JP4870067B2 - 画像処理システム - Google Patents
画像処理システム Download PDFInfo
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- JP4870067B2 JP4870067B2 JP2007340318A JP2007340318A JP4870067B2 JP 4870067 B2 JP4870067 B2 JP 4870067B2 JP 2007340318 A JP2007340318 A JP 2007340318A JP 2007340318 A JP2007340318 A JP 2007340318A JP 4870067 B2 JP4870067 B2 JP 4870067B2
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- photographing
- light
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- Physics & Mathematics (AREA)
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Description
図1から図16は本発明の第1の実施形態を示したものであり、図1は画像処理システムの構成を示すブロック図である。
図17から図20は本発明の第2の実施形態を示したものであり、図17は画像処理システムの構成を示すブロック図、図18はフルモードと読み出し2倍速モードとにおける読み出しの様子を示すタイミングチャート、図19は2/4ライン2倍速モードと2/8ライン4倍速モードとにおける読み出されるラインの様子を示す図、図20は撮影モードを設定する際の動作を示すフローチャートである。
(2)読み出し2倍速モード
(3)2/4ライン2倍速モード
(4)2/8ライン4倍速モード
(5)2/16ライン8倍速モード
(6)第1の中央部走査モード
(7)第2の中央部走査モード
(8)第3の中央部走査モード
(9)第4の中央部走査モード
(10)第1の中央部高速走査モード
(11)第2の中央部高速走査モード
「フルモード」は、図18(A)に示すように、CCD8Aの全走査ラインの全画素について通常の速度で順次読み出しを行っていく通常のモードである。なお、ここでは第1LED6a、第3LED6c、第5LED6eを同時に発光させるフレームと、第2LED6b、第4LED6d、第6LED6fを同時に発光させるフレームと、により各フレームが構成されているが、このような発光により6原色画像を取り込む手段については、後の第3の実施形態で説明する。
図21から図36は本発明の第3の実施形態を示したものであり、図21は画像処理システムの構成を示すブロック図、図22は画像処理システムを使用するときの様子の一例を示す図である。この第3の実施形態において、上述の第1,第2の実施形態と同様である部分については同一の符号を付して説明を省略し、主として異なる点についてのみ説明する。
図37から図42は本発明の第4の実施形態を示したものであり、図37は画像処理システムの構成を示すブロック図である。この第4の実施形態において、上述の第1から第3の実施形態と同様である部分については同一の符号を付して説明を省略し、主として異なる点についてのみ説明する。
次に、本発明の第5の実施形態の画像処理システムについて説明する。
次に、本発明の第6の実施形態である画像処理システムについて、図45〜図48を用いて説明する。
次に、本発明の第7の実施形態の画像処理システムについて、図49〜図52を用いて説明する。
次に、本発明の第8の実施形態である画像処理システムについて、図53,図54を用いて説明する。
次に、本発明の第9の実施形態である画像処理システムについて、図55,図56を用いて説明する。
次に、本発明の第10の実施形態である画像処理システムについて、図57〜図59を用いて説明する。
次に、本発明の第11の実施形態である画像処理システムについて、図60,図61を用いて説明する。
次に、本発明の第12の実施形態である画像処理システムについて、図62のブロック構成図を用いて説明する。
次に、本発明の第13の実施形態である画像処理システムについて、図63のブロック構成図を用いて説明する。
次に、本発明の第14の実施形態である画像処理システムについて、図64のブロック構成を用いて説明する。
次に、本発明の第15の実施形態である画像処理システムについて、図65のシステム構成図を用いて説明する。
さらに、ユーザの操作により、データベース117に対して検索要求が出される。データベースからの検索結果が受信され、モニタ111に表示される。
次に、本発明の第16の実施形態である画像処理システムについて、図66の上記画像処理システムに適用される画像撮影部の構成を示す図を用いて説明する。
