By Anil K. Mandal M.B.B.S., F.A.C.P. (auth.)
Anil ok. Mandai, M.D., is likely one of the trailblazers within the use of the transmission electron microscope within the research of the urinary sediment. during this e-book, he reports his huge efforts to tie his great medical expe rience to his stylish easy learn with the electron microscope. the images are accomplished, and the scientific correlates are properly defined in tables and textual content. it will possibly astonish a few readers ebook for fellows and scientific nephrol ogists has been written at the use of the transmission electron microscope within the examine of urine. a few may perhaps view this as a cosmopolitan learn device. I, in spite of the fact that, applaud the trouble. such a lot of discoveries and advances in uncomplicated technology lie unutilized simply because clinicians aren't conscious of the instruments on hand or have little guide of their use. possibly that's the reason why such a lot of checks have come and long gone, were chanced on dead and dropped, or have easily been deserted after being judged too complicated-some simply because they have been, others simply because they have been by no means utilized and interpreted effectively. the entire box of study looks pulling forward and clear of scientific medication. consequently, an attempt like this one, which swiftly and obviously attempts to introduce a sophisticated learn exam process into medical drugs, is helpful of admiration and sup port.
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3. Naccarato WF, Caffo AL: The performance characteristics of the urinary protein method for the Du Pont ACA Analyzer. Du Pont Clinical Systems Technical Service Bulletin 1982. 4. Springberg PO, Garrett LE, Thompson AL, et al: Fixed and reproducible orthostatic proteinuria: Results of a 20 year study. Ann Intern Med 1982; 97:516--519. 5. Ganeval 0, Noel LH, Preud'Homme JL, et al: Light chain deposition disease: Its relation with AL-type amyloidosis. Kidney Int 1984; 26:1-9. 6. Alpers CE, Hopper J, Biava CG: Light chain glomerulopathy with amyloid-like deposits.
2-1). Cells or necrotic material Figure 2-1 In thiS light micrograph of unnary sediment from a patient With severe hepatocellular disease and ARF, a Wide vanety of casts and desquamated epithelial cells (between arrows) are seen (epoxy tissue stain, x 100) 26 CHAPTER 2 in the tubule lumen are embedded wIthin the gelatinous matrix, like pieces of fruit in Jello, to form cellular (Fig. 2-2) or granular casts (Fig. 2-3); see also Fig. 1-3). In histological sections of the kidney, casts appear as collections of proteinous material within the tubule lumen (Fig.
Fang LST: Light chain nephropathy. Kidney Int 1985; 27:582-592. 2. Rennie lBO, Kee H: Evaluation of clinical methods for detecting proteinuria. Lancet 1967; 2:489-492. 3. Naccarato WF, Caffo AL: The performance characteristics of the urinary protein method for the Du Pont ACA Analyzer. Du Pont Clinical Systems Technical Service Bulletin 1982. 4. Springberg PO, Garrett LE, Thompson AL, et al: Fixed and reproducible orthostatic proteinuria: Results of a 20 year study. Ann Intern Med 1982; 97:516--519.
Assessment of Urinary Sediment by Electron Microscopy: Applications in Renal Disease by Anil K. Mandal M.B.B.S., F.A.C.P. (auth.)