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GÜNÜN PARŞÖMENİ · 2 EKİM 2026 · SİNİRBİLİM VE ANESTEZİ ARAŞTIRMALARI

Laboratuvarda büyütülen beyin devreleri anestezi ritimlerini yeniden üretiyor

Lab-Grown Brain Circuits Reproduce Anesthesia Rhythms

C1 · 4 dakikalık okuma · Kaynak: UCLA, 1 Ekim 2026

Metin

Researchers at UCLA have shown that human brain assembloids can reproduce the distinctive electrical pattern associated with general anesthesia. These three-dimensional models are built from reprogrammed adult cells and combine excitatory neurons, inhibitory neurons and supporting glial cells. When exposed to propofol, individual neurons became much quieter, yet the network produced broad, slow waves because many cells began changing activity together. This apparently contradictory combination is also a hallmark of anesthetised human brains. Crucially, the effect emerged in a relatively simple circuit of cortical cells without the deeper brain structures previously considered necessary. The researchers also confirmed that the response depended on biological mechanisms identified in earlier animal studies. Because experiments on living human brains cannot safely isolate and manipulate cells in this way, assembloids offer a controlled human model for linking molecular changes to large-scale rhythms. They may eventually help scientists study altered brain dynamics in conditions such as epilepsy, coma and traumatic brain injury.

Özet ve soru Prometheus’a aittir. Haberin tamamı: UCLA ↗

Beş ifade

  • brain assembloid: birleştirilmiş üç boyutlu beyin modeli
  • excitatory neuron: uyarıcı nöron
  • inhibitory neuron: baskılayıcı nöron
  • coordinated rhythm: eşgüdümlü ritim
  • large-scale pattern: geniş ölçekli örüntü

YDS mini sorusu

Why is the assembloid result particularly useful for research on anesthesia?

  1. It provides a controllable human-cell system that can connect cellular mechanisms with network-wide electrical changes.
  2. It proves that propofol increases the activity of every neuron while eliminating slow waves from the brain.
  3. It allows researchers to recreate a fully mature human brain with all of its deeper structures in the laboratory.
  4. It replaces the need to investigate disorders whose brain rhythms differ from those seen during anesthesia.
  5. It demonstrates that electrical synchrony can arise only when cortical cells are removed from supporting glial cells.
Cevabı ve açıklamasını göster

Doğru cevap: A

Assembloidler insan hücrelerinden oluşan devrelerin bileşenlerini kontrollü biçimde ayırıp değiştirmeye olanak verirken anesteziye özgü geniş ölçekli elektrik örüntüsünü de üretebiliyor. Böylece hücre içi mekanizmalar ile ağ davranışı ilişkilendirilebilir; doğru cevap A’dır.

The assembloids create a manipulable human circuit in which researchers can trace how changes in individual cells produce the synchronized slow waves of anesthesia.

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