JP7066891B2 - パルスカラー撮像システムにおける超解像度及び色運動アーチファクト補正 - Google Patents
パルスカラー撮像システムにおける超解像度及び色運動アーチファクト補正 Download PDFInfo
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Description
信号対雑音比(SNR)
ダイナミックレンジ(DR)
空間解像度
可視の不自然なアーチファクトの認知
空間歪みの認知
色の忠実さ及び見栄え
(f mod 4)=0又は(f mod 4)=2の場合、それは純粋な輝度情報を含有するYフレームである。
(1) 周辺光不足環境において内視鏡と共に使用するためのデジタル撮像方法であって、
電磁放射線の波長のパルスを発するようにエミッターを作動させ、前記光不足環境内に照明をもたらすことであって、
前記パルスが、電磁スペクトルの第1の部分を含む第1の波長範囲内にある、照明をもたらすことと、
所定の間隔で前記エミッターにパルスを発生させることと、
画素配列で前記パルスからの反射電磁放射線を感知することであって、
前記画素配列が、前記エミッターの前記パルス間隔に対応する感知間隔で作動する、感知することと、
撮像されている対象物の運動を検出することと、
前記検出された運動を補うことによって、前記画素配列の解像度を上昇させることと、
複数の感知された反射電磁エネルギーをフレームへと組み合わせることによって、画像のストリームを創出することと、を含む、方法。
(2) 解像度を上昇させることが、
複数の隣接画素の発光を感知して、輝度データを集めることと、
前記輝度データを第1のアップスケールされたデータセットに双線形補間することと、
前記輝度データを第2のアップスケールされたデータセットに双三次補間することと、
前記輝度データの補間を有しないベースラインを、第3のアップスケールされたデータセットに創出することと、を含む、実施態様1に記載の方法。
(3) 前記感知処理が、ビデオストリームを形成する画像のストリーム中の隣接画像における輝度、及び輝度とクロミナンスとの線形和を感知することを含む、実施態様1に記載の方法。
(4) 回転フレームインデックスを用いて前記ビデオストリーム内のフレームにインデックスを付けることを更に含む、実施態様3に記載の方法。
(5) 前記回転フレームインデックスが、4カウントを有する、実施態様4に記載の方法。
(7) 先のインデックス付けされたフレーム及び後のインデックス付けされたフレームからの輝度及びクロミナンスのデータを組み合わせることによって、前記ビデオストリームを再構築することを更に含む、実施態様5に記載の方法。
(8) 輝度に対する1つのフレーム及びクロミナンスに対する2つのフレームを再構築することを更に含む、実施態様5に記載の方法。
(9) 上昇した解像度及び精度のために、複数の先のインデックス付けされたフレーム及び複数の後のインデックス付けされたフレームからの輝度及びクロミナンスのデータを組み合わせることによって、前記ビデオストリームを再構築することを更に含む、実施態様5に記載の方法。
(10) 前記第1のアップスケールされたデータセットが、ブロックマッチングのために使用される、実施態様2に記載の方法。
(12) 前記第3のアップスケールされたデータセットが、解像度向上データセットのための前記ベースラインを形成する、実施態様2に記載の方法。
(13) 前記画素配列によって創出されたデータを、画素及び最も近い隣接物のセグメントに分割することを更に含む、実施態様1に記載の方法。
(14) x方向における撮像されている対象物の運動を決定するために、画素の各セグメントをx方向にシフトすることと、前記同じ解像度で、隣接するフレームと比較することと、を更に含む、実施態様13に記載の方法。
(15) 画素の各セグメントを副画素インクリメント(sub-pixel increments)でx方向にシフトすることと、x方向における運動検出のより優れた精密さのために、前記第1のアップスケールされたデータセットと比較することと、を更に含む、実施態様14に記載の方法。
(17) 画素の各セグメントを副画素インクリメントでy方向にシフトすることと、y方向における運動検出のより優れた精密さのために、前記第1のアップスケールされたデータセットと比較することと、を更に含む、実施態様16に記載の方法。
