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Industry News                                                                                                                                                                                                    Industry News

















          INTRODUCING THE


          BRAIN-CONTROLLED

          BIONIC HAND





                                                                                                                                 3D-PRINTING


                                                                                                                                 BREAKTHROUGH USING

          Researchers at the Chalmers University of             the brain allowing the sensation to be felt as if it were
          Technology and the US-based Cortical Bionics          really in the hand. Participants could thus complete             ACOUSTIC HOLOGRAMS
          Research Group have discovered a unique method        complex tasks with the bionic arm, such as picking up
          for encoding natural touch sensations of the          an object and moving it from one location to another.
          hand via specific microstimulation patterns in
                                                                Giacomo Valle, Lead Author and Assistant Professor
          implantable electrodes in the brain, representing
                                                                at Chalmers University of Technology in Sweden,
          a breakthrough in technology for those with spinal
                                                                explains:
          cord injuries.
                                                                   “ In this work for the first time the research went
          The new technology potentially allows for the control
                                                                   beyond anything that has been done before in the              A new revolutionary approach to 3D-printing              structure by controlling the feed rate if we
          of a bionic arm by the brain, as well as enabling
                                                                   field of brain-computer interfaces - we conveyed              that utilises acoustic holograms has been                optimise the parameters to get the required
          the feeling of tactile edges, shapes, curvatures and
                                                                   tactile sensations related to orientation, curvature,         developed by Concordia University.                       structures.
          movements in a way that has hitherto not been
                                                                   motion and 3D shapes for a participant using a
          possible.                                                brain-controlled bionic limb. We are in another               The technique, known as holographic direct               You can imagine the possibilities. We can print
                                                                                                                                 sound printing, harnesses microscopic bubbles            opaque objects, behind a wall, inside a tube or
                                                                   level of artificial touch now. We think this richness
          For the research two participants were fitted with                                                                     to create intense heat and pressure for short            inside the body. The technique that we already
                                                                   is crucial for achieving the level of dexterity,
          chronic brain implants in the sensory and motor                                                                                                                                 use and the devices that we use have already
                                                                   manipulation, and a highly dimensional tactile                periods of time. This hardens resin into intricate
          regions of the brain that represent the arm and hand.                                                                                                                           been approved for medical applications”.
                                                                   experience typical of the human hand.                         patterns, which then allows for the formation
          The team recorded and decoded all of the different
                                                                                                                                 of complex 3D structures within acoustic               Reference: Miles, S., ‘Advanced holographic 3D-printing with Acoustic
          patterns of electrical activity that occurred in the     We found a way to type these ‘tactile messages’                                                                      Technology’, Electronic Specifier, 11th. November
                                                                                                                                 holograms with rapid polymerisation. Entire
          brain related to motor intention of the arm and hand.    via microstimulation using the tiny electrodes in
                                                                                                                                 structures can be built simultaneously with this
          This was possible because the electrical activity        the brain and we found a unique way to encode
                                                                                                                                 method rather than having to build objects voxel
          was still present in the brain, but the paralysis was    complex sensations. This allowed for more vivid               by voxel.
          preventing it from reaching the hand. The resulting      sensory feedback and experience while using a
          unique method for decoding and deciphering brain         bionic hand”.                                                 In order to maintain image fidelity, the acoustic
          signals allowed the person to directly control a bionic   Reference: West, P., ‘Advanced artificial Touch for Brain-controlled   hologram is fixed within the printing material,
          arm and hand from the brain.                          Bionic Hand’, Electronic Specifier, 17th. January                while a robotic arm moves the platform
                                                                                                                                 according to a pre-programmed algorithm.
          A series of complex experiments involving rich tactile
                                                                                                                                 Multiple images can be stored in a single
          sensations was conducted, with the researchers
                                                                                                                                 hologram.
          typing in specific stimulations to the brain via the
          implants.                                                                                                              Project leader Professor Muthukumeran
                                                                                                                                 Packirisami, states:
          With the aid of the brain computer interface, the
          researchers were able to decode the intention of                                                                         “ We can also change the image while the
          motion from the brain so as to control a bionic arm                                                                      operation is under way. We can change shapes,
                                                                                                                                   combine multiple motions, and alter materials
          equipped with sensors. When an object comes into
                                                                                                                                   being printed. We can make a complicated
          contact with the sensors, the stimulation is sent to
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