| Literature DB >> 34733239 |
Alexander Micko1, Fabian Placzek2, Roger Fonollà3, Michael Winklehner4, Ryan Sentosa2, Arno Krause2, Greisa Vila5, Romana Höftberger4, Marco Andreana2, Wolfgang Drexler2, Rainer A Leitgeb2,6, Angelika Unterhuber2, Stefan Wolfsberger1.
Abstract
Objective: Despite advancements of intraoperative visualization, the difficulty to visually distinguish adenoma from adjacent pituitary gland due to textural similarities may lead to incomplete adenoma resection or impairment of pituitary function. The aim of this study was to investigate optical coherence tomography (OCT) imaging in combination with a convolutional neural network (CNN) for objectively identify pituitary adenoma tissue in an ex vivo setting.Entities:
Keywords: Optical coherence tomography; convolutional neural network (CNN); pituitary adenoma (PA); pituitary gland; transition zone (TZ)
Mesh:
Year: 2021 PMID: 34733239 PMCID: PMC8560084 DOI: 10.3389/fendo.2021.730100
Source DB: PubMed Journal: Front Endocrinol (Lausanne) ISSN: 1664-2392 Impact factor: 5.555
Patient and tumor characteristics.
| Pituitary Adenoma Series | ||
|---|---|---|
| n (range) | % | |
|
| ||
| Number of patients | 20 | |
| Age | 51.8 (18 – 82) | |
| < 65a | 15 | 75 |
| > 65a | 5 | 25 |
| Gender (female: male) | (1: 0.82) | |
|
| ||
| Functional Classification | ||
| functional | 8 | 40 |
| non-functional | 12 | 60 |
| WHO 2017 Classification11 | ||
| Pit-1 plurihormonal | 1 | 5 |
| Lactotroph | 2 | 10 |
| Mammosomatotroph | 3 | 15 |
| Corticotroph | 2 | 10 |
| Gonadotroph | 7 | 35 |
| Null Cell | 5 | 25 |
| Size (max. diameter, mm) | 22 (7 – 47) | |
| Volume (cm3) | 5.4 (0.1 – 38) | |
| Consistency | ||
| cystic | 2 | 10 |
| soft | 14 | 70 |
| fibrous | 4 | 20 |
| Invasiveness (direct endoscopic visualization) | 5 | 25 |
Figure 1Correlation of OCT and histopathological images of pituitary gland tissue (left) and pituitary adenoma (right). (A) Enface OCT projections, white dotted lines indicate positions of cross-sectional OCT (B-scan) positions. (B, C) B-scans at the indicated positions depicted in A. (D–F) H&E slices of the same biopsy. Red arrows: blood vessel, yellow arrows: representative nests, blue arrows: mechanical or freezing artifacts. Scale bars without label: 100 µm. Dynamic range 0-55 dB applicable for each OCT image.
Figure 2Case 1. Convolutional neuronal network assessment of OCT images of samples of pituitary adenoma (black arrow) and adjacent gland (white arrow). (A) MRI, 22mm macroadenoma. (B) intraoperative imaging. (C) Diagram of pituitary adenoma probability. X axis: number of each classified slice (500 per sample). The orange line indicates the classification threshold for pituitary adenoma/non-adenoma. The blue curve indicates an average of 150 slices to visualize the network prediction.
Figure 3Case 2. Convolutional neuronal network assessment of OCT images of samples of pituitary adenoma (black arrow) and adjacent gland (white arrow). (A) MRI, 9mm microadenoma. (B) intraoperative imaging. (C) Diagram of pituitary adenoma probability. X axis: number of each classified slice (500 per sample). The orange line indicates the classification threshold for pituitary adenoma/non-adenoma. The blue curve indicates an average of 150 slices to visualize the network prediction. (D) OCT 3-dimensional visualization of the sub-volume of sample 2 – transition zone, H/E slices of pituitary adenoma (red box) and pituitary gland tissue. Yellow arrows indicate nests. Scale bars: 50 µm.
Figure 4Case 3. Convolutional neuronal network assessment of OCT images of samples of pituitary adenoma (black arrow) and adjacent gland (white arrow). (A) MRI, 8mm microadenoma. (B) intraoperative imaging. (C) Diagram of pituitary adenoma probability. X axis: number of each classified slice (500 per sample). The orange line indicates the classification threshold for pituitary adenoma/non-adenoma. The blue curve indicates an average of 150 slices to visualize the network prediction. (D) OCT 3-dimensional visualization of the sub-volume of sample 1 – pituitary adenoma (red box) with connective tissue, H/E slices of segements of pituitary adenoma and fibrous tissue. Scale bars: 50 µm.