次に、本発明の第17の実施形態である画像処理システムについて、図67の上記画像処理システムに適用される撮影装置のブロック構成図を用いて説明する。
次に、本発明の第18の実施形態である画像処理システムについて、図68の上記システムによる診察状態を示す図を用いて説明する。
次に、本発明の第19の実施形態である画像処理システムについて、図69の上記システムによる診察状態を示す図を用いて説明する。
…撮影装置(画像撮影部)
2A,2B,2C,2D,2E,2H,2J,2K
…処理部(画像処理部)
6X…LED群(照明光源)
7 …撮影光学系
8 …CCD(撮像素子部)
14 …操作スイッチ(撮影操作部)
41,46
…スペクトル検出センサ
(照明検出センサ)
65…ストロボ発光装置(外部照明部)
75,81,82
…第1の偏光板(反射光除去手段)
76,83,84
…第2の偏光板(反射光除去手段)
88 …シェーディング補正レンズ
(照明むら軽減光学部材)
90 …接続端子部(接続接点部)
92 …照明装置(外部照明装置)
101…色標
121…携帯電話(携帯端末装置)
127…LED照明ユニット
(ユニット化された照明光源)
141…測距センサ(測距手段)
151…位置検出コイル
(被写体部位検出手段)
Claims (3)
- マルチスペクトルに対応するそれぞれ異なる分光分布特性を有する複数の照明光源と、
被写体を撮影するための撮像光学系と、上記被写体からの被写体信号を取得するための撮像素子部と、画像撮影操作を行うための撮影操作部と、を有し、上記複数の照明光源を上記撮像素子部の露光タイミングと連動し、かつ、上記複数の照明光源を選択的に点灯させることにより複数の被写体分光画像を得る画像撮影部と、
上記画像撮影部で撮影された上記被写体分光画像を記憶するための画像メモリ部を有し、上記画像メモリ部に記憶された被写体分光画像から所望の画像演算を行う画像処理部と、
を備え、
上記画像撮影部は、さらに、測距手段と、上記被写体の画像を表示するモニタと、を有しており、前回撮影した画像データから所望の撮影距離情報を取得し、上記測距手段により測定された実撮影距離の情報と上記所望の撮影距離情報とから倍率補正係数を算出し、上記倍率補正係数に基づいて、実際に撮影された画像の倍率が補正された状態の画像を上記モニタに表示することを特徴とする画像処理システム。 - 上記複数の照明光源は、上記画像撮影部に設けられたものであることを特徴とする請求項1に記載の画像処理システム。
- 上記複数の照明光源は、外部照明部に設けられたものであり、
上記画像撮影部は、上記外部照明部と連動するための接続接点部をさらに有することを特徴とする請求項1または2に記載の画像処理システム。
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EP2433555A2 (en) | 2012-03-28 |
US20080192235A1 (en) | 2008-08-14 |
JP4937971B2 (ja) | 2012-05-23 |
KR100714349B1 (ko) | 2007-05-04 |
US7876955B2 (en) | 2011-01-25 |
KR100722897B1 (ko) | 2007-05-31 |
EP1528380A4 (en) | 2009-12-09 |
CN101332080A (zh) | 2008-12-31 |
CN101259010A (zh) | 2008-09-10 |
KR20060111906A (ko) | 2006-10-30 |
US7756327B2 (en) | 2010-07-13 |
CN101259010B (zh) | 2010-08-25 |
EP1528380A1 (en) | 2005-05-04 |
JP2008304466A (ja) | 2008-12-18 |
KR20050026009A (ko) | 2005-03-14 |
US20060152586A1 (en) | 2006-07-13 |
CN1672021A (zh) | 2005-09-21 |
JP2008292495A (ja) | 2008-12-04 |
JP2008170437A (ja) | 2008-07-24 |
AU2003252254A1 (en) | 2004-05-04 |
WO2004036162A1 (ja) | 2004-04-29 |
JP2008165806A (ja) | 2008-07-17 |
EP2433555A3 (en) | 2013-01-16 |
US20090067695A1 (en) | 2009-03-12 |
JPWO2004036162A1 (ja) | 2006-02-16 |
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