TW200533317A - Circulatory organ function measuring device and circulatory organ function measuring method - Google Patents

Circulatory organ function measuring device and circulatory organ function measuring method Download PDF

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TW200533317A
TW200533317A TW094105584A TW94105584A TW200533317A TW 200533317 A TW200533317 A TW 200533317A TW 094105584 A TW094105584 A TW 094105584A TW 94105584 A TW94105584 A TW 94105584A TW 200533317 A TW200533317 A TW 200533317A
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pressure
function
blood pressure
blood
value
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TW094105584A
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TWI289051B (en
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Daisuke Morikawa
Akihiro Michimori
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Matsushita Electric Works Ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/02007Evaluating blood vessel condition, e.g. elasticity, compliance
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/021Measuring pressure in heart or blood vessels
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/021Measuring pressure in heart or blood vessels
    • A61B5/02108Measuring pressure in heart or blood vessels from analysis of pulse wave characteristics

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Cardiology (AREA)
  • Engineering & Computer Science (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Physiology (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Vascular Medicine (AREA)
  • Biomedical Technology (AREA)
  • Physics & Mathematics (AREA)
  • Medical Informatics (AREA)
  • Molecular Biology (AREA)
  • Surgery (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)

Abstract

This invention provides a circulatory organ function measuring device and a circulatory organ function measuring method capable of precisely measuring the function of circulatory organs such as arteriosclerosis. This invention extracts W1 and W2 from an envelope curve as characteristic values, wherein, W1 is the difference (width) between a compressing pressure p1 (corresponding to an amplitude r1 of a pulse) and a boundary value pα on a high pressure side compressing pressure region P1 of an envelope curve, and W2 is the difference (width) between a pressure p2 (corresponding to an amplitude r2 different from the above amplitude r1) and the above boundary value pα on a low pressure side compressing pressure region P2.

