ 0.24 (0.97%)
PIBTL 6.94 Increased By ▲ 0.39 (5.95%)
PPL 122.40 Increased By ▲ 1.19 (0.98%)
PRL 27.40 Increased By ▲ 0.25 (0.92%)
PTC 14.80 Increased By ▲ 0.91 (6.55%)
SEARL 60.40 No Change ▼ 0.00 (0%)
SNGP 70.29 Increased By ▲ 1.76 (2.57%)
SSGC 10.42 Increased By ▲ 0.09 (0.87%)
TELE 8.85 Decreased By ▼ -0.20 (-2.21%)
TPLP 11.32 Increased By ▲ 0.06 (0.53%)
TRG 66.57 Increased By ▲ 0.87 (1.32%)
UNITY 25.20 Decreased By ▼ -0.05 (-0.2%)
WTL 1.55 Increased By ▲ 0.05 (3.33%)
BR100 7,676 Increased By 42.9 (0.56%)
BR30 25,471 Increased By 298.6 (1.19%)
KSE100 73,086 Increased By 427.5 (0.59%)
KSE30 23,427 Increased By 44.5 (0.19%)
Technology

Researchers create ‘flying whale’ robot to move around within body

Tiny robots that deliver drugs inside the body have gained much popularity with many research groups developing the
Published May 17, 2019

Tiny robots that deliver drugs inside the body have gained much popularity with many research groups developing them. A group of scientists have added a similar invention of a flapping whale-like robot that can move around the body.

Scientists at Dartmouth College and City University of Hong Kong have created a tiny 3D-printed robot that incorporates a flapping whale-flukes-like tail and wings that can fold up or down as required.

According to New Atlas, the robot’s tail is covered with a layer of cardiomyocytes (heart cells), whereas its wings are coated with a light-sensitive hydrogel. As the cells beat in harmony, like they would in the heart, they cause the flexible tail to move up and down.

‘Caterpillar robot’ capable of delivering drugs inside human body

The moving of tail causes the robot to move forward through a liquid environment, with its extended wings providing lift. The wings stay extended as long as the device remains in a dark environment. If the gel on the wings is exposed to skin-penetrating near-infrared light, it changes state and causes the wings to curl down.

The curling down of wings, in turn, reduces lift while also creating drag, hence slowing down the device’s forward movement and letting its drug cargo to be released at the specified spot. During tests, the robot was successfully able to conduct targeted drug delivery against cancer cells.

According to the study published in the journal Small, the team is now working on a system that will permit them to curl each of the wings individually, therefore increasing the device’s maneuverability.

“With this technology we can create soft transformable robots with unprecedented maneuverability,” said researcher Zi Chen. “Our inspiration came from transformable toys that have different configurations and functionality. The result is no toy, it may literally change people's lives.”

Copyright Business Recorder, 2019

Comments

Comments are closed.