Foundations of Advanced Neuroanatomy: Technical Guidelines for Specimen Preparation, Dissection, and 3D-Photodocumentation in a Surgical Anatomy Laboratory

Author:

Leonel Luciano César PC123ORCID,Carlstrom Lucas P.45,Graffeo Christopher S.45,Perry Avital45,Pinheiro-Neto Carlos Diogenes26,Sorenson Jeffrey7,Link Michael J.45,Peris-Celda Maria1245

Affiliation:

1. Department of Neurosurgery, Albany Medical Center, Albany, New York, United States

2. Northeast Professor Rhoton Dissection Laboratory, Department of Neuroscience and Experimental Therapeutics, Albany, New York, United States

3. Department of Surgery, Section of Anatomy, University of São Paulo, São Paulo, Brazil

4. Department of Neurologic Surgery, Mayo Clinic, Rochester, Minnesota, United States

5. Mayo Clinic Skull Base Research Laboratory, Department of Neurosurgery and Otolaryngology, Mayo Clinic, Rochester, Minnesota, United States

6. Department of Surgery, Division of Otolaryngology and Head and Neck Surgery, Albany Medical Center, Albany, New York, United States

7. Department of Neurological Surgery, University of Tennessee and Semmes-Murphy Clinic, Memphis, Tennessee, United States

Abstract

Abstract Objective This study was aimed to provide a key update to the seminal works of Prof. Albert L. Rhoton Jr., MD, with particular attention to previously unpublished insights from the oral tradition of his fellows, recent technological advances including endoscopy, and high-dynamic range (HDR) photodocumentation, and, local improvements in technique, we have developed to optimize efficient neuroanatomic study. Methods Two formaldehyde-fixed cadaveric heads were injected with colored latex to demonstrate step-by-step specimen preparation for microscopic or endoscopic dissection. One formaldehyde-fixed brain was utilized to demonstrate optimal three-dimensional (3D) photodocumentation techniques. Results Key steps of specimen preparation include vessel cannulation and securing, serial tap water flushing, specimen drainage, vessel injection with optimized and color-augmented latex material, and storage in 70% ethanol. Optimizations for photodocumentation included the incorporation of dry black drop cloth and covering materials, an imaging-oriented approach to specimen positioning and illumination, and single-camera stereoscopic capture techniques, emphasizing the three-exposure-times-per-eye approach to generating images for HDR postprocessing. Recommended tools, materials, and technical nuances were emphasized throughout. Relative advantages and limitations of major 3D projection systems were comparatively assessed, with sensitivity to audience size and purpose specific recommendations. Conclusion We describe the first consolidated step-by-step approach to advanced neuroanatomy, including specimen preparation, dissection, and 3D photodocumentation, supplemented by previously unpublished insights from the Rhoton fellowship experience and lessons learned in our laboratories in the past years such that Prof. Rhoton's model can be realized, reproduced, and expanded upon in surgical neuroanatomy laboratories worldwide.

Funder

NREF

Medtronic, Stryker, and Storz

“Coordenação de Aperfeiçoamento de Pessoal de Nível Superior—Brasil (CAPES) - Finance Code 001”

Publisher

Georg Thieme Verlag KG

Subject

Clinical Neurology

Reference16 articles.

1. Prof. Albert L. Rhoton, Jr.: his life and legacy;J C Fernandez-Miranda;World Neurosurg,2016

2. Rhoton and his influence on Japanese neurosurgery;T Matsushima;World Neurosurg,2016

3. Dr. Al Rhoton, Jr.: friend, mentor, and colleague;J H Robertson;J Neurol Surg B Skull Base,2016

4. Rhoton and the United States;J H Robertson;World Neurosurg,2016

5. The Rhoton collection;J Sorenson;J Neurol Surg B Skull Base,2016

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