(18) 前記撮像されている対象物のx運動とy運動とを組み合わせることによって、前記対象物の前記運動のベクトルを決定することを更に含む、実施態様16に記載の方法。
(19) 多数の輝度フレームからのデータを、単一のより高い解像度の輝度フレームに組み合わせるために、運動を推定することを更に含む、実施態様18に記載の方法。
(20) 前記処理が、連続した順序で輝度データを含有するフレーム毎に繰り返される、実施態様19に記載の方法。
(22) 前記処理が、連続した順序でクロミナンスデータを含有するフレーム毎に繰り返される、実施態様21に記載の方法。
(23) 電磁放射線の複数のパルスを順次発するように前記エミッターを作動させ、照明をもたらすことであって、
第1のパルスが、電磁スペクトルの一部分に過ぎない第1の範囲内にあり、
第2のパルスが、電磁スペクトルの一部分に過ぎない第2の範囲内にあり、
第3のパルスが、電磁スペクトルの一部分に過ぎない第3の範囲内にある、照明をもたらすことと、
所定の間隔で前記パルスを発生させること(pulsing said pulses)であって、
前記画素配列が、前記第1のパルスの前記パルス間隔に対応する第1の感知間隔で作動し、
前記画素配列が、前記第2のパルスの前記パルス間隔に対応する第2の感知間隔で作動し、
前記画素配列が、前記第3のパルスの前記パルス間隔に対応する第3の感知間隔で作動する、パルスを発生させることと、を更に含む、実施態様1に記載の方法。
(24) ブランキング間隔が、前記第1のパルス、第2のパルス、第3のパルスのいずれかの間隔の一部分と同時期である、実施態様23に記載の方法。
(25) 前記方法が、前記検出された運動に基づいて前記エミッターの前記パルス発生及び前記検出された運動に起因する色アーチファクトを補正することを更に含む、実施態様1に記載の方法。
(27) 前記エミッターが、発光ダイオード(LED)である、実施態様1に記載の方法。
(28) 周辺光不足環境において内視鏡と共に使用するためのデジタル撮像方法であって、
電磁放射線の波長のパルスを発するようにエミッターを作動させ、前記光不足環境内に照明をもたらすこととであって、
前記パルスが、電磁スペクトルの第1の部分を含む第1の波長範囲内にある、照明をもたらすことと、
所定の間隔で前記エミッターにパルスを発生させることと、
画素配列で前記パルスからの反射電磁放射線を感知することであって、
前記画素配列が、前記エミッターの前記パルス間隔に対応する感知間隔で作動する、感知することと、
撮像されている対象物の運動を検出することと、
前記検出された運動を補うことによって、前記画素配列の解像度を上昇させることと、
前記検出された運動に基づいて前記エミッターの前記パルス発生及び前記検出された運動に起因する色アーチファクトを補正することと、
複数の感知された反射電磁エネルギーをフレームへと組み合わせることによって、画像のストリームを創出することと、を含む、方法。
(29) 上昇させることが、
複数の隣接画素の発光を感知して、輝度データを集めることと、
前記輝度データを第1のアップスケールされたデータセットに双線形補間することと、
前記輝度データを第2のアップスケールされたデータセットに双三次補間することと、
前記輝度データの補間を有しないベースラインを、第3のアップスケールされたデータセットに創出することと、を含む、実施態様28に記載の方法。
(30) 前記第1のアップスケールされたデータセットが、ブロックマッチングのために使用される、実施態様29に記載の方法。
(32) 前記第3のアップスケールされたデータセットが、解像度向上データセットの基礎を形成する、実施態様29に記載の方法。
(33) 前記画素配列によって創出されたデータを、画素及び最も近い隣接物のセグメントに分割することを更に含む、実施態様28に記載の方法。
(34) x方向における撮像されている対象物の運動を決定するために、画素の各セグメントをx方向にシフトすることを更に含む、実施態様33に記載の方法。
(35) y方向における撮像されている対象物の運動を決定するために、画素の各セグメントをy方向にシフトすることを更に含む、実施態様34に記載の方法。