Description

•200533317 ί 九、發明說明: 【發明所屬之技術領域】 6本發明係關於-種彳鱗器、官魏測定裝置及循環器官功 疋方法,基於得自生物體之脈波而分析生物體狀態。 、 【先前技術】 生物體因心臟之節奏性將血液壓出產生動脈中之壓力變 i脈搏)。向來已知者有利用該脈搏所生之振動(脈波)的變化(特徼 置)檢查動脈硬化等之循環器官功能狀態的技術。 、 已知之一種該技術為變化施加於脈波的檢測處所之外壓時, =利用脈波振幅值之變化取出無脈硬化度有關的脈波 ^里’以檢鶴脈硬化之進餘況者(參考例如下述之專利文獻 杜—下述之專利文獻1揭示如下技術。亦即,將壓迫壓力升壓至 目標壓迫壓力後,於使·碰力慢慢賴的過程逐次檢 振幅’導出歷迫麼力與脈波振幅之關係。該屢追壓力盥脈 ,振幅之_ ’在Μ迫壓力與平均血壓仙略時^ 大之包絡線。並揭示,如第42圖,於該 墨值之點與振幅值為最大振幅值 ^ 動脈硬化度’及如第43圖’依振幅值為最大振幅皮 差(寬鳩大振幅值H之比,決定被測定者之動= 【專利文獻1】專利第2938238號公報 【發明内容】 ’尤以動脈硬化之測 然而,習知技術被認為,循環器官功能 定精度有提升的空間。 b 亦即 -般脈波包含有__官魏之麵資訊,例如表 4 .200533317 :血官狀恶、心臟狀態之資訊。以血管為例 =變動之過程中著眼於血管之容積變化時,如第1G /,一5 化率大大i;、:此:=ί=^ 於内膜及中膜之特性,上述壓力大 之伸展陳取決 決於=的ff;隨作用於血管之壓力“伸展取 _脈硬化之_方法中,例如血1巾 iti卜=異常_轉,難猶麵壓力即可彳種性 本發明係鑑於如此實情而作,其目的在提以一 循環器官功能之測定的循環器官功裝ΐ 以及循%裔官功能測定方法。 衣罝 Μ法問題之枯翁手科 果置目白=2=第1機構有關之循環器官功能測定 衣置具備,壓迫被測定者身體之特定部位的壓 献力,魏域壓力施滅構之壓迫 之壓,力’變化細力之過程=== ί f 1部位之脈波大小的脈波資訊之脈波檢測機構,使檢測ΐΐ 月氏波貝雄其檢測時之壓迫壓力有關的壓 而 之脈波資訊記憶機構,將基於3,在卜、二2貞膽應而咖 波資訊與上述_資訊之對應關係==隐 成多數區域,同時將上述包絡線全體視為1區 出表不上述⑽狀概的概量之魏量 = •200533317 機 =出之各特心進行贿器官功能欺之循官功能判定 切ί此之循環器官功能測定裝置及循環器官功能測定方半ra t、將基=波資訊與上述壓迫壓力資訊之對編 特的特徵量,基於取出之各 為始的循環ϋ官功能測定。 仃场脈硬化 【實施方式】 <第1實施形態> 本貫施形態之循環器官功能測定方法中,首先, 橡壓迫帶1以捲繞狀態裝著於被測定者之;如 ΐϊ =ίΤ 給空氣’漸漸壓迫上腕部(上腕動脈)。 ,丄巧知1内之下稱壓迫壓力)達高於被測定者的預 估取,血壓之特定壓力值時,進行壓迫壓力之微速減壓。 、 曰、第2圖係,壓迫上腕動脈之壓迫壓力的變化圖,橫軸係自以 壓迫帶1加壓開始起之經過時間,縱軸係壓迫壓力。第2圖之 =201表示,驗壓力達上雜定壓力值赠壓迫壓力之&化’, 第2圖之波形202表示,微速減壓時壓迫壓力之變化。 如此進行壓迫帶1之微速減壓,如第2圖,於壓迫壓力之微 速減壓過程中產生脈波203。自對應於波形2〇2之壓力信號檢測出 該脈波203之振幅值。第3圖係,微速減壓過程中逐次檢測出之 每一心跳的脈波振幅值隨壓迫壓力之變化的時間序列變化圖,如 -200533317 第3圖,隨壓迫帶i内壓力之變化,檢測出之脈波振幅值亦起變 化,描繪出表示脈波振幅值之特徵變化的山形包絡線。 —第4圖係,壓迫上腕動脈之壓迫帶1的微速減壓過程中得之 1-心跳的脈波最大振幅值的時間顧(亦即隨壓迫壓力排 ί Γ純她収权最高域及最低血壓之壓迫 ϊ !ί ί 定速率減壓時得之壓力信號取出脈波振幅 列隨壓迫壓力之壓力值)排列,即得如第4圖之山形 振幅值隨壓迫壓力之變化而變化。該包絡線206 壓迫形狀)因反映隨 :尤可呈示動脈硬化二:兄 脈硬化為主的循環器官魏。 化之特如’應可測定以動 例如,第5圖(a)示健康者之一例,第^ 力變化時血管之容積變化比第5圖因 為有動脈硬化之進展或被測定者年齡大。^,Hi小’被認 (最高血麼低之狀態(例如100 t 2 =)不低血a 管壁之柔軟性及内壓所致之隨外管柔軟(亦含血 f線的-例,第5圖⑷示被認為心臟之包 r—re)示被認為高顺^ 各取出特徵量,利用這些多數力^堡迫壓力之範圍) 器官功能測定,即可高精度歡。以下仃=脈硬化為主的循環 量:_本實施形態的循環器官功能=== 4 •200533317 本實施形態中,以脈波振幅值為最大之壓迫壓力為邊界 分割出對應於該邊界值的高壓側的壓迫壓力帶(下稱高壓側壓 2 m之區域’及對應於低壓側_迫勤帶(下稱低麼側屋 ίίί 域’於__n、P2各得_定循環 亦即,第6圖係以,於包絡線之高獅道迫勤帶ρι區域, 達某脈波振幅值rl之壓迫壓力pl與邊界值ρα之差 =’,健_迫動帶Ρ2巾,達不上舰幅值d之振幅 的Ϊ迫壓力P2與上述邊界值⑽之差(寬)W2作為特徵 夏取出之圖。 订 第7圖係以,於包絡線之高壓侧壓迫壓力• 200533317 ί IX. Description of the invention: [Technical field to which the invention belongs] 6 The present invention relates to a kind of scales, official Wei measuring device and circulatory organ function method, based on analyzing the state of the organism based on the pulse wave obtained from the organism . [Previous technology] The organism presses the blood out of the heart due to the rhythm of the heart to produce pressure in the arteries (i pulse). It has been known that there is a technique for inspecting the functional state of a circulatory organ such as arteriosclerosis using a change (special feature) of vibration (pulse wave) generated by the pulse. One of the known techniques is to change the external pressure applied to the detection place of the pulse wave, and use the change of the pulse wave amplitude value to take out the pulse wave related to the degree of non-pulsation sclerosis ^ 'to check the advancement of crane pulse sclerosis. (Refer to, for example, the following patent document Du—the following patent document 1 discloses the following technique. That is, after increasing the compression pressure to the target compression pressure, the amplitude is successively checked in the process of gradually making the impact force weaker, and the history is derived. The relationship between the force and the pulse wave amplitude. The repeated pursuit of the pressure pulse, the amplitude of _ 'envelope when the pressure of M and the average blood pressure are slightly larger ^ and revealed that, as shown in Figure 42, in the ink value The point and amplitude values are the maximum amplitude values ^ degree of arteriosclerosis 'and as shown in Fig. 43' the ratio of the maximum amplitude skin difference (the ratio of the wide amplitude to the large amplitude value H according to the amplitude value determines the movement of the subject = [Patent Document 1] Patent No. 2938238 [Summary of the Invention] 'Especially for the measurement of arteriosclerosis. However, the conventional technology is considered to have room for improvement in the accuracy of circulatory organ function. B That is, the general pulse wave contains __ 官 魏 面面 信息, For example, Table 4.200533317: blood-like nausea and heart Information on the state. Taking blood vessels as an example = when the volume of the blood vessels is changed during the change process, such as 1G /, the rate of change is greatly i;,: this: = ί = ^ in the characteristics of the intima and the media, The stretch of the above pressure depends on the ff of =; with the pressure acting on the blood vessels, the "stretching_vein sclerosis method", such as blood 1 towel iti = abnormal_turn, it is difficult to face the pressure can breed The present invention has been made in view of such a fact, and its purpose is to provide a measure of the function of the circulatory organs and a method of measuring the function of the official organs based on the measurement of the function of the circulatory organs. = The circulatory organ function measurement device related to the first mechanism is equipped with a compression force that compresses a specific part of the body of the person being measured, the pressure of Wei Yu exerts the pressure of extinction, and the process of the force 'changes the fine force === ί f The pulse wave information detection mechanism of the pulse wave information of 1 part of the pulse wave is a pulse wave information memory mechanism that detects the pressure related to the pressure of the pressure during the detection. Correspondence between chastity and cabo information and the above _ information == hidden into a majority area At the same time, the entire envelope is regarded as the first area to express the probabilities of the above-mentioned probabilities. • 200533317 machine = each of the special minds to perform the function of bribery organ function and judge the official function. The organ function measuring device and the circulatory organ function measuring square half ra t, the characteristic value of the pairing of the basic wave information and the above compression pressure information is based on the circulatory eunuch function measurement based on the extracted ones. [Embodiment] < First Embodiment > In the circulatory organ function measurement method according to the present embodiment, first, the rubber compression belt 1 is mounted on the subject in a rolled state; for example, the air is gradually compressed. The upper wrist (upper carpal artery). It is known that the compression pressure inside and below 1 is higher than the subject's estimate. When the blood pressure reaches a specific pressure value, the pressure is slightly decompressed. Fig. 2 is a graph showing changes in the pressure of compression of the upper carotid artery. The horizontal axis is the elapsed time since the pressure was applied by the compression band 1. The vertical axis is the pressure of compression. = 201 in the second figure indicates that the test pressure is up to the value of the miscellaneous pressure, and the waveform 202 shows the change in the pressure when the pressure is slightly reduced. In this way, the micro-speed decompression of the compression zone 1 is performed. As shown in FIG. 2, a pulse wave 203 is generated during the micro-speed decompression of the compression pressure. The amplitude value of the pulse wave 203 is detected from the pressure signal corresponding to the waveform 202. Figure 3 is a time-series change of the pulse wave amplitude value of each heartbeat detected during the micro-speed decompression process with the change of compression pressure, such as -200533317. Figure 3, with the change of the pressure in the compression zone i, the detection The pulse wave amplitude value also changes, and a mountain-shaped envelope showing the characteristic change of the pulse wave amplitude value is drawn. —Figure 4 shows the time of the maximum amplitude value of the pulse wave of 1-heart beat obtained during the micro-speed decompression of the compression zone 1 of the upper carotid artery (that is, the highest range and the lowest range of her right to receive pressure.) The pressure of the blood pressure is reduced! Ί ί The pressure signal obtained when the pressure is reduced at a constant rate is taken out and the pulse wave amplitude sequence is arranged according to the pressure value of the compression pressure), that is, the mountain-shaped amplitude value as shown in Figure 4 changes with the compression pressure. The envelope 206 compression shape) can reflect the following: In particular, it can show arteriosclerosis II: circulatory organs mainly based on sclerosis. For example, Figure 5 (a) shows an example of a healthy person. The change in the volume of the blood vessel when the force changes is greater than that in Figure 5 because the arteriosclerosis progresses or the subject is older. ^, Hi Xiao 'is recognized (the highest blood state is low (for example, 100 t 2 =) is not low blood a. The softness of the tube wall and the internal pressure are caused by the softness of the outer tube (also containing blood f-line-example, Fig. 5 shows what is considered to be the heart's package r-re) shows that it is considered to be a high-sequence ^ each takes out the feature quantity, and uses these majority forces (range of pressure) to measure the function of the organ, and it can be highly accurate. The following 仃 = the circulation volume mainly based on pulse sclerosis: _ Circulatory organ function of this embodiment === 4 • 200533317 In this embodiment, the compression pressure corresponding to the maximum pulse wave amplitude value is used as a boundary to divide the corresponding to the boundary value. The compression pressure zone on the high-pressure side (hereinafter referred to as the area with a high-pressure side pressure of 2 m ') and the corresponding low-pressure side _ forced service zone (hereinafter referred to as the low-modulus side house ίίί 域) are set at __n and P2 respectively. Figure 6 shows that the difference between the pressure pressure pl reaching the pulse amplitude value rl and the boundary value ρα in the high lion-path forced-duty zone ρ of the envelope line = ', the Jian_forced zone P2 can not reach the ship The difference (width) W2 between the pressing pressure P2 of the amplitude of the amplitude d and the above-mentioned boundary value 作为 is taken as a feature map. The seventh figure is based on the pressing pressure on the high-pressure side of the envelope.

