Endoscope
11432711 · 2022-09-06
Assignee
Inventors
Cpc classification
International classification
A61B1/00
HUMAN NECESSITIES
G02B23/24
PHYSICS
Abstract
An endoscope includes an objective optical system, an illuminator having a light-emitting region and the illuminator disposed at a position different from the objective optical system, and a dome-shaped transparent cover transparent in a range of field of view and sealing the object side of the objective optical system and the illuminator. The following Conditional Expressions (1) and (2) are satisfied: 0.5<θ/ω<0.95 (1), (−0.13×LP+0.86×DR)<DL<0.95×DR (2).
Claims
1. An endoscope comprising: an objective optical system; an illuminator having a light-emitting region and the illuminator disposed at a position different from the objective optical system; and a dome-shaped transparent cover transparent in a range of field of view and sealing an object side of the objective optical system and the illuminator, wherein the following Conditional Expressions (1) and (2) are satisfied:
0.5<θ/ω<0.95 (1)
(−0.13×LP+0.86×DR)<DL<0.95×DR (2) where ω is a half angle of view of the objective optical system, θ is an angle formed by a straight line and an optical axis of the objective optical system when an intersection point of a light ray at the half angle of view and an inner surface of the dome-shaped transparent cover is connected to a spherical core position of the dome-shaped transparent cover by the straight line, LP is a distance from an entrance pupil position of the objective optical system to the light-emitting region, DR is a radius of curvature of the inner surface of the dome-shaped transparent cover, and DL is a distance from the inner surface of the dome-shaped transparent cover to the entrance pupil position of the objective optical system on the optical axis.
2. The endoscope according to claim 1, wherein the endoscope is a capsule endoscope.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
DETAILED DESCRIPTION
(5) An endoscope according to an embodiment, for example, a capsule endoscope 100 will be described in detail below based on the drawings. It should be noted that the present disclosure is not limited by the embodiment.
(6)
(7) In the interior of the capsule endoscope 100, an objective optical system 103 and an illumination unit 104 disposed at a position different from the objective optical system 103 are disposed. It is possible to use, for example, an LED having a light-emitting region 104a as the illumination unit 104.
(8) The dome-shaped transparent cover 102 seals the object side of the objective optical system 103 and the illumination unit 104 and is formed of a transparent material in the range of field of view.
(9) The capsule cover 101 includes a substantially cylindrical center portion and a substantially bowl-shaped bottom portion. The dome-shaped transparent cover 102 is disposed at a position opposed to the substantially bowl-shaped bottom portion with the center portion interposed therebetween. The dome-shaped transparent cover 102 is formed with a dome-shaped (substantially bowl-shaped) transparent member. The capsule cover 101 and the dome-shaped transparent cover 102 are connected to each other in a watertight manner.
(10) In the interior of the capsule endoscope 100, the objective optical system 103, the illumination unit 104, an image sensor 105, a drive control unit 106, and a signal processing unit 107 are disposed. The dome-shaped transparent cover 102 is disposed at a position where it covers the front surfaces of both of the objective optical system 103 and the illumination unit 104 at the same time. Although not illustrated, a power receiving unit and a transmitting unit are provided in the interior of the capsule endoscope 100.
(11) Illumination light is emitted from the illumination unit 104. The illumination light passes through the dome-shaped transparent cover 102 and illuminates an object (not illustrated). Light from the object is incident on the objective optical system 103. An optical image of the object is formed at an image position by the objective optical system 103.
(12) The optical image is picked up by the image sensor 105. The drive and the control of the image sensor 105 are performed by the drive control unit 106. Furthermore, an output signal from the image sensor 105 is processed by the signal processing unit 107 as necessary.