(37) 前記画像のストリームのフレーム間の画素差の前記係数を説明すること(accounting for)によって、前記撮像されている対象物の前記運動をプロットすることを更に含む、実施態様36に記載の方法。
(38) 電磁放射線の複数のパルスを順次発するように前記エミッターを作動させ、照明をもたらすことであって、
第1のパルスが、電磁スペクトルの一部分に過ぎない第1の範囲内にあり、
第2のパルスが、電磁スペクトルの一部分に過ぎない第2の範囲内にあり、
第3のパルスが、電磁スペクトルの一部分に過ぎない第3の範囲内にある、照明をもたらすことと、
所定の間隔で前記パルスを発生させることであって、
前記画素配列が、前記第1のパルスの前記パルス間隔に対応する第1の感知間隔で作動し、
前記画素配列が、前記第2のパルスの前記パルス間隔に対応する第2の感知間隔で作動し、
前記画素配列が、前記第3のパルスの前記パルス間隔に対応する第3の感知間隔で作動する、パルスを発生させることと、を更に含む、実施態様28に記載の方法。
(39) 較正間隔に光を発しないように前記エミッターを作動させることと、前記較正間隔中に前記画素配列を作動させることと、を更に含む、実施態様38に記載の方法。
(40) 前記画素配列が前記較正間隔中に光を感知した場合、更なるパルスを停止することを更に含む、実施態様38に記載の方法。
(42) ブランキング間隔が、前記第1のパルス、第2のパルス、第3のパルスのいずれかの間隔の一部分と同時期である、実施態様38に記載の方法。
(43) 前記パルスが緑の可視光スペクトル範囲のものであり、前記第2のパルスが赤の可視光スペクトルのものであり、前記第3のパルスが青の可視光スペクトルのものである、実施態様38に記載の方法。
(44) 前記パルスのうちの1つが、電磁スペクトルの非可視域からのものである、実施態様38に記載の方法。
(45) 前記センサーが、前記第1のパルス、第2のパルス、第3のパルスのうちのいずれかを均等に感知するように構築される、実施態様38に記載の方法。
(47) 前記エミッターが、レーザダイオードである、実施態様28に記載の方法。
(48) 前記エミッターが、発光ダイオード(LED)である、実施態様28に記載の方法。
Claims (13)
- 周辺光不足環境において内視鏡と共に使用するためのデジタル撮像システムの作動方法であって、
前記周辺光不足環境内に照明をもたらすようにエミッターを駆動させる工程と、
画素配列により検知された電磁放射に基づき生成された輝度(Y)フレームを取得する工程と、
前記画素配列により検知された電磁放射に基づき生成された青色差(Cb)フレームを取得する工程と、
前記画素配列により検知された電磁放射に基づき生成された赤色差(Cr)フレームを取得する工程と、
前記画素配列中の充填された画素ごとに、2つの未充填画素を付与することにより、前記輝度(Y)フレームを高解像度化させる工程と、
前記未充填画素を、高解像度化された輝度情報により充填する工程と、
前記輝度(Y)フレーム内の画素ブロックを、前記高解像度化された輝度(Y)フレーム内の画素ブロックに対してブロックマッチングすることにより、前記輝度(Y)フレーム、前記青色差(Cb)フレーム及び、前記赤色差(Cr)フレーム間の撮像対象の運動を検出する工程と、
前記運動による影響を補正した前記青色差(Cb)フレーム及び前記赤色差(Cr)フレームを提供するために、前記運動により引き起こされた、前記輝度(Y)フレームと、前記青色差(Cb)フレーム及び前記赤色差(Cr)フレームとの間の差を取り除くように、前記青色差(Cb)フレーム及び前記赤色差(Cr)フレーム内の画素ブロックをシフトする工程と、
前記運動による影響を補正した前記青色差(Cb)フレーム、前記運動による影響を補正した前記赤色差(Cr)フレーム及び、前記高解像度化された輝度(Y)フレームを、1つの画像フレームを生成するように統合する工程と、
を含み、
前記エミッターを駆動させる工程が、1フレームおきに各フレームの相対エネルギーが直接輝度情報を提供するように設定され、当該フレームと交互のフレームにおいてクロミナンス情報を提供し、当該クロミナンス情報がCbとCrとの間で切り替わる、Y-Cb-Y-Cr順序によりパルスを発生させる工程を含む、デジタル撮像システムの作動方法。 - 種々のパルスの電磁放射線を所定の順序で照明をもたらすように前記エミッターを作動させる工程を更に含む、請求項1に記載の方法。