f ’壓,力達P3之點的傾制,及低壓側壓迫H &或中’脈波振幅值達r4 r3),墨迫壓力達ρ4之點的傾 斜Θ2作為特徵量取出之圖。 、 第8圖係以,於包絡線之高壓側壓迫屢力帶ρι區 波振幅值r5、r6之壓迫壓力的、ηβ的厭七兰< '、 迫勤帶P2區域巾,i”,及低壓側壓 以祕白2 ▽ ί 述振幅值1'5、r6之振幅值r7、 笛p之壓力差ΐ2作為特徵量取出之圖。 弟6〜8圖中,與各特徵量W1、W2、0卜e2、tl、t2 _之 脈波振幅值ιΉ係於最A振陳r 各乘 之g 該比率係事先⑽計導ώ。 木/㈣羊之值, 分割以測定循環器官功能之特徵量,將包絡線 壓力^理由^ L界值’係設定為脈波振幅值達最大之壓迫 則Λ管壁有來自金液之壓力(内壓〕及外壓(壓迫壓 夕f壓之力與平均血壓約略一致時,施加於血管 t狀以此4 ’血管之順服(血管壁對於脈搏之 大、、: 因對於一定脈壓血管之容積變化量為最大,脈波振幅值為最大 •200533317 因此,如第9圖,脈波振幅值為最大之壓迫壓力鱼 約略-致。又’於第9圖之包絡線’平均血壓左側之^域係,= 迫壓力大於平均血叙區域,平均域右側之區域係,壓迫 小於平均血壓之區域。 至H力 第10圖係隨壓力差(平均血壓—屋迫壓力)血管之 的容積變化圖,橫軸係血管内外壓力差,縱軸係血管之容^雜 如第10圖’以壓力差為0之點,亦即作用於血管壁之人貝 Ιΐΐ之麼力(内遷)及外壓(壓迫壓力)之合力)的方向“化i 點為界,血官之容積變化特性大大不同。 因此,以脈波振幅值為最大之壓迫壓力,亦即平 界將包,線分縣錄區域,自各區域取出特徵量,即可2其 隨作用於該血管壁之力(合力)的方向_出。因此,^ =====線全趙1特徵量者’動脈硬化之進展 脈硬化為主的循環器官功能測定。 Q = a X X +b X Y-f c · · ·⑴ 而a b、c係常數,係基於統計設定之值。 餘施开右貫行如上之循環器官功能測定方法的 貝糾=有關之循環器官功能測定裝置⑽的構造。 如第1圖,本實施形態之循環器官功能測定且右懕 二定=腕部之物,===裝^ i ’以調整往被測定者之上婉部雜迫壓 麵迫帶1繼‘======4 200533317 上輸出、。脈波檢測部4具有例如特定之濾波電路,由例 測部3之壓力信號去除直流成分等,特定頻率成 ifr 由生成之脈波信號取出脈波之振幅。 船5 ’職司循環器官功能測定裝置100全體之動作,係由 ^田2控^盾環器官功能測定裝置100之動作的控制程f 'pressure, the pressure at the point of reaching P3, and the pressure at the low pressure side H & or the mid-pulse amplitude reaches r4 (r4 r3), and the point of inclination Θ2 at the point where the ink pressure reaches ρ4 is taken as the feature quantity. Fig. 8 shows the pressure bands of the zonal wave amplitudes r5 and r6 on the high-pressure side of the envelope line, and the ηβ qiqilan < ', the pressure band P2 area towel, i ", and The low-pressure side pressure is taken as the characteristic value with the amplitude value 1'5, the amplitude value r7 of r6, and the pressure difference ΐ2 of the flute p as the characteristic quantities. The figures in Figures 6 to 8 correspond to the characteristic quantities W1, W2, and The pulse wave amplitude values of e2, tl, and t2 _ are based on the g of each A multiplied by r. This ratio is calculated in advance. The value of wood / ㈣ 羊, divided to determine the characteristic amount of circulatory organ function Envelope pressure ^ Reason ^ The "L boundary value" is set to the pressure at which the amplitude of the pulse wave reaches the maximum. Then the wall has pressure (internal pressure) and external pressure (pressure and pressure from the pressure and average pressure) When the blood pressure is approximately the same, it is applied to the blood vessel in the shape of the 4 'blood vessel (the blood vessel wall has a large pulse, because the volume change of the blood vessel is the largest for a certain pulse pressure, and the pulse wave amplitude value is the largest. 200533317 Therefore, As shown in Fig. 9, the pressure value of the pulse wave amplitude is about the same. The average blood pressure is 'on the envelope of Fig. 9'. The ^ field system, = the pressure is greater than the average blood region, the area to the right of the average field is the region where the pressure is less than the average blood pressure. Figure 10 to H force is the volume of the blood vessel with the pressure difference (average blood pressure-house pressure). The change diagram, the pressure difference between the internal and external blood vessels of the horizontal axis, and the volume of the blood vessels of the vertical axis are as shown in Figure 10. The point at which the pressure difference is 0, that is, the force (inward migration) of the person who acts on the blood vessel wall and The direction of the external pressure (the resultant force of the compression pressure) "turns the point i as the boundary, and the volume change characteristics of blood officials are greatly different. Therefore, the compression pressure with the maximum amplitude of the pulse wave, that is, the flat boundary will be covered, and the line is divided into counties Recording area, take out the characteristic quantity from each area, that is, 2 it will follow the direction of the force (the resultant force) acting on the wall of the blood vessel. Therefore, ^ ===== Xianquan Zhao 1 characteristic quantity is the progression of arteriosclerosis Measurement of circulatory organ function based on sclerosis. Q = a XX + b X Yf c · · · ab The ab and c system constants are based on statistically set values. Yu Shikai performed the circulatory organ function measurement method as described above. Beijing = The structure of the related circulatory organ function measuring device. Figure 1: Measurement of the function of the circulatory organs in this embodiment and the right 懕 two set = the thing on the wrist, = = = equipment ^ i 'to adjust the pressure on the subject's heterogeneous pressure surface 1 =' ==== 4 200533317. The pulse wave detection unit 4 has, for example, a specific filter circuit. The DC signal is removed from the pressure signal of the test unit 3, and the specific frequency becomes ifr. The amplitude of the pulse wave is taken out from the generated pulse wave signal. The operation of the vessel 5 'functional circulatory organ function measuring device 100 is controlled by ^ 2 2 ^ shield ring organ function measuring device 100

Ln Γ t盾環器官功能狀態之判定程式的丽(Read 0nlyLn Γ t Determination of the functional status of the shield ring organ (Read 0nly