(13) The capsule endoscope 100 satisfies the following Conditional Expressions (1) and (2):
0.5<θ/ω<0.95 (1)
(−0.13×LP+0.86×DR)<DL<0.95×DR (2)
(14) where
(15) ω is the half angle of view of the objective optical system,
(16) θ is the angle formed by a straight line and the optical axis of the objective optical system when the intersection point of a light ray at the half angle of view and the inner surface of the dome-shaped transparent cover is connected to the spherical core position of the dome-shaped transparent cover by the straight line,
(17) LP is the distance from the entrance pupil position of the objective optical system to the light-emitting region,
(18) DR is the radius of curvature of the inner surface of the dome-shaped transparent cover, and
(19) DL is the distance from the inner surface of the dome-shaped transparent cover to the entrance pupil position of the objective optical system.
(20) Referring to
(21) Referring to
(22) Next, referring to
(23) In the interior of the capsule endoscope 10, an objective optical system 13 and an illumination unit 14 disposed at a position different from the objective optical system 13 are disposed. It is possible to use an LED as the illumination unit 14.
(24) The dome-shaped transparent cover 12 seals the object side of the objective optical system 13 and the illumination unit 14 and is formed of a transparent material in the range of field of view.
(25) In the interior of the capsule endoscope 10, the objective optical system 13, the illumination unit 14, an image sensor 15, a drive control unit 16, and a signal processing unit (not illustrated) are disposed. The dome-shaped transparent cover 12 is disposed at a position where it covers the front surfaces of both of the objective optical system 13 and the illumination unit 14 at the same time. Although not illustrated, a power receiving unit and a transmitting unit are provided in the interior of the capsule endoscope 10.
(26) Illumination light is emitted from the illumination unit 14. The illumination light passes through the dome-shaped transparent cover 12 and illuminates an object (not illustrated). Light from the object is incident on the objective optical system 13. An optical image of the object is formed at an image position by the objective optical system 13.
(27)
(28)
(29)
(30) In the present embodiment, it is possible to prevent flare easily by satisfying the following Conditional Expressions (1) and (2):
0.5<θ/ω<0.95 (1)
(−0.13×LP+0.86×DR)<DL<0.95×DR (2)
(31)
(32)
(33) For reference,
(34) The corresponding values in Numerical Value Example 1 regarding Conditional Expressions (1) and (2) are shown in the following Tables 1, 2, and 3. In the following tables, “upper limit” and “lower limit” indicate the upper limit value and the lower limit value, respectively, allowable as values of parameters.
(35) TABLE-US-00001 TABLE 1 Angle of view (2ω) 140-165 LED light distribution angle (°) 140-180 DR (mm) 5.0 LP (mm) 0.0 0.4 Lower Upper Lower Upper limit limit limit limit DL allowable range (mm) 4.3 5.36 3.8 5.4 DL standardization 0.86 1.07 0.76 1.08
(36) TABLE-US-00002 TABLE 2 (a) (b) (c) 0.00 4.30 5.00 0.05 4.20 5.00 0.10 4.20 5.00 0.15 4.10 5.00 0.20 4.10 5.00 0.25 4.00 5.00 0.30 3.90 5.00 0.35 3.90 5.00 0.40 3.80 5.00 (a) LED position (b) allowable DL lower limit value (c) DR
(37) TABLE-US-00003 TABLE 3 Normalize DR to 1 (a) (b) (c) (d) (e) 0.00 0.86 1.00 0.95 0.86 0.01 0.84 1.00 0.95 0.85 0.02 0.84 1.00 0.95 0.83 0.03 0.82 1.00 0.95 0.82 0.04 0.82 1.00 0.95 0.81 0.05 0.80 1.00 0.95 0.80 0.06 0.78 1.00 0.95 0.78 0.07 0.78 1.00 0.95 0.77 0.08 0.76 1.00 0.95 0.76 (a) LED position (b) allowable DL lower limit value (c) DR (d) DL = 0.95 (e) DL = −1.3 × LP + 0.86 × DR
(38) The corresponding values in Numerical Value Example 2 regarding Conditional Expressions (1) and (2) are shown in the following Tables 4, 5, and 6.
