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PMID: 606833 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Cutting work in thick section cryomicrotomy.

Journal of microscopy ·Vol. 111 ·No. 1 ·1977-09-00 ·Pages 39-49

Saubermann AJ, Riley WD, Beeuwkes R

Abstract

The forces during cryosectioning were measured using miniature strain gauges attached to a load cell fitted to the drive arm of the Porter-Blum MT-2 cryomicrotome. Work was calculated and the data normalized to a standard (1 mm X 1 mm X 0.5 micrometer) section. Thermal energy generated was also calculated. Five parameters were studied: cutting angle, thickness, temperature, hardness, and block shape. Force patterns could be divided into three major groups thought to represent cutting (Type I), large fracture planes greater than 10 micrometer in length (Type II), and small fracture planes less than 10 micrometer in length (Type III). Type I and Type II produced satisfactory sections. Work in cutting ranged from an average of 78.4 muJ to 568.8 muJ. Cutting angle and temperature had the greatest effect on sectioning. Heat generated would be sufficient to cause through-section melting for 0.5 micrometer thick sections assuming the worst possible case, namely that all heat went into the section without loss. Presence of a Type II pattern (large fracture pattern) is thought to be presumptive evidence against thawing.

MeSH Terms
Frozen Sections Microtomy Physical Phenomena Physics Temperature
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Saubermann A J
Riley W D
Beeuwkes R
Article Info
Journal
Journal of microscopy
Abbr.
J Microsc
ISSN
0022-2720
Published
1977-09-00
Pages
39-49
Language
English
Region
England
NLM ID
0204522
Subset
IM
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