Ac: Μ θ 式執行中、執行後所生之資料的麵(Random (T / ι=〇ΙΤ)及將控制程式等自職讀取而執行之CPU (Central processing Unit)等構成。 控制述之以動脈硬化為主的循環器官功能測定, 52,牿科旦^山f有脈波檢測時壓力算出部5卜脈波資料記憶部 能判定。S力帶導出部53 ’特徵量取出部54及循環器官功 4以力;?出部5卜使自壓力檢測部3及脈波檢測部 橫軸為週白$出之壓迫壓力與脈波振幅值對應,換言之產生,於 脈波最大iHi縱軸為脈波振幅值之2維座標系將每一心跳的 / 值、、會圖而成的如第4圖之山形包絡線2〇6。 迫壓乂及52,將脈波檢測時壓力算出部51所對應之壓 及脈波聽仙絲形式(上述包絡線)記憶。 取出53:5事先,之程式,設定用以 r〇 、$ 力"r。本貫施形態中,特徵量取出壓力 設定节以達脈波最大振幅值rmaX之壓迫壓力為邊界值, 壓迫勤糾及低賴壓迫壓力帶P2(參 之夂取出’以特徵量取出壓力帶導出部53設定 1,口t 2) 的上述特徵量(W1,W2)、(W,⑼或(t 细胞ΪΪ:功能,部55記憶有:對基於例如動脈硬化、内皮 、1血塵、末梢血管收縮等關於循環器官功能之狀 -200533317 於取出之特徵餘查得线計資科,對應 »c«^2r*r s 吕功能。循環H官魏判 ^ 判定被測定者之循環器 基於統計資料得之動脈硬化产盘fit t就動脈硬化,利用呈示 料,導出對應於由取出H= Q之關係的表格資 形悲之循裱器官功能測定裝 4心。末貝村本貝施 官功能判定部55導出之動晰麻外#、構成為,例如表示由循環器 器官功能顯示部6。第η ^呈一 ϋΐ()()α值可顯示於循環 定為「65」。 固不,某被測定者之動脈硬化度經测 第^如上,構成之循環器官魏測定裝置1GG的動作。 圖。圖係,王不循壞器官功能測定裝置100的動作之一例的流程 邻Jii2圖’首先投入電源,圖未示之啟動開關的按下經控制 ί ί:則於步驟sti,壓力控制部2隨來自控制部5之控制 信唬供給空氣於壓迫帶丨内,進行對於上腕部之壓迫動作。 、、其次,於步驟ST2,壓力檢測部3檢測出壓迫帶i之壓力已 上述特定壓力,例如高於被測定者之預估最高血壓之特定壓力, 則隨來自控制部5之控制信號由壓力控制部2開始壓迫帶丨之微 速減壓。 ' 其-人,於步驟ST3 ’壓力檢測部3將對應於波形2〇2(參照第2 圖)之壓力彳§ *5虎往脈波檢測部4輸出,脈波檢測部4如第3圖,自 邊壓力k號檢測出脈波’由所得之脈波檢測出該脈波之振幅值。 其次,於步驟ST4,脈波檢測時壓力算出部51,使自壓力檢 12 •200533317 ‘測部3及脈驗奉μ則枝㈣之壓迫 對應猶資制t㈣,將由脈_刚力算^ ΐΐίΐί ΐ=振幅值Γ表格形式記憶。換言之,以橫軸為ί 反力,以縱軸為脈波振幅值於2維座桿季將| 、、 跳的脈波最大振幅蝴,產生如第4圖之山形包以:: 。,次、,於步驟ST5,特徵量取出壓力帶導出部53依 ’ί;、毐的最大振幅值Γ頭之壓迫壓力為邊界值 g比该邊界值南壓側之壓迫勤帶ρι及較低壓側之壓迫^力帶 ^欠’於步驟ST6,特徵量取出部Ac: The surface of the data (Random (T / ι = 〇ΙΤ)) generated during and after the execution of Μ θ type, and the CPU (Central processing Unit) that reads and executes control programs and other tasks. Circulatory organ function measurement mainly based on arteriosclerosis, 52, Ke Kedan, Shan F, pulse pressure detection section 5 pulse wave data memory section can determine. S force band derivation section 53 'feature amount extraction section 54 and The work of the circulatory organ 4 uses force; the output part 5 makes the horizontal axis of the self-pressure detection part 3 and the pulse wave detection part be Zhou Bai. The output pressure corresponds to the pulse wave amplitude value, in other words, it is generated on the vertical axis of the maximum pulse wave iHi The two-dimensional coordinate system of the pulse wave amplitude value is obtained by plotting the value of each heartbeat, such as the mountain-shaped envelope 206 shown in Fig. 4. The pressure calculation unit 52 is pressed, and the pressure calculation unit at the time of pulse wave detection is pressed. The corresponding pressure of 51 and the pulse wave listening to the silk form (the above envelope) memory. Take out the 53: 5 program in advance and set it to r0, $ force " r. In this embodiment, the characteristic value is taken out of the pressure The setting section takes the compression pressure of the maximum amplitude rmaX of the pulse wave as the boundary value, and the compression pressure and low pressure compression pressure Band P2 (refer to “Retrieve from the reference”, take out the pressure band derivation unit 53 with a characteristic amount setting 1, port t 2), the above-mentioned characteristic amounts (W1, W2), (W, ⑼, or (t-cell ΪΪ: function, the unit 55 memorizes) : For the symptoms of circulatory organ function based on, for example, arteriosclerosis, endothelium, 1 blood dust, peripheral vasoconstriction, etc. -200533317 After taking out the characteristics, check the line finance department, corresponding to the function of "c« ^ 2r * rs Lu. Circulation H Guan Wei Judgment ^ Determine the subject's circulator to determine the arteriosclerosis of the arteriosclerosis plate based on the statistical data, and use the presentation materials to derive a table corresponding to the relationship between H = Q and the organ function The measurement device is equipped with 4 hearts. Momoki Mabei ## derived by Mobemura Benbei official function determination unit 55 is composed of, for example, a circulator organ function display unit 6. The η ^^ is a value of () () α Can be displayed in the circulation as "65". No, the arteriosclerosis degree of a subject is measured as described above, and the operation of the circulatory organ Wei measurement device 1GG is constructed. Figure. The flow of an example of the operation of the device 100. The pressing of the start switch (not shown) is controlled. At step sti, the pressure control unit 2 supplies air into the compression zone with the control signal from the control unit 5 to perform the compression action on the upper wrist. Next, in step ST2, the pressure detection unit 3 detects that the pressure of the compression zone i has the above-mentioned specific pressure, for example, it is higher than the specific pressure of the subject's estimated highest blood pressure, and then the pressure control unit 5 sends the control signal from the control unit 5 2 Start the deceleration of the compression belt 丨 at a slight speed. _ Its person, at step ST3 'The pressure detection section 3 will output a pressure corresponding to the waveform 202 (see Fig. 2) 彳 § * 5 Tiger outputs to the pulse wave detection section 4 As shown in FIG. 3, the pulse wave detection unit 4 detects a pulse wave from the side pressure k 'and detects the amplitude value of the pulse wave from the obtained pulse wave. Next, in step ST4, the pressure calculation section 51 during pulse wave detection makes the self-pressure check 12 • 200533317 'The measurement section 3 and the pulse test μ μ, the pressure of the branch corresponds to the capital system t㈣, which will be calculated by the pulse _ stiffness ^ ΐΐίΐί ΐ = Amplitude value Γ Formal memory. In other words, with the horizontal axis as the reaction force and the vertical axis as the pulse amplitude value in the 2-dimensional seatpost season, the maximum amplitude of the pulse pulse that jumps |, is generated as shown in Figure 4 with a mountain-shaped package ::. Next, in step ST5, the characteristic-quantity-extracting pressure band derivation unit 53 uses the maximum amplitude value of the head 依 according to the maximum pressure value Γ as the boundary pressure g. The boundary pressure g is lower than the boundary pressure southward pressure band ρι and lower. The pressure side pressure band ^ ows on the pressure side is in step ST6, and the feature quantity extracting section

值相關之循環器官功能狀態作為判定結果。 。貝取與4Q 將展ίί 於步驟T,壓力控制部2隨來自控制部5之控制信於 者之空氣快速排氣’麗迫壓力受到減壓,對於被;‘ 55,將於步驟’,循環器官功能判定部 功能態,定結果資料輸出至循環器官 定結果_吐述^位化^脈循環器官功能狀態之判 線分值為最大之壓迫壓力為邊界值,將包絡 的循環器官功能測定。而,本發明脈 麼造動,不限於脈波振幅值為最大之塵迫2為邊界值权疋之The value-related circulatory organ function status is used as the judgment result. . Beitou and 4Q will be exhibited in step T. The pressure control section 2 quickly exhausts the air from the control believer of the control section 5. The pressure of the pressure is reduced, and for the quilt; '55, will be in step ', the circulatory organ The function status of the function determination unit is output to the definite result data of the circulatory organ. The scoring value of the function state of the circulatory organ is determined by the maximum compression pressure as a boundary value, and the circulatory organ function of the envelope is measured. However, the pulse motion of the present invention is not limited to the dust pressure with the maximum pulse wave amplitude value 2 as the boundary value weight.

進行導出!:J定值Q,基於該判定值Q 定,而自各壓迫^力帶^卜精度進行循環器官功能測 土騎ρι,各予取出之特徵量的比較,亦可進 13 •200533317 行關於^環器官功能之診斷。 例如f卜特2 ί各壓迫壓力帶π、p2各予取出之特徵量,得 體血管有硬膜及中膜有硬化•老化之進展’或全 何-組織有,即可進行症狀之進展程度、血管之 振幅幅值之9嶋2麵動之差與最大 插錄鄕Γ、關於血^之硬度而亦受被測定者之肌肉厚度等 ,圖ί二iC硬化度之啦精度有限,而本實施形態的第6 1特徵量將上述寬W、W2用作測定循環11官功能之 山it?知技術以更佳精度進行循環器官功能測定。 續之徵量之另一取出形態亦可係,例如第13圖,將包絡 同於上述及包絡線之全區域的中,達不 及ii包iilfr量r出。此時’上述高壓側壓迫壓力帶ρι區域 區域」。、、Ό線之王區域,即相當於申請專利範圍第1項之「至少2 | 〈第2實施形態&gt; 維之之循環器官功能測定裝置刚,除上述第1實施形 i推定以外’更搭載有基於檢測出之脈波振幅Derived !: J fixed value Q, based on the determination value Q fixed, and the circulatory organ function test soil riding ρ from the accuracy of each pressure ^ pressure band ^, comparison of the feature quantities can be taken, can also be entered in 13 • 200533317 line About the diagnosis of ring organ function. For example, f 2 is the characteristic amount of each compression pressure band π, p 2 is taken out, the body blood vessel has dura mater and the middle membrane has sclerosis and aging progress' or all Ho-tissue has, you can carry out the progress of symptoms, The difference between the 9 嶋 2 surface motion of the blood vessel amplitude and the maximum insertion 鄕 Γ, the hardness of the blood ^ and also the thickness of the subject's muscle, etc. The accuracy of the degree of sclerosis of iC is limited, and this implementation The 61st feature quantity of the form uses the above-mentioned widths W and W2 as the measuring technique for measuring the function of the 11th cycle of the cycle. The known technique performs circulatory organ function measurement with better accuracy. Another form of taking out the continuous levy can also be, for example, in Figure 13, the envelope is the same as the above and the entire area of the envelope line, which can not reach the amount of iilfr. At this time, "the above-mentioned high pressure side compresses the pressure zone ρ region". The area of the king of Ό and Ό is the equivalent of "at least 2 | <Second embodiment> of the patent application scope" of the circulatory organ function measuring device, except for the above-mentioned first embodiment. Equipped with detected pulse wave amplitude