(39) TABLE-US-00004 TABLE 4 Angle of view (2ω) 140-165 LED light distribution angle (°) 140-180 DR (mm) 4.5 LP (mm) 0.0 0.4 Lower Upper Lower Upper limit limit limit limit DL allowable range (mm) 3.85 4.6 3.35 4.7 DL standardization 0.86 1.02 0.74 1.04
(40) TABLE-US-00005 TABLE 5 (a) (b) (c) 0.00 3.85 4.50 0.05 3.79 4.50 0.10 3.73 4.50 0.15 3.66 4.50 0.20 3.60 4.50 0.25 3.54 4.50 0.30 3.48 4.50 0.35 3.41 4.50 0.40 3.35 4.50 (a) LED position (b) Permissible DL lower limit value (c) DR
(41) TABLE-US-00006 TABLE 6 Normalize DR to 1 (a) (b) (c) (d) (e) 0.00 0.86 1.00 0.95 0.86 0.01 0.84 1.00 0.95 0.85 0.02 0.83 1.00 0.95 0.83 0.03 0.81 1.00 0.95 0.82 0.04 0.80 1.00 0.95 0.80 0.06 0.79 1.00 0.95 0.79 0.07 0.77 1.00 0.95 0.77 0.08 0.76 1.00 0.95 0.76 0.09 0.74 1.00 0.95 0.74 (a) LED position (b) allowable DL lower limit value (c) DR (d) DL = 0.95 (e) DL = −1.3 × LP + 0.86 × DR
(42) The corresponding values in Numerical Value Example 3 regarding Conditional Expressions (1) and (2) are shown in the following Tables 7, 8 and 9.
(43) TABLE-US-00007 TABLE 7 Angle of view (2ω) 140-165 LED light distribution angle (°) 140-180 DR (mm) 4.0 LP (mm) 0.0 0.4 Lower Upper Lower Upper limit limit limit limit DL allowable range (mm) 3.45 4.1 2.95 4.1 DL standardization 0.86 1.03 0.74 1.03
(44) TABLE-US-00008 TABLE 8 (a) (b) (c) 0.00 3.45 4.00 0.05 3.39 4.00 0.10 3.33 4.00 0.15 3.26 4.00 0.20 3.20 4.00 0.25 3.14 4.00 0.30 3.08 4.00 0.35 3.01 4.00 0.40 2.95 4.00 (a) LED position (b) allowable DL lower limit value (c) DR
(45) TABLE-US-00009 TABLE 9 Normalize DR to 1 (a) (b) (c) (d) (e) 0.00 0.86 1.00 0.95 0.86 0.01 0.85 1.00 0.95 0.84 0.03 0.83 1.00 0.95 0.83 0.04 0.82 1.00 0.95 0.81 0.05 0.80 1.00 0.95 0.80 0.06 0.78 1.00 0.95 0.78 0.08 0.77 1.00 0.95 0.76 0.09 0.75 1.00 0.95 0.75 0.10 0.74 1.00 0.95 0.73 (a) LED position (b) allowable DL lower limit value (c) DR (d) DL = 0.95 (e) DL = −1.3 × LP + 0.86 × DR
(46) The capsule endoscope and the endoscope described above may simultaneously satisfy a plurality of arrangements. Doing so is preferable to obtain a favorable capsule endoscope and the endoscope. Combinations of favorable arrangements are optional. For each conditional expression, only the upper limit value or the lower limit value of a more limited numerical range of the conditional expression may be limited.
(47) Although a variety of embodiments of the present disclosure have been described above, the present disclosure is not limited only to those embodiments, and embodiments configured by combining the configurations of those embodiments as appropriate without departing from the spirit of the disclosure fall within the scope of the disclosure.
(48) In this way, the present disclosure is not limited to a capsule endoscope.
(49) As described above, the disclosure is advantageous for an endoscope, in particular, a capsule endoscope that can prevent flare without depending on trial-and-error position adjustment for the positional relation between the dome-shaped transparent cover and the illumination unit.
(50) The present disclosure achieves an effect of providing an endoscope capable of preventing flare without depending on trial-and-error position adjustment for the positional relation between a dome-shaped transparent cover and an illumination unit.