Figure 1G: modeled probability of detecting an extra spike across neuronal population size and correlation time, from Revah et al., PLOS Biology 2026.

Encoding performance of cortical neurons critically depends on their morphological and neurophysiological properties

Omer Revah, Fred Wolf, Michael J. Gutnick, Andreas Neef

PLoS Biology 2026

Antisense oligonucleotide therapeutic approach for Timothy syndrome

Xiaoyu Chen*, Fikri Birey*, Min-Yin Li, Omer Revah et al.

Nature 2024

Figure 1A: human induced pluripotent cells differentiated into diencephalic organoids for single-cell RNA sequencing, from Kim et al., Neuron 2024.

Human assembloids reveal the consequences of CACNA1G gene variants in the thalamocortical pathway

Ji-Il Kim, Yuki Miura, Min-Yin Li, Omer Revah et al.

Neuron 2024

Maturation and circuit integration of transplanted human cortical organoids

Omer Revah, Felicity Gore*, Kevin Kelley* et. al.,

Nature 2022

Neuronal defects in a human cellular model of 22q11.2 deletion syndrome

Themasap Khan, Omer Revah, Aaron Gordon* et al.,

Nature Medicine 2020

Generation of Functional Human 3D Cortico-Motor Assembloids‍ ‍

Jimena Andersen, Omer Revah, Yuki Miura et al.,

Cell 2020

Figure 1a: human iPS cells differentiated into cortical organoids and transplanted into a rodent brain, from Kelley et al., Nature Protocols 2024.

Host circuit engagement of human cortical organoids transplanted in rodents

Kevin Kelley, Omer Revah, Felicity Gore et al.

Nature Protocols 2024

Figure 1A1: schematic of neuronal population encoding and decoding under common and asynchronous input, from Zhang et al., Journal of Neuroscience 2024.

Dynamic Gain Decomposition Reveals Functional Effects of Dendrites, Ion Channels, and Input Statistics in Population Coding

Chenfei Zhang, Omer Revah, Fred Wolf, Andreas Neef

Journal of Neuroscience 2024

Figure 1a: schematic locating cortex, striatum, thalamus, spinal cord and muscle in the developing human brain, from Miura et al., Nature Protocols 2022.

Engineering brain assembloids to interrogate human neural circuits

Yuki Miura, Min-Yin Li, Omer Revah et al.

Nature Protocols 2022