===其它部5與ί1實施形態約二僅S 測定f置100的媒、生圖f用以况明罘2實施形態之循環器官功能 同符ί。 構k之塊圖。與第1實施形態同之構造附有相 脈波算出r部56,係位於控制部5内,由表示記憶於 息己fe指之壓边壓力與脈波振幅值之關係的上述包絡線 14 •200533317 二出表尚血塵、隶低血屢及平均血塵。血管 _中,例如在脈波振幅值急it時第 為平均叙壓,將壓返壓力 線H的壓迫壓力 遽變小時(第6圖之匕減严過財,例如脈波振幅值急 血屢直顯干;^ P俚頌不口p 7顯不由血壓算出部邡算 血壓、农低血壓及平均血壓)。塵 口血壓值(取同 循環器官功能顯示部6之顯针m員不。”亦可由如同上述 15圖構成之循環器官功能測定裝置⑽的動作。第 _厭枯盾衣态Β功能測定裝置100之動作的一例之产裎F!。 =;=$=形態_之_心=定處理 值之測定處^免重複相同之說明,該流程圖中僅呈示血壓 3利如^^步驟咖.4因與上述第1實施形態之步驟 311〜ST4約略相同,其說明省略。 〜 π 56基於呈示記憶在脈波資料記憶部 法曾出,古^、脈产振幅值之關係的上述包絡線,經上述算出方 法异出取尚血壓、最低血壓及平均血壓。 刀 制二ΠΓ16 ’隨來自控制部5之控制信號藉由壓力控 皮:二^壓口迫帶出1減壓而解除被測定者上腕 伯沾次…4於步驟ST 7,王不由血壓算出部56算出之血壓 ^貝料扯壓值顯示部7輸出,各血壓值顯示於血壓值顯示部 經以上之構成,可以實現不僅循環器官功能之測定,並 血壓之測定的循環器官功能測定裝製。 而ί貫施形態可將最高血壓、最低血壓及平均血壓之全部血 堅予以算出(推定),但不限於此,血壓算出部56算出(推定) 血壓、最低血壓及平均血壓之至少其一即可。 &lt;第3實施形態&gt; 15 .200533317 圖之構造)峰有呈示血壓算出部 56异出之血齡的貢料係構成為輸 53之不^,諸點與第2實施形態狀力π _ 本貫施形悲中,以由血壓算出部5β管夂一 係乂由血出邛56异出之各血壓值(最高血壓、最低血 均域)用作,割包絡線之邊界值而得特徵量之例示圖-。 苐17圖王示將包絡線分割為高於最高 =、巧血壓與最高血壓之間的壓迫壓力帶P4之區 的「㈣壓力帶P5輯、及赌最低血壓之壓迫壓 域的4壓迫壓力帶區域,於各壓迫壓力帶p3〜p6,取出 達不同脈波振幅值之壓迫動與邊界值差(寬) _亦即,赠波振驗達⑴之魏壓力血壓&lt;pl2&lt; 血壓)與平均血壓之差(寬)W5,脈波振幅值達r12之壓迫壓 1 P1,低血壓&lt;P13〈平均血壓)與平均血壓之差(寬)W6,脈波振 達r13之壓迫壓力?14(014&gt;最高血壓)與最高血壓之差 ^)W7,以及脈波振幅值達rl4之廢迫塵力pl5(pl5〈最低血壓) 與取,血壓之差(寬)W8為特徵量判定循環器官功能。 。、第18圖呈示,將包絡線分割為高於最高血壓之壓迫壓力帶p7 區域、平均血壓與最高血壓之間的壓迫壓力帶p8區域、平均血壓 以下之壓迫壓力帶P9區域等3壓迫壓力帶區域,於各歷迫壓力帶 P7〜P9 ’取出達不同脈波振幅值之壓迫壓力盥 (寬)W9 〜W11。 〃 旧&amp;亦即,以脈波振幅值達rl5之壓迫壓力pl6(平均血壓&lt;pl6&lt; 最鬲血壓)與平均血壓之差(寬)W9,脈波振幅值達rl6之壓迫壓 力Pl7(pl7〈平均血壓)與平均血壓之差(寬)wl〇,以及脈波振幅值 達rl7之壓迫壓力pl8(pl8&gt;最高血壓)與最高血壓之差(寬)wn 為特徵量判定循環器官功能。 •200533317 第19圖呈示,將包絡線分割為高於最高血壓之壓迫壓力帶 PlOg區域、最高血壓與最低血壓之間的壓迫壓力帶Ρ1ι區域、及低 於,低血壓之壓迫壓力帶P12等3壓迫壓力帶區域,於各壓迫壓 力τΡΙΟ〜P12 ’取出相同脈波振幅值之2壓迫壓力間差(寬)们2或 達不同脈波振幅值之壓迫壓力與邊界值之差(寬)W13、W14。 ^亦即’以脈波振幅值達rl8之2壓迫壓力pl8、pl9(最低血 壓=pl9&lt; pl8〈最高血壓)間之差(寬)W12,脈波振幅值達 rl9之壓 迫壓力p20 (P20&gt;最高血壓)與最高血壓之差(寬)W13,以及脈波 振^幅值達r20之壓迫壓力p21 (p21〈最低血壓)與最低血壓之差 (覓)W14為特徵量判定循環器官功能。 該第19圖者,壓迫壓力與平均血壓約略一致時,施加於血管 土ί平,内外壓之壓力差(平均血壓-壓迫壓力)約略為〇,對於 -疋脈,的血管容積變化量,以至於脈波振幅值為最大已如前 敘’而該壓力差為〇時血管順服度之轉應亦制以掌握動脈硬 ^進展狀況之—手段。而壓力差為G時之血管順服度係,以第10 回之曲線中壓力差為Q之點C的傾斜0 (血管之容積變化)時血管 順服,作為1茶婁丈診察時,為得反映該傾斜Θ之特徵量,如第I9 圖’仔達同-脈波振幅值的,較近於平均血壓之前後2壓迫慶力 Cpl8 、 pl9)。 如上 A a絡綠之分割數比第1實施形態多,即可作比第!實=== The other parts 5 and 1 are about the same as the second embodiment. Only the medium for measuring S is set to 100, and the map f is used to explain the function of the circulatory organs in the second embodiment. Construct a block diagram of k. The same structure as the first embodiment is provided with a phase pulse wave calculation r section 56 which is located in the control section 5 and is composed of the above-mentioned envelope 14 indicating the relationship between the pressure holding pressure and the pulse wave amplitude value memorized in the finger. 200533317 The second appearance is still blood dust, low blood pressure and average blood dust. In the blood vessel _, for example, when the pulse wave amplitude value is suddenly it is the average narrative pressure, and the compression pressure of the pressure return pressure line H is reduced to a small value. Straight show dry; ^ P 俚 chanting p 7 shows that blood pressure, agricultural hypotension and average blood pressure are not calculated by the blood pressure calculation unit). Dust mouth blood pressure value (take the same as that of the circulatory organ function display section 6). The operation of the circulatory organ function measuring device ⑽ as shown in the above 15 figure can also be performed. An example of this action is to produce F !. =; = $ = morphology_ 之 _ 心 = Measured value of the fixed processing value ^ Do not repeat the same description, the flowchart only shows the blood pressure 3 is as good as ^^ step coffee. 4 Because it is approximately the same as steps 311 to ST4 of the first embodiment, the description is omitted. ~ Π 56 Based on the above envelope curve showing the relationship between the ancient and pulse amplitudes, which has been published in the pulse wave data memory method, The above calculation method differs from the prevailing blood pressure, the minimum blood pressure, and the average blood pressure. Sword system II Γ16 'With the control signal from the control unit 5, the skin is controlled by pressure with two control points: two pressure points are forced to bring out 1 decompression to release the subject's upper wrist. Bo Zanci ... 4 In step ST7, the blood pressure calculated by the blood pressure calculation unit 56 is not output by the pressure value display unit 7. The blood pressure values are displayed on the blood pressure value display unit. The above structure can realize not only the function of the circulatory organs. And measurement of blood pressure Organ function measurement system. The drowth application form can calculate (estimate) all the blood pressures of the highest blood pressure, minimum blood pressure, and average blood pressure, but is not limited to this. The blood pressure calculation unit 56 calculates (estimated) blood pressure, minimum blood pressure, and average. At least one of the blood pressure may be sufficient. &Lt; Third embodiment &gt; 15.200533317 Structure of the graph) The tribute system showing the blood age of the blood pressure calculated by the blood pressure calculation unit 56 is constituted to lose 53. The points and the In the second embodiment, the shape force π _ in the present embodiment, the blood pressure values (the highest blood pressure and the lowest blood mean range) of the blood pressure calculated by the blood pressure calculation unit 5β tube (a series of blood pressure) and 56 blood pressure (the highest blood pressure, the lowest blood mean range) are used to cut An illustration of the characteristic quantity obtained from the boundary value of the envelope-Figure 苐 17 shows the division of the envelope into a region of the pressure band P4 that is higher than the highest pressure, the blood pressure, and the highest blood pressure. , And the 4 compression pressure zone area of the compression pressure zone of the minimum blood pressure, in each compression pressure zone p3 ~ p6, take out the compression movement and boundary value difference (wide) with different pulse wave amplitude values _ That is, the gift wave vibration test The pressure of the blood pressure of Da Li Wei &lt; pl2 &lt; blood pressure) and the mean blood pressure (W) W5, the compression pressure of pulse wave amplitude value r12 1 P1, the difference between low blood pressure &lt; P13 (average blood pressure) and average blood pressure (width) W6, the compression pressure of pulse wave vibration r13? 14 (014 &gt; highest The difference between blood pressure) and the highest blood pressure ^) W7, and the waste pressure force pl5 (pl5 <minimum blood pressure) with a pulse wave amplitude value of rl4 and the difference between the blood pressure (width) W8 is used to determine the function of the circulatory organs. Figure 18 shows that the envelope is divided into 3 compression pressure band regions, such as the compression pressure band p7 region higher than the highest blood pressure, the compression pressure band p8 region between the average blood pressure and the highest blood pressure, and the compression pressure band P9 region below the average blood pressure. In each of the historical pressure bands P7 ~ P9 ', take out the compression pressure washers (wide) W9 ~ W11 which have different pulse wave amplitude values. 〃 The old & that is, the compression pressure pl6 (average blood pressure &lt; pl6 &lt; the maximum blood pressure) with the pulse wave amplitude value rl5 and the difference (width) W9, the pulse pressure amplitude rl6 pressure pressure Pl7 ( The difference (width) w10 between pl7 (average blood pressure) and average blood pressure, and the compression pressure pl8 (pl8 &gt; highest blood pressure) between the pulse wave amplitude value rl7 and the difference (wide) wn of the highest blood pressure are characteristic quantities to determine the function of the circulatory organs. • 200533317 Figure 19 shows the envelope is divided into the compression pressure zone P10g above the highest blood pressure, the compression pressure zone P1m between the highest blood pressure and the lowest blood pressure, and the compression pressure zone P12 below the low blood pressure. 3 In the compression pressure zone, at each compression pressure τPiIO ~ P12 ', take out the difference (width) between the two compression pressures of the same pulse wave amplitude value 2 or the difference (width) between the compression pressure and the boundary value that reach different pulse wave amplitude values W13, W14. ^ That is, the difference (width) W12 between the compression pressure pl8, pl9 (lowest blood pressure = pl9 &lt; pl8 (highest blood pressure)) with a pulse wave amplitude value of rl8 (p20) (P20 &gt; The difference (wide) W13 between the highest blood pressure) and the highest blood pressure, and the compression pressure p21 (p21 (minimum blood pressure)) between the pulse wave amplitude and r20 (minimum blood pressure) and the difference (minimum) W14 are the characteristic quantities to determine the function of the circulatory organs. In the figure 19, when the compression pressure is about the same as the average blood pressure, the pressure applied to the blood vessel is flat, and the pressure difference between the internal pressure and the external pressure (average blood pressure-compression pressure) is about 0. For the -iliac vein, the change in blood vessel volume is As for the maximum pulse wave amplitude, as described above, and when the pressure difference is 0, the conversion of vascular compliance should also be controlled to grasp the progress of arterial stiffness. The vascular obedience degree when the pressure difference is G is the vascular obedience when the inclination of the point C of the pressure difference Q in the curve of the tenth time is 0 (the change in the volume of the blood vessel), and it is reflected when the diagnosis is 1 The characteristic amount of the inclination Θ, as shown in Fig. I9 'Zai Da Tong-Pulse Wave Amplitude Value, is closer to the average blood pressure before and after 2 oppressing Qingli Cpl8, pl9). As above, the number of divisions of A green is more than that of the first embodiment. real

