Amr Moursi

16 statements · 2 topics

Featured statements

▶ Ep 13 · 0:00
before we stimulate, ablate, or implant anything, we must know exactly WHERE we are in the nervous system.
▶ Ep 13 · 0:00
Brain surgeons must hit deep targets only a few millimeters wide, buried more than 10 cm inside the brain, with less than 1 mm error.
▶ Ep 7 · 0:00
1 mm of error can change a patient's outcome in DBS and other functional procedures.
▶ Ep 7 · 0:00
Functional neurosurgeons turn anatomy into a 3D coordinate system (X, Y, Z).

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Amr's statements about Functional Neurosurgery Essentials 8 statements

Open the Functional Neurosurgery Essentials collection →

Finding 1mm in the Brain | Functional Neurosurgery Explained – Episode 1

▶ Ep 13 · 0:00
clinical Brain surgeons must hit deep targets only a few millimeters wide, buried more than 10 cm inside the brain, with less than 1 mm error. ↗
▶ Ep 13 · 0:00
clinical 1 mm of error can change a patient's outcome in DBS and other functional procedures. ↗
▶ Ep 13 · 0:00
clinical Functional neurosurgeons turn anatomy into a 3D coordinate system (X, Y, Z). ↗
▶ Ep 13 · 0:00
clinical Skull landmarks and surface anatomy failed for deep targets. ↗
▶ Ep 13 · 0:00
clinical Internal brain landmarks like the AC-PC line are important for targeting. ↗
▶ Ep 13 · 0:00
clinical Stereotactic atlases and MRI work together in modern targeting. ↗
▶ Ep 13 · 0:00
quote How do brain surgeons find a deep target only a few millimetres wide, buried more than 10 cm inside the brain – and hit it with less than 1 mm error? ↗
▶ Ep 13 · 0:00
quote before we stimulate, ablate, or implant anything, we must know exactly WHERE we are in the nervous system. ↗
Amr's statements about Parkinson's Disease 8 statements

Open the Parkinson's Disease collection →

Finding 1mm in the Brain | Functional Neurosurgery Explained – Episode 1

▶ Ep 7 · 0:00
clinical Brain surgeons must hit deep targets only a few millimeters wide, buried more than 10 cm inside the brain, with less than 1 mm error. ↗
▶ Ep 7 · 0:00
clinical 1 mm of error can change a patient's outcome in DBS and other functional procedures. ↗
▶ Ep 7 · 0:00
clinical Functional neurosurgeons turn anatomy into a 3D coordinate system (X, Y, Z). ↗
▶ Ep 7 · 0:00
clinical Skull landmarks and surface anatomy failed for deep targets. ↗
▶ Ep 7 · 0:00
clinical Internal brain landmarks like the AC-PC line are important for targeting. ↗
▶ Ep 7 · 0:00
clinical Stereotactic atlases and MRI work together in modern targeting. ↗
▶ Ep 7 · 0:00
quote How do brain surgeons find a deep target only a few millimetres wide, buried more than 10 cm inside the brain – and hit it with less than 1 mm error? ↗
▶ Ep 7 · 0:00
quote before we stimulate, ablate, or implant anything, we must know exactly WHERE we are in the nervous system. ↗