The Cytoscan model E-II in intraoperative parathyroid gland identification in a rabbit model

Intraoperative parathyroid gland identification and preservation is often a challenge even in the hands of experienced surgeons as they could be indistinguishable from fat or thyroid tissue. The goal of this study was to demonstrate the use of the Cytoscan Model E-II, which uses orthogonal polarizat...

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Published inOtolaryngology-head and neck surgery Vol. 125; no. 6; p. 635
Main Authors Sofola, I O, Pazos, G A, Buttolph, T B, Casler, J D, Leonard, D W
Format Journal Article
LanguageEnglish
Published England 01.12.2001
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Abstract Intraoperative parathyroid gland identification and preservation is often a challenge even in the hands of experienced surgeons as they could be indistinguishable from fat or thyroid tissue. The goal of this study was to demonstrate the use of the Cytoscan Model E-II, which uses orthogonal polarization spectral (OPS) imaging technology, as an intravital microscope in identifying parathyroid glands intraoperatively and differentiating the parathyroid glands from fat and thyroid tissue in a rabbit model. The necks of 4 New England white rabbits were explored with the animals under a general anesthesia. The Cytoscan was used to obtain images of the vasculature of tissue suspected to be parathyroid, fat, and thyroid tissue. These were confirmed by histologic evaluation. All tissues were correctly identified by the Cytoscan and confirmed by histologic analysis. There was an obvious difference in the images obtained of fatty tissue as compared with parathyroid tissues. There was also an appreciable difference between parathyroid and thyroid tissue based on the difference in vascularity. OPS imaging technology can be used in identifying parathyroid glands based on the difference in vascularity from fat and the pattern and density of vessels when compared with thyroid tissue in a rabbit model. The Cytoscan may play a future role in real time intraoperative identification of human parathyroid glands. Future investigation is warranted.
AbstractList Intraoperative parathyroid gland identification and preservation is often a challenge even in the hands of experienced surgeons as they could be indistinguishable from fat or thyroid tissue. The goal of this study was to demonstrate the use of the Cytoscan Model E-II, which uses orthogonal polarization spectral (OPS) imaging technology, as an intravital microscope in identifying parathyroid glands intraoperatively and differentiating the parathyroid glands from fat and thyroid tissue in a rabbit model. The necks of 4 New England white rabbits were explored with the animals under a general anesthesia. The Cytoscan was used to obtain images of the vasculature of tissue suspected to be parathyroid, fat, and thyroid tissue. These were confirmed by histologic evaluation. All tissues were correctly identified by the Cytoscan and confirmed by histologic analysis. There was an obvious difference in the images obtained of fatty tissue as compared with parathyroid tissues. There was also an appreciable difference between parathyroid and thyroid tissue based on the difference in vascularity. OPS imaging technology can be used in identifying parathyroid glands based on the difference in vascularity from fat and the pattern and density of vessels when compared with thyroid tissue in a rabbit model. The Cytoscan may play a future role in real time intraoperative identification of human parathyroid glands. Future investigation is warranted.
Author Casler, J D
Pazos, G A
Buttolph, T B
Leonard, D W
Sofola, I O
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Snippet Intraoperative parathyroid gland identification and preservation is often a challenge even in the hands of experienced surgeons as they could be...
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StartPage 635
SubjectTerms Adipose Tissue - surgery
Adipose Tissue - ultrastructure
Animals
Disease Models, Animal
Histological Techniques
Hypoparathyroidism - etiology
Hypoparathyroidism - prevention & control
Image Processing, Computer-Assisted - instrumentation
Image Processing, Computer-Assisted - methods
Image Processing, Computer-Assisted - standards
Microscopy, Polarization - instrumentation
Microscopy, Polarization - methods
Microscopy, Polarization - standards
Monitoring, Intraoperative - instrumentation
Monitoring, Intraoperative - methods
Monitoring, Intraoperative - standards
Neck Dissection - adverse effects
Parathyroid Glands - injuries
Parathyroid Glands - surgery
Parathyroid Glands - ultrastructure
Rabbits
Thyroid Gland - surgery
Thyroid Gland - ultrastructure
Thyroidectomy - adverse effects
Title The Cytoscan model E-II in intraoperative parathyroid gland identification in a rabbit model
URI https://www.ncbi.nlm.nih.gov/pubmed/11743467
Volume 125
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