Byrnes v. Johnson & Johnson

37 F.2d 721, 4 U.S.P.Q. (BNA) 410, 1930 U.S. Dist. LEXIS 1813
District Court, D. New Jersey·Decided January 28, 1930·Published

Opinion

RELLSTAB, District Judge.

The plaintiff, assignee of letters patent No. 1,578,688, for a plaster of paris bandage, alleges infringement thereof by the defendant. This patent was issued March 30, 1926; to Edwin A. Spies, M. D., a specialist in orthopedic surgery, on his application of September 24, 1924.

The defenses are invalidity and noninfringement.

The defendant has for many years manufactured and sold surgical supplies. Since 1887 it has made and sold plaster of paris bandages for surgical use.

A plaster of paris bandage consists of a loosely, woven cloth of desired width and length, with or without selvaged edges, sized with some sticky material, or unsized, with dry plaster rubbed into its meshes and lying between its layers, and wound into a roll with [722] a core hole in the center. It is used for supporting and immobilizing fractured bones and diseased joints. Before usable on the patient, it is immersed in water or other suitable solution, then unrolled and applied wet and allowed to set or harden. Those used in hospitals and dispensaries were made by hand by their employees or patients, principally for economic reasons.

In his application for the patent, Spies does not set forth explicitly the alleged defects in the pertinent,art to which his improvement is directed. But, in his enumeration of the benefits to be obtained by his method of constructing the bandage (presently to be quoted), he does by inference point to such imperfections or deficiencies.

The machine made bandages, and some of those made by hand, admittedly were unsatisfaetory in certain important .particulars. The imperfections known by, those whose business it was to apply the bandages, as well as the characteristics desired, were pointed out in published works of persons of admitted skill and authority in the pertinent art. From these it appears:

First, as to the imperfections: If the mesh of the fabric was too fine, an excess of plaster would lie on the layers of the bandage, causing the plaster to set too rapidly and to become brittle. If wound too tightly, or if the layers of the bandage contained too much plaster, the water would not reach the deeper layers, leaving dry lumps or areas. If wound too loosely the bandage, in the handling preparatory to application to the patient, would telescope, i. e., the center would push out at one end, interfering with its easy and prompt use. If the edges were unselvaged, they would fray, hindering the free unrolling of the bandage and interfering with its proper application.
Second, as to suggested improvements: The mesh of the fabric should be 2%2 or 2%o threads to the square inch; the cloth should never be cut to reduce its width, unless done obliquely; when raveling occurs by tearing the fabric into strips, the edges should be rubbed with the point of a pair of scissors and'the ravelings pulled away; the plaster should be rubbed or worked into the meshes and spread evenly in a very thin film on the surface of the layers; and the bandage should be loosely rolled, leaving the concentric layers to move easily on one another, with a core hole of the size of a finger or thumb in the center to avoid creasing and to permit of a rapid and unif orm spread of water throughout the entire, bandage. See. Diseases of the Bones and Joints, by Drs. Joel E. Goldthwait et als. (1909); Plaster of Paris and How to Use It, by Martin W. Ware, M. D. (2d Ed. 1911); Orthopedic and Beeonstruetion Surgery, by Fred H. Albee, M. D. (1919); Practical Hints on Plaster Casts, by Elsie Tretow, B. N., in the American Journal of Nursing, 1922. This published art was known to both Spies and the defendant. The former admitted having read the above-mentioned works of Drs. Ware and Albee at and before he developed his patented improvement.

In 1922 Dr. Spies examined hospital and commercially manufactured bandages and experimented with them, as he testified, in order “to correlate the difficulties that existed, to standardize the difficulties.” In his experiments he came to the conclusion that the tension of the winding should “be as near a uniform one as possible,” and “that the edges had to be protected from raveling,” also that the core hole “had to be of such a diameter as to allow the water, when the bandage was submerged, to attack the innermost layers from within outward, * * * so that it would tend to a quick and even saturation of the bandage.” This diameter he determined should be “about one inch.”

Thereupon he constructed by hand a bandage which he considered free from the difficulties found in the bandages then being used, and then, with the assistance of an engineer, he “set out to measure accurately and form a standard in scientific and accurate terms.”

In April, 1924, before the clinical society of a named hospital, he gave a demonstration of his bandage, and in September of that year, before the same society, he “read a formal paper embodying all my (his) finished ideas on this plaster of Paris bandage.” In the same month he made the application which eventuated in the patent in suit.

Long before Spies took these steps, the defendant experimented to produce a bandage satisfactory to the trade, and from time to time changed both the method of making the bandage and its character. About 1903 it put out a bandage, called “Nu” (corruption of “new”), using a gauze strip of desired width, woven on a special loom by which the warp was interlocked by the woof; i. e., the horizontal threads going over the longitudinal threads in a loop at the edge, making it firm — a selvaged edge. These proved too expensive and were discontinued.

In 1908 and 1909, it put out a erinolin bandage (sized fabric) with a mesh of 3%s threads to the square inch, carrying an extra [723] amount of paster, the marketing of which was stopped in 1910.

Prior to 1921 it used a cloth heavier than the average gauze, with a mesh of 3%s, but mostly the mesh was 44Ao. In its trade circular called “Red Cross Notes,” issue of January 24,1922, is given the amount of plaster and weight of bandage, with instructions for use. In its price list of May, 1921, page 5, it offered hospitals two meshes of crinolin— Red Cross S2As and Bellevue 2%i — in 100-yard units for their use in making plaster of paris bandages.

For a number of years immediately prior to, and down to and including a part of 1924, it marketed a bandage composed of an unsized cotton doth having a mesh of 4%o, which carried plaster of paris in the meshes and between its layers. This, and the more recent of the older styles of bandages made by it, had no selvage. They had a small irregular core hole a little larger than an ordinary pencil. The weight of the average bandage with plaster was 11.78 ounces per square yard, and the weight of the fabric after the plaster was shaken out was 1.36 ounces per square yard.

In 1923 defendant ascertained from the Middlesex General Hospital, New Brunswick, N. J., of which the above-mentioned Dr. Fred H. Albee was the head, how it made its bandages and how it wanted them. They were wound by hand. Thereupon it began experimenting with the construction of a machine to wind them. At first the. machine wound them too tightly. Then the tension was reduced and the size of the spindles changed. Finally it adopted the surface winding.

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Byrnes v. Johnson & Johnson, 37 F.2d 721, 4 U.S.P.Q. (BNA) 410, 1930 U.S. Dist. LEXIS 1813 (D.N.J. 1930).

37 F.2d 721 (Byrnes v. Johnson & Johnson) — published by Counsel Stack Legal Research, free access to 12M+ legal documents.

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