American Chemical Society Committee on Viscosity of Cellulose.A Standard Method for Determining the Viscosity of Cellulose in Cuprammonium Hydroxide. Ind. Eng. Chem., Anal. Ed.1, 49-51 (1929).
2.
Anderson, D.B. , A Microchemical Study of the Structure and Development of Flax Fibers. Am. J. Botany14, 187-211 (1927).
3.
Anderson, D.B. , and Kerr, Thomas, Growth and Structure of Cotton Fiber . Ind. Eng. Chem.30, 48-54 (1938).
4.
Anderson, D.B. , and Moore, J.H., The Influence of Constant Light and Temperature upon the Structure of the Walls of Cotton Fibers and Collenchymatous Cells . Am. J. Botany24, 503-7 (1937).
5.
Astbury, W.T. , Marwick, Thora C., and Bernal , J.D., X-Ray Analysis of the Cell Wall of Valonia ventricosa. Proc. Roy. Soc. (London)B109, 443-50 (1932).
6.
Bailey, I.W. , The Microfibrillar and Microcapillary Structure of the Cell Wall. Bull. Torrey Botan. Club66, 201-13 (1935).
7.
Bailey, I.W. , and Berkley, E.E., The Significance of X-Rays in Studying the Orientation of Cellulose in the Secondary Wall of Tracheids. Am. J. Botany29, 231-41 (1942).
8.
Bailey, I.W. , and Kerr, Thomas, The Structural Variability of the Secondary Wall as Revealed by "Lignin Residues." J. Arnold Arboretum18, 261-72 (1937).
9.
Bailey, I.W. , and Kerr, Thomas, Visible Structure of the Secondary Wall and Its Significance in Physical and Chemical Investigations of Tracheary Cells and Fibers. J. Arnold Arboretum16, 273-300 (1935).
10.
Bailey, I.W., and Vestal, Mary R., The Orientation of Cellulose in the Secondary Wall of Tracheary Cells. J. Arnold Arboretum18, 185-95 (1937).
11.
Balls, W.L., The Existence of Daily Growth Rings in the Cell Walls of Cotton Hairs. Proc. Roy. Soc. (London)B90, 542-55 (1919).
12.
Balls, W.L. , and Hancock, E.A., Further Observations on Cell Wall Structure as Seen in Cotton Hairs. Proy. Roy. Soc. (London)B93, 426-40 (1922).
13.
Balls, W.L. , Determination of Cell Wall Structure as Seen in the Cell Wall of Cotton Hairs. Proc. Roy. Soc. (London)B95, 72-89 (1923).
14.
Barnes, R.B. , and Burton, C.J., The Electron Microscope and Cellulose. Ind. Eng. Chem.35, 120-5 (1943).
15.
Berkley, E.E. , Cellulose Orientation, Strength and Cell Wall Development of Cotton Fibers. TEXTILE RESEARCH9, 355-73 (1939).
16.
Bixler, A.L.M. , Effect of Digestion on Wood Structure. Paper Trade J.104, 29-40 (1938).
17.
Denham, H.J. , Structure of the Cotton Hair and Its Botanical Aspects. J. Textile Inst.14, T85-T113 (1923).
18.
Eisenhut, O. , and Kuhn, E., Lichtmikroskopische und ubermikroskopische Untersuchungen an naturlichen und künstlichen Cellulosefasern. Die Chemie55, 198-206 (1942).
19.
Farr, Wanda K., Behavior of the Cell Membrane of the Cotton Fiber in Cuprammonium Hydroxide Solution. Contrib. Boyce Thompson Inst. 10, 71-112 (1938).
20.
Farr, Wanda K., The Microscopic Structure of Plant Cell Membranes in Relation to the Micellar Hypothesis. J. Phys. Chem.42, 1113-47 (1938).
21.
Farr, Wanda K., and Clark, George L., Structural Features of the Wall Suggested by X-Ray Diffraction Analyses and Observations in Ordinary and Plane-Polarized Light. Contrib. Boyce Thompson Inst. 4, 273-94 (1932).
22.
Harlow, W.M. , Microchemistry of Pulp Fibers; the Significance of Fiber Ballooning in the Pulping Process. Paper Trade J.117, 27-29 (1943).
23.
Harlow, W.M. , Swelling-Staining Reagent for Studying Fiber Structure. Paper Trade J.116, 52 (1943).
24.
Hess, Kurt, and Akim, Leo, Faserfeinbau und Quellung bie Cellulose. Cellulosechemie12, 95-103 (1931).
25.
Hock, C.W., and Seifriz, W., Micro-Dissection of Paper Pulp Fibers. Paper Trade J.106, 31-2 (1940).
26.
Hock, C.W., Ramsay, Robt. C., and Harris M., Microscopic Structure of the Cotton Fiber. J. Research Nat. Bur. Standards26, 93-104, R.P. 1362 (1941).
27.
Hock, C.W., Microscopic Structure of the Cell Wall. Pp. 11-21 in Seifriz, W., The Structure of Protoplasm. Iowa State College Press, 1942.
28.
Kerr, Thomas , The Structure of Growth Rings in the Secondary Wall of the Cotton Hair. Proto-plasma27, 229-41 (1937).
Ott, Emil, Cellulose and Cellulose Derivatives, p. 238. New York, Interscience Publishers, Inc. (1943).
34.
Preston, R.D. , The Fine Structure of Phloem Fibers, II. Proc. Roy. Soc. (London)B130, 130 (1941).
35.
Prindle, Bryce , Method for the General Histological Examination of Normal or Mildewed Cotton Fibers. TEXTILE RESEARCH6, 481-7 (1936).
36.
Ritter, George J., Wood Fibers. J. Forestry28, 533-41 (1930) ; Ind. Eng. Chem.20, 941-5 (1928).
37.
Ritter, George J., Structure of the Cell Wall of Wood Fibers . Paper Ind.16, 178-83 (1934).
38.
Ritter, George J., Morphology of Cellulose Fibers as Related to the Manufacture of Paper. Paper Trade J.101, 92-100 (1935).
39.
Sears, George R., and Kregel, E.A., Application of the Electron Microscope to Problems of the Pulp, Paper, and Paperboard Industry. Tech. Assoc. Papers, Tech. Assoc. Pulp Paper Ind., Series 25, 1, 163-9 (1942).
40.
Sisson, W.A. , X-Ray Studies of Crystallite Orientation in Cellulose Fibers. Ind. Eng. Chem.27, 51-6 (1935).
41.
Sisson, W.A. , Orientation in Young Cotton Fibers as Indicated by X-Ray Diffraction Studies. Contrib. Boyce Thompson Inst.9, 239-48 (1938).
42.
Sisson, W.A. , X-Ray Studies Regarding the Formation and Orientation of Crystalline Cellulose in the Cell Wall of Valonia. Contrib. Boyce Thompson Inst. 12, 171-80 (1941).
43.
Yackel, E.C. , and Kenyon, W.O., The Oxidation of Cellulose by Nitrogen Dioxide. J. Am. Chem. Soc.64, 121-7 (1942).