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    <loc>https://biocomputers.co.uk/biocomputer-chip/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Diagram of neurons on a silicon multi-electrode interface</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/biological-neural-networks/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/closed-loop-biocomputer.svg</image:loc>
      <image:caption>Diagram of a closed-loop biological neural network connected to an interface, software and a task</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/brain-organoid-computer/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/organoid-development-nih-public-domain.webp</image:loc>
      <image:caption>Brightfield micrograph of a developing human cerebral organoid</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/organoid-reservoir.svg</image:loc>
      <image:caption>Diagram of brain organoid reservoir computing</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/three-dimensional-neural-interfaces.svg</image:loc>
      <image:caption>Comparison of surface, conformal and embedded electrodes for three-dimensional neural tissue</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/can-a-biocomputer-play-doom/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Diagram of a living neuronal culture on a multi-electrode array</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/diagrams/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Planar neuron-on-MEA architecture</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/organoid-reservoir.svg</image:loc>
      <image:caption>Organoid reservoir-computing architecture</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/remote-wetware-platform.svg</image:loc>
      <image:caption>Remote wetware computing platform</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/three-dimensional-neural-interfaces.svg</image:loc>
      <image:caption>Three neural interface geometries for 3D tissue</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/did-neurons-learn-pong/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/dishbrain-pong-figure-ccby4.webp</image:loc>
      <image:caption>DishBrain closed-loop Pong experiment showing neurons on a high-density multielectrode array connected to a simulated environment</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Diagram of cultured neurons growing over a multi-electrode array</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/human-brain-organoid-ccby4.webp</image:loc>
      <image:caption>Fluorescence micrograph of a human brain organoid</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-organoid-on-mea-crop-ccby4.webp</image:loc>
      <image:caption>Forebrain organoid positioned over electrodes on a multielectrode array</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-mea-array-crop-ccby4.webp</image:loc>
      <image:caption>Four-site multielectrode array used by the FinalSpark Neuroplatform</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/interfaces/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-mea-array-crop-ccby4.webp</image:loc>
      <image:caption>Multielectrode array with four organoid recording sites</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/three-dimensional-neural-interfaces.svg</image:loc>
      <image:caption>Three electrode geometries for interfacing with 3D neural tissue</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/living-neural-substrates.svg</image:loc>
      <image:caption>Diagram comparing planar neural cultures, organoids and three-dimensional scaffold cultures</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/living-computer/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Diagram showing living neurons connected to an electrode array</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/media/credits/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/closed-loop-biocomputer.svg</image:loc>
      <image:caption>Closed-loop biological neural network connected to an interface, software and a task</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/living-neural-substrates.svg</image:loc>
      <image:caption>Planar culture, organoid and three-dimensional neural scaffold geometries</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Living neurons cultured over a multi-electrode interface</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/organoid-reservoir.svg</image:loc>
      <image:caption>Encoded input, brain organoid dynamics and electronic readout in reservoir computing</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/remote-wetware-platform.svg</image:loc>
      <image:caption>Researcher connected by software to centrally maintained living neural cultures</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/three-dimensional-neural-interfaces.svg</image:loc>
      <image:caption>Surface, conformal and depth-resolved electrode geometries for three-dimensional neural tissue</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/human-brain-organoid-ccby4.webp</image:loc>
      <image:caption>Fluorescence micrograph of a human brain organoid</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-organoid-on-mea-crop-ccby4.webp</image:loc>
      <image:caption>Forebrain organoid positioned over electrodes on a multielectrode array</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-mea-array-crop-ccby4.webp</image:loc>
      <image:caption>Four-site multielectrode array used in the FinalSpark Neuroplatform</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-organoid-development-strip-ccby4.webp</image:loc>
      <image:caption>Forebrain organoids at successive stages of differentiation and maturation</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-neural-signals-crop-ccby4.webp</image:loc>
      <image:caption>Electrical activity recorded from 32 electrodes in the FinalSpark Neuroplatform</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/dishbrain-pong-figure-ccby4.webp</image:loc>
      <image:caption>DishBrain closed-loop Pong experiment using neurons on a high-density multielectrode array</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/organoid-intelligence-architecture-figure1-ccby4-opt.webp</image:loc>
      <image:caption>Architecture of an organoid-intelligence biological computing system</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/organoid-development-nih-public-domain.webp</image:loc>
      <image:caption>Brightfield micrograph of a developing human cerebral organoid</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/human-cerebral-organoids-niaid-ccby2.webp</image:loc>
      <image:caption>Researcher holding a flask containing human cerebral organoids</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/organoid-computers/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/human-cerebral-organoids-niaid-ccby2.webp</image:loc>
      <image:caption>Researcher holding a flask containing human cerebral organoids</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/organoid-intelligence/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/organoid-intelligence-architecture-figure1-ccby4-opt.webp</image:loc>
      <image:caption>Published architecture for an organoid-intelligence biological computing system</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/research/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-neural-signals-crop-ccby4.webp</image:loc>
      <image:caption>Electrical activity recorded from 32 electrodes in the FinalSpark Neuroplatform</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/state-of-biocomputing-2026/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-organoid-development-strip-ccby4.webp</image:loc>
      <image:caption>Forebrain organoids at successive stages of differentiation and maturation</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/systems/brainoware/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/organoid-reservoir.svg</image:loc>
      <image:caption>Schematic of brain organoid reservoir computing</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/systems/cl1/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Schematic of living neurons on a multi-electrode silicon interface</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/systems/dishbrain/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/planar-neuron-mea.svg</image:loc>
      <image:caption>Schematic of cultured neurons connected to a multi-electrode array</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/dishbrain-pong-figure-ccby4.webp</image:loc>
      <image:caption>DishBrain closed-loop Pong experiment showing neurons on a high-density multielectrode array connected to a simulated environment</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/systems/finalspark/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-organoid-on-mea-crop-ccby4.webp</image:loc>
      <image:caption>Forebrain organoid on the FinalSpark multielectrode array</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-mea-array-crop-ccby4.webp</image:loc>
      <image:caption>Four-site multielectrode array used in the FinalSpark Neuroplatform</image:caption>
    </image:image>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/remote-wetware-platform.svg</image:loc>
      <image:caption>Schematic of a remote wetware computing platform</image:caption>
    </image:image>
  </url>
  <url>
    <loc>https://biocomputers.co.uk/what-is-a-biocomputer/</loc>
    <image:image>
      <image:loc>https://biocomputers.co.uk/assets/media/finalspark-organoid-on-mea-crop-ccby4.webp</image:loc>
      <image:caption>Forebrain organoid positioned on electrodes of a multielectrode array</image:caption>
    </image:image>
  </url>
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