- 前記方法が、前記検出された運動に基づいて前記エミッターのパルス発生及び前記検出された運動に起因する色アーチファクトを補正することを更に含む、請求項1に記載の方法。
- 前記エミッターが、レーザダイオードである、請求項1に記載の方法。
- 前記エミッターが、発光ダイオード(LED)である、請求項1に記載の方法。
- 周辺光不足環境において内視鏡と共に使用するためのデジタル撮像システムの作動方法であって、
光不足環境内に照明をもたらすようにエミッターを駆動させる工程と、
画素配列により検知された電磁放射に基づき生成された輝度(Y)フレームを取得する工程と、
前記画素配列により検知された電磁放射に基づき生成された青色差(Cb)フレームを取得する工程と、
前記画素配列により検知された電磁放射に基づき生成された赤色差(Cr)フレームを取得する工程と、
前記画素配列中の充填された画素ごとに、2つの未充填画素を付与することにより、前記輝度(Y)フレームを高解像度化させる工程と、
前記未充填画素を、高解像度化された輝度情報により充填する工程と、
前記輝度(Y)フレーム内の画素ブロックを、前記高解像度化された輝度(Y)フレーム内の画素ブロックに対してブロックマッチングすることにより、前記輝度(Y)フレーム、前記青色差(Cb)フレーム及び、前記赤色差(Cr)フレーム間の撮像対象の運動を検出する工程と、
前記運動による影響を補正した前記青色差(Cb)フレーム及び前記赤色差(Cr)フレームを提供するために、前記運動により引き起こされた、前記輝度(Y)フレームと、前記青色差(Cb)フレーム及び前記赤色差(Cr)フレームとの間の差を取り除くように、前記青色差(Cb)フレーム及び前記赤色差(Cr)フレーム内の画素ブロックをシフトする工程と、
前記運動による影響を補正した前記青色差(Cb)フレーム、前記運動による影響を補正した前記赤色差(Cr)フレーム及び、前記高解像度化された輝度(Y)フレームを、1つの画像フレームを生成するように統合する工程と、
前記エミッターによるパルスの発生及び前記検出された運動に起因する色アーチファクトを、前記検出された運動に基づき補正する工程と、
複数の画像フレームを統合することにより画像のストリームを生成する工程と、
を含み、
前記エミッターを駆動させる工程が、1フレームおきに各フレームの相対エネルギーが直接輝度情報を提供するように設定され、当該フレームと交互のフレームにおいてクロミナンス情報を提供し、当該クロミナンス情報がCbとCrとの間で切り替わる、Y-Cb-Y-Cr順序によりパルスを発生させる工程を含む、デジタル撮像システムの作動方法。 - 種々のパルスの電磁放射線を所定の順序で照明をもたらすように前記エミッターを作動させる工程を更に含む、請求項6に記載の方法。
- 前記種々のパルスが緑の可視光スペクトル範囲のもの、赤の可視光スペクトル範囲のもの、および、青の可視光スペクトル範囲のものを含む、請求項7に記載の方法。
- 前記種々のパルスのうちの1つが、電磁スペクトルの非可視域からのものである、請求項7に記載の方法。
- 前記画素配列が、第1のパルス、第2のパルス、第3のパルスのうちのいずれかを均等に感知するように構築される、請求項7に記載の方法。
- 前記画素配列が、前記電磁放射のいずれかのスペクトル範囲を感知するように構築される、請求項7に記載の方法。
- 前記エミッターが、レーザダイオードである、請求項6に記載の方法。
- 前記エミッターが、発光ダイオード(LED)である、請求項6に記載の方法。
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EP2967294A4 (en) | 2016-11-23 |
JP6884741B2 (ja) | 2021-06-09 |
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US20230137694A1 (en) | 2023-05-04 |
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