Hi 之ΐ環11官功能測^ °尤以為將血管堵塞須有皺 屈應力取決於血管硬度等血管特性,以 巴:f於比取兩血麗高壓之壓迫廢力帶P3、P7及P10 差為正之區域,亦即細力低二= 壓力區域取出特徵量亦有效。 懕中,以由血慶算出部56算出之各血塵值(最高血 =血壓及平均血壓)用作分割包絡線之邊界值,故=較 •200533317 f +七々ί出之特敏量不限於如上之寬奶〜W14 ’亦可係包狄線上各 點的傾:、達脈波振幅值不同之2振幅值的2 ^壓ί 及用下述定為邊界值之血壓,可係最高血壓、最低血壓 用卜迷异式异出之平均血壓中的至少其一。 &lt;第4實施形態&gt; 血壓白 係將設定為邊界值之最高血壓、最低 土自匕、、、口線檢測出,而本實施形態中,最高血壓及 能約,環器官功能測定裝置⑽具有與第3實施形 ;述&quot;JUi&quot;(第16圖之構造),血壓算出部56則係用例如 卜述式(2)异出平均血壓。 壓=(最高如壓—最低域)/3 +最低錢••⑵ 上述异式(2)係由統計導出之習知算式。 一 化者如算ί出平均血麼之理由如下。尤以高齡者、動脈硬 附近之丄二為Ζ 一疋,循裱态官功能測定結果有產生變異之虞。 之施敛以算式導出之平均血壓(第22圖 疋千句血壓)设定為攻界值,於同一人可得約略一定之 H,結果,達某振幅值之壓迫壓力與其邊界值 差 =、,約略一定。因此,即使達脈波之最大振幅= ,屋力^奴,仍可得約略安定之特徵量,可作適於高 脈硬化者之循環器官功能判定。 w &lt;第5實施形態&gt; 上述第1實施形態中,係自分割的各壓迫壓力帶ρι、p2 出1特徵量,而本實施形態則係自各麼迫塵力帶取出多數特徵量。 ⑧ 18 .200533317 W18 以邊界值高壓側之壓迫壓力帶1&quot;1區域的寬…7、 W19、呢〇取出’以邊界值低壓側之壓迫壓力帶P2區域的寬 第24圖寺徵量取出。 作為特徵量^&quot;屮以邊界值高壓側之壓迫塵力帶P1區域的寬W21 W22〜W24作為特邊界值低壓側之壓迫壓力帶P2區域的寬 特徵量(W17, W18, W19,圖或(W21,W22, W23, 為ϋΐί^3)之(W1,W2,w3,w4)導出之則,作以動脈硬 化马主的循被器官功能之測定。 Q a x Wl + b X W2 + C X W3 +d X W4 + e 而 · · · (3) c d、e為常數’係基於統計設定之值。 p/ do自多數之壓迫壓力帶P1、P2中之至少其一壓迫壓力帶 ^環哭官二出多數特徵量,即可以比第1實施形態更高精度進 多數之 1 witt 1定。在此θ係自各壓迫壓力帶P1、P2區域取出 # ^ 作為特徵量,而特徵量之種類,除此以外亦可 不絡線上各區域之某點的傾斜,如第8圖之脈波 取二。振幅值之2壓迫壓力的壓力差,亦可自各區域 % &lt;第6實施形態〉 上述第1〜5實施形態中,係自分割的各壓 ,之特徵量(寬、傾斜及麵Μρ,ρ= 貫施开趟職自不關祕力帶取出不_之特^力差)而本 %同弟H示壓迫壓力帶取出不同特徵量之一例,如第 力:P2 力帶P1區域取出寬W25 ’自低壓側壓迫壓 力TP2Q域取出邊界線與健侧之包絡線所圍之區域的面積幻。 ^此,亦可南精度進行猶環器官功能測定。、The function of Hi's ring 11 is ^ °. It is particularly necessary to block the blood vessel. Wrinkle stress depends on the blood vessel characteristics such as blood vessel hardness. The bar: f is worse than the pressure waste force bands P3, P7, and P10 of the two blood pressure high pressure. The area that is positive, that is, the second low of the fine force = the pressure area is also effective to extract the feature amount. In the middle, each blood dust value (highest blood = blood pressure and average blood pressure) calculated by the blood celebration calculation unit 56 is used as the boundary value of the dividing envelope, so the specific sensitivity amount is less than that of • 200533317 f + 七 々 ί It is limited to the wide milk as above ~ W14 'It can also be the inclination of each point on the Baodi line: 2, 2 ^ pressure of 2 amplitude values with different pulse wave amplitude values, and the blood pressure set as the boundary value below can be the highest blood pressure For the minimum blood pressure, at least one of the average blood pressures of the heterozygous puerperal dysplasia is used. &lt; Fourth embodiment &gt; The blood pressure white system detects the highest blood pressure, the lowest soil pressure, and the mouth line which are set as the boundary values. In this embodiment, the highest blood pressure and energy, and a device for measuring the function of a ring organ are detected. It has the structure described in the third embodiment (JUi) (the structure of FIG. 16), and the blood pressure calculation unit 56 uses the formula (2) to extract the average blood pressure, for example. Pressure = (highest pressure—lowest domain) / 3 + lowest money •• ⑵ The above-mentioned abnormal formula (2) is a known formula derived from statistics. The reason for the average person to calculate the average blood is as follows. Especially in the elderly, the second one near the hard arteries is Z1, and there may be variations in the results of the measurement of the official function of the mounted state. The mean blood pressure derived from the formula is calculated as the cutoff value of the blood pressure (Figure 22: Thousands of blood pressure). The same person can get a certain H. As a result, the difference between the pressure pressure at a certain amplitude value and its boundary value =, It's almost certain. Therefore, even if the maximum amplitude of the pulse wave is equal to, the force is still stable, which can be used to determine the function of the circulatory organs suitable for those with high pulse sclerosis. w &lt; Fifth embodiment &gt; In the above-mentioned first embodiment, one characteristic quantity is obtained from each of the divided pressure pressure bands p1 and p2, while the present embodiment extracts a large number of characteristic quantities from each of the pressure dust zones. ⑧ 18 .200533317 W18 The width of the compression pressure zone 1 on the high pressure side of the boundary value &quot; 1 ... 7, W19, and 〇Remove ′. The width of the pressure pressure zone P2 on the low pressure side of the boundary value. As the characteristic quantity, & W21 W22 ~ W24 with the pressure dust band P1 area on the high pressure side of the boundary value as the wide characteristic quantity (W17, W18, W19, figure or (W21, W22, W23, ϋΐί ^ 3) is derived from (W1, W2, w3, w4), and is used to measure the function of the arteries of arteriosclerosis horses. Q ax Wl + b X W2 + CX W3 + d X W4 + e and (3) cd and e are constants' values based on statistics. p / do from at least one of the pressure bands P1 and P2. Two feature numbers can be obtained with a higher accuracy than the first embodiment. Witt 1 can be determined. Here, θ is taken as the feature value from the areas of the compression pressure bands P1 and P2, and the type of feature value is divided by In addition, the inclination of a certain point in each area on the line is not necessary. For example, the pulse wave in Fig. 8 is taken as 2. The pressure difference between the amplitude and the compression pressure of 2 can also be obtained from each area% &lt; In the fifth embodiment, the characteristic quantities (width, slope, and surface Mρ, ρ =) of the pressures from the segmentation are taken from the secret belt _ 之 特 ^ the difference in force) and the %% sibling H shows an example of taking out different characteristic quantities of the compression pressure band, such as the first force: P2, the width of the P1 region is taken wide W25 'from the low pressure compression pressure TP2Q domain to take the boundary line and the healthy side The area of the area enclosed by the envelope is illusory. ^ This can also be used to determine the organ function of the ring.

不限於如前敘之寬與面積之組合,ί 可係包絡線之傾斜與寬之組合、該傾斜與 I 19 200533317 ίί: 域時之寬、面積與傾斜之組合,要者為,取出 ;第?;r壓力帶之特徵量即可。 性別、身高、㈣以外’更搭载有輸入被測定者之年齡、 定特徵量i“方ί 性及隨該輸入之身體特性設 相同,紐就不同=說力ς。第而2其6它==與第1實施形態約略 100 7 &gt; 1實施形態之循環 力^^裝置⑽除第 8,及特徵量取出方法設力衣置100外,具有個人資訊輸入告 Am i .Λ . n丨〜卫#山乃:疋邵57。 體重 部57 ;ΐί=入,係用以輸入被測定者之年齡、性別、身高 ,性’輸入之身體特性則輪出至特徵量取出= 5内,隨經個人資if 出方法包含邊界值之特徵量取出方法。特徵量卑 可基於統計資料設ί 量麵的設定方法, 之包絡線,採用例如第4麻:::;12如弟2〇、21圖多呈示歪由 徵量取出壓力帶導出部53It 特徵量取出方法。特 其次說明,如上構成多數壓迫壓力帶。 如第27圖,於步驟卿,由乂次^作的一例之流程圖。 =步驟助,特徵量取出方法^部8^人身體特性, &amp;之特徵量取出方法。而於步驟ϋ人之身體特性選擇恰 ST1〜ST4約略相同之處理。 d ST26,進行與上述步驟 其次,於步驟ST27,特徵餘_力料料53依事先設定 20 •200533317 之程式,設定用以算出特 其次,於步驟ST28,特=旦夕數壓迫壓力帶。 出部53設定之壓迫壓力帶54自特徵量取出壓力帶導 特徵置取出方法檢測出特徵旦里取出方法設定部57選擇之 驟ST7〜ST9約略相同之處^里。於步驟ST29〜ST31,進行與上述步 如此,因以輪入被测定 體特彳政選擇特徵量取出方法 =特彳政之功能,及隨輸入之身Not limited to the combination of width and area as described above, ί can be the combination of the slope and the width of the envelope, the slope and I 19 200533317 ί: the combination of the width, area, and slope of the domain time, if necessary, take out; ?; The characteristic quantity of r pressure band is sufficient. "Sex, height, and other than" are equipped with the input of the age of the person being measured, a certain characteristic amount ", and the same physical characteristics as the input, the new button is different = say force. Second and 6 it = = Approximately 100 7 to the first embodiment &gt; Circulating force of the first embodiment ^^ The device has a personal information input Am i .Λ except for the eighth and feature quantity extraction method, which is set to 100.卫 # 山 乃: 疋 邵 57. Weight part 57; ΐί = input, which is used to enter the age, sex, height of the person being measured, and the physical characteristics of sexual input are rounded out to the feature amount taken out = 5, within the passage The method of extracting personal data includes the method of extracting the feature value of the boundary value. The feature quantity can be set based on the statistical data. The envelope curve is, for example, the 4th hemp :::; 12 as the figure 20, 21 The method for extracting the characteristic quantity of the 53It is obtained by the levy extraction pressure band derivation unit. The second explanation is that the above constitutes most compression pressure bands. As shown in FIG. Assistance, Method of Extracting Feature Amounts, Part 8 ^ Personal Characteristics, &amp; Feature Amount Removal Method. In step ϋ, the physical characteristics of the person are selected to be approximately the same as ST1 to ST4. D ST26, followed by the above steps, and in step ST27, the feature surplus_force material 53 is set according to the preset 20 • 200533317 formula. It is used to calculate the special, and then in step ST28, the special pressure band is pressed by the number of days. The compression pressure band 54 set by the output unit 53 extracts the pressure band from the feature quantity and guides the feature setting extraction method to detect the feature. Steps ST7 to ST9 are approximately the same. In steps ST29 to ST31, the steps are the same as above. Because the feature of the measured object is selected by the rotation method, the method of extracting the feature value = the function of the special policy, and the input body.

