A Study on Branching Pattern of Middle Cerebral Artery and its Variations: A Systematic Review and Meta-analysis

Debajani Deka1, Malamoni Dutta1, Rashmi Rekha Bordoloi2

  • 1Department of Anatomy, Pragjyotishpur Medical College and Hospital, Guwahati, Assam, India.

PubMed

Insights

Understanding middle cerebral artery (MCA) anatomy is crucial for neurovascular procedures. This study details MCA branching variations and segment dimensions, providing essential data for surgical planning and patient safety.

Area of Science:

  • Neuroanatomy
  • Vascular Neurology
  • Neurosurgery

Background:

  • The middle cerebral artery (MCA) is vital, supplying 80% of brain blood flow, including motor and sensory cortex areas.
  • Accurate MCA anatomy knowledge is critical for preventing complications during neurovascular interventions like thrombolysis, angiography, and stent insertion.

Purpose of the Study:

  • To comprehensively describe the anatomical variations and morphometric characteristics of the middle cerebral artery (MCA).
  • To provide detailed data on MCA branching patterns and segment dimensions for improved neurosurgical and endovascular procedure planning.

Main Methods:

  • Analysis of MCA branching patterns, including bifurcations, trifurcations, and quadrifurcations.
  • Measurement of M1, M2, and M3 segment lengths and diameters, with comparisons based on sex, side, and aneurysmal status.
  • Identification and categorization of accessory MCA origins and MCA fenestration defects.

Main Results:

  • MCA termination variations are common: bifurcation (64.70%), trifurcation (12.35%), and quadrifurcation (2.35%).
  • Significant differences in M1 segment volume, length, and diameter were observed between sexes, hemispheres, and in relation to aneurysms.
  • M2 and M3 segment diameters also showed variations, with larger diameters noted on the left side and in females for M2.

Conclusions:

  • The study highlights significant anatomical variability in MCA branching and dimensions, crucial for interventionalists.
  • Detailed morphometric data on MCA segments (M1, M2, M3) offer valuable insights for neurosurgical planning and risk assessment.
  • Understanding these anatomical nuances, including fenestrations and accessory arteries, can enhance the safety and efficacy of cerebrovascular procedures.