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Kenneth S. Kosik

2 papers in the library · publishing 2024-2026

Papers

Neuronal Population Effects of Ketamine on Human Brain Organoids

bioRxiv (Cold Spring Harbor Laboratory) March 10, 2026 Arina Nikitina, Christian Bustamante Toro, Raymond Gifford et al.

Ketamine rapidly silences population bursting in human forebrain organoids by disconnecting a subset of 'backbone' neurons that normally drive network activity, while individual neuron firing continues mostly unchanged. Acute exposure to 20 μg/mL ketamine abolished population bursts, reduced mean firing rates, and decreased functional connectivity globally, with backbone units losing their normally elevated connectivity. Re-exposure after chronic treatment no longer silenced bursting, indicating tolerance, though the network remained less active and less connected with fewer backbone units. The organoid-microelectrode array platform offers a scalable human-relevant system for studying circuit-level drug effects.

Testing the Conjecture That Quantum Processes Create Conscious Experience.

Entropy (Basel, Switzerland) May 28, 2024 Hartmut Neven, Adam Zalcman, Peter Read et al.

Conscious experience may emerge from quantum mechanical superpositions, a groundbreaking idea that suggests the structure of these superpositions shapes our experiences. This theory posits that quantum entanglement resolves the binding problem, creating a unified phenomenal experience. In a proposed series of experiments involving brain organoids and xenon anesthesia, the aim is to explore these connections further. With a focus on brain-computer interfaces, this approach could potentially enhance human consciousness, offering innovative avenues for understanding the physical substrate of consciousness.