Evaluation of laser ablation microtomy for correlative microscopy of hard tissues

被引:8
作者
Boyde, A. [1 ]
机构
[1] Queen Mary Univ London, Dent Phys Sci, London E1 4NS, England
关键词
Bone; enthesis; ligament; osteoarthritis; osteoporosis; tendon; ARTICULAR CALCIFIED CARTILAGE; BACKSCATTERED ELECTRON; UNDECALCIFIED BONE; SUBCHONDRAL BONE; SOFT-TISSUES; OSTEOARTHRITIS; IMMUNOHISTOCHEMISTRY; PROTRUSIONS; IMPERFECTA; DENSITY;
D O I
10.1111/jmi.12689
中图分类号
TH742 [显微镜];
学科分类号
摘要
Laser ablation machining or microtomy (LAM) is a relatively new approach to producing slide mounted sections of translucent materials. We evaluated the method with a variety of problems from the bone, joint and dental tissues fields where we require thin undecalcified and undistorted sections for correlative light microscopy (LM) and backscattered electron scanning electron microscopy (BSE SEM). All samples were embedded in poly-methylmethacrlate (PMMA) and flat block surfaces had been previously studied by BSE-SEM and confocal scanning light microscopy (CSLM). Most were also studied by X-yay microtomography (XMT). The block surface is stuck to a glass slide with cyanoacrylate adhesive. Setting the section thickness and levelling uses inbuilt optical coherence tomographic imaging. Tight focusing of near-infrared laser radiation in the sectioning plane gives extreme intensities causing photodisruption of material at the focal point. The laser beam is moved by a fast scanner to write a cutting line, which is simultaneously moved by an XY positioning unit to create a sectioning plane. The block is thereby released from the slide, leaving the section stuck to the slide. Light, wet polishing on the finest grade (4000 grit) silicon carbide polishing paper is used to remove a 1-2 m thick damaged layer at the surface of the section. Sections produced by laser cutting are fine in quality and superior to those produced by mechanical cutting and can be thinner than the voxel' in most laboratory X-ray microtomography systems. The present extensive pilot studies have shown that it works to produce samples which we can study by both light and electron microscopy.
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页码:17 / 30
页数:14
相关论文
共 35 条
[1]   Rapid-Throughput Skeletal Phenotyping of 100 Knockout Mice Identifies 9 New Genes That Determine Bone Strength [J].
Bassett, J. H. Duncan ;
Gogakos, Apostolos ;
White, Jacqueline K. ;
Evans, Holly ;
Jacques, Richard M. ;
van der Spek, Anne H. ;
Ramirez-Solis, Ramiro ;
Ryder, Edward ;
Sunter, David ;
Boyde, Alan ;
Campbell, Michael J. ;
Croucher, Peter I. ;
Williams, Graham R. .
PLOS GENETICS, 2012, 8 (08)
[2]   Mice Lacking the Calcineurin Inhibitor Rcan2 Have an Isolated Defect of Osteoblast Function [J].
Bassett, J. H. Duncan ;
Logan, John G. ;
Boyde, Alan ;
Cheung, Moira S. ;
Evans, Holly ;
Croucher, Peter ;
Sun, Xiao-yang ;
Xu, Sai ;
Murata, Yoshiharu ;
Williams, Graham R. .
ENDOCRINOLOGY, 2012, 153 (07) :3537-3548
[3]   MicroXRF tomographic visualization of zinc and iron in the zebrafish embryo at the onset of the hatching period [J].
Bourassa, Daisy ;
Gleber, Sophie-Charlotte ;
Vogt, Stefan ;
Shin, Chong Hyun ;
Fahrni, Christoph J. .
METALLOMICS, 2016, 8 (10) :1122-1130
[4]   On fragmenting, densely mineralised acellular protrusions into articular cartilage and their possible role in osteoarthritis [J].
Boyde, A. ;
Davis, G. R. ;
Mills, D. ;
Zikmund, T. ;
Cox, T. M. ;
Adams, V. L. ;
Niker, A. ;
Wilson, P. J. ;
Dillon, J. P. ;
Ranganath, L. R. ;
Jeffery, N. ;
Jarvis, J. C. ;
Gallagher, J. A. .
JOURNAL OF ANATOMY, 2014, 225 (04) :436-446
[5]   The real response of bone to exercise [J].
Boyde, A .
JOURNAL OF ANATOMY, 2003, 203 (02) :173-189
[6]   STAINING PLASTIC BLOCKS WITH TRIIODIDE TO IMAGE CELLS AND SOFT TISSUES IN BACKSCATTERED ELECTRON SEM OF SKELETAL AND DENTAL TISSUES [J].
Boyde, A. .
EUROPEAN CELLS & MATERIALS, 2012, 24 :154-161
[7]   CARTILAGE DAMAGE INVOLVING EXTRUSION OF MINERALISABLE MATRIX FROM THE ARTICULAR CALCIFIED CARTILAGE AND SUBCHONDRAL BONE [J].
Boyde, A. ;
Riggs, C. M. ;
Bushby, A. J. ;
McDermott, B. ;
Pinchbeck, G. L. ;
Clegg, P. D. .
EUROPEAN CELLS & MATERIALS, 2011, 21 :470-478
[8]   The mineralization density of iliac crest bone from children with osteogenesis imperfecta [J].
Boyde, A ;
Travers, R ;
Glorieux, FH ;
Jones, SJ .
CALCIFIED TISSUE INTERNATIONAL, 1999, 64 (03) :185-190
[9]  
Boyde A., 1989, Handbook of Microscopic Anatomy, P309, DOI 10.1007/978-3-642-83496-7_6
[10]  
Boyde Alan, 2005, Eur Cell Mater, V9, P33