100,依選擇之特徵量取二y合载於循環器官功能測定裝置 者之身體特徵_環器官功特徵量,可進行適合於被測定 而尤以高齡者,從上腕部52L 脈波及於上腕部測量脈波時管異常時,於手腕測量 此亦可不限於上述身體特 狀或有較大抑,有鑑於 徵量取財法,轉適合歸部位耗奴恰當之特 又,身體特性之輸入形熊二^皮叫里。卩位之特徵量取出方法。 以外,亦可於猶環器官功能g 定輪入身體特性之形態100, according to the selected characteristic quantity, take two y and combine it with the physical characteristics of the circulatory organ function measuring device_circle organ function characteristic quantity, which can be suitable for the measurement, especially for the elderly, from the upper wrist 52L pulse wave to the upper wrist When measuring the pulse wave when the tube is abnormal, measuring it on the wrist may not be limited to the above-mentioned physical characteristics or there is a large suppression. In view of the law of collecting money, it is suitable to return to the proper position to consume slaves. Two ^ Pi called Li. How to take out the characteristic value of the niches. In addition, it can also be used in the form of physical characteristics in the function of the organ.

(identificatiQn)記憶有被$ 胜對應於ID 功能之際取代身體特性改將ID^身體特性,在測定循環器官 &lt;第8實施形態&gt; 多係ΞϋΓΐ丄多係僅最高血麼高而最低血堡正常,而主· ^係僅取低血麼高或最高血屬」i正吊’而年幼者 為這些症狀所特有。因此 夂二^之任-’包絡線即 $迫屋力帶區域取出之特徵]量^^界,設定方法、自 荨),應係適合該症狀者。14(讀之免、傾斜或面積 销:置⑽應係可更正 症狀,胁各症推賴败麵於何種 槿本貧施形態為其實現,除上述第1實施形能之槿! 出=以外,更搭載有:基於被測定者之各血塵;4擇二, 出方法之舰,域麟之碰絲財 21 •200533317 二特2=::的功能。而其它部分因與第1實施 如第28 ®置^的構造之方塊圖。 1實施形態之循if哭二之循%盗官功能測定裝置100除第 顯示血壓:V二:;==各血壓值, 值,設二隨if算出部56算出之血壓 57’從血壓算出部56推定1夂^二’.寺徵量取出方法設定部 ”低域正常,僅最者係僅最高血壓高 =態,設定適於該推定血壓狀===低血壓都高等 57’設定之特徵量方法設定部 力帶。 出特徵量之多數壓迫壓 29 1〇〇 ° f 如第29圖,步驟ST4t=〇= 乍的:例之流程圖。 ST1〜ST4約略相同,其說明省略。”上述第1實施形態之步驟 而步驟ST45中,血壓算出部^ 血壓值,於步驟ST46,特徵量取7出方、於包絡線推定被測定者之 56推定之血壓值設定恰當之特衩旦/设定部57’隨血壓算出部 量取出壓力帶導出部53依特徵里|出方法。於步驟ST47,特徵 徵量取出方法’設定用以算出 出方法設定部57,設定之特 然後步驟ST48〜ST50進行盥多數壓迫壓力帶。 理’於步驟ST5W盾環器官功能顯^驟ST6~sT8約略相同之處 部55所作循環器官功能狀態之判6顯示循環器官功能判定 示由血壓算出部56推定之^壓值°果,同時血壓值顯示部7顯 22 •200533317 能之測定。方法取出特欲置’故可更詳細進行循環器官功 &lt;第9實施形態&gt; 本實施形態之循環器官功能測 圖之構造)以外,更搭載有自包 iiA及校正該推定之血壓值的功能。 ^月第相同,僅就不同點作說明。第3G圖係用m =====定/置竭構造之: 之血y出部56及血壓值顯示部7 ’以及推卜;有二弟4圖 最低==同第2實施形態,自包絡線推定最: 正。進行血堡算出部56所推定的血壓值之校 特有之包轉,對應各錄财之包絡線,例如高血墨 之包絡線、其中的内膜及中膜異常 如第5圖(a)〜(e))^右吊么包線及健康者之包絡線(其一例係 ϋΐΠΙΓ示推定血馳正部58校正後之血屢值。 31 H#循产二/^成之循環器官功能测定裝置1〇〇的動作。第 =i測定裝置⑽之動作的—例之流程圖。 ST1〜ST4約略相同省^6。4因與上述第1實施形態之步驟 而步驟ST65中’特徵量取出壓力帶導出部53依事先設定之 23 200533317 56工自包絡里之多數屡迫壓力帶,同時血壓算出部 其次,於步驟ST66,特徵量取出邱 出部53設定之壓迫壓力帶各取出=5量54於特被躁出壓力帶導 其次,於步驟ST67,推定血壓校正邱5 校正表格,校正血壓_卩讀之校正式或 迫解除。然後,於步驟ST69=而^定^上腕部之壓 於官功能之判定結果資料輪; Γ L P56所推疋之血壓值的資料作為血壓值顯干。 』=i包絡線推定之血壓值,利用對應於^i犬之 又式或杈正表格杈正,較之一律以同一推定方法 種症狀者之血壓可以高精度進行血壓紅較。 有種 (1)〜ίιΤ明不限於上述實施形態’可以採用以下變化形態 者之實施形態呈示’壓迫帶1之壓力達高於被測定 ίΐΓί㈣壓的特定壓力後,壓迫帶1之微速減壓過程中, ίίίΐ 形態,但不限於此,例如壓迫帶1之壓力從低於 估最低血壓的特定壓力以微速加壓之過程中,檢測 ϋΐ,造亦可。第32圖示,將壓迫帶1之屢力微速加壓檢 測脈波日守壓迫帶1之壓力的時間變化之一例。 (2) 彳欢測脈波之處所不限於上腕部,亦可係手腕等其它部 位。又亦可不用壓迫帶1之壓力信號,例如利用以設置在壓迫帶' 内之光電感測器得之脈波信號檢測同樣之特徵量,不受限於脈 信號之取得機構。 ' (3) 上述第1實施形態係,基於以式(1)算出之值(^的大小將 被測定者之動脈硬化度以Μ00之數值表示,使該數值顯示於循 24 •200533317 環器官功能顯示部6 ’但不限於此,為動脈硬化之進展狀況的一目 了然’將該1〜100分割為1〜20、21〜40、41〜60、61〜80、81^100 之5階,如第33圖,於循環器官功能顯示部6,以於縱向5等分 之長條圖顯示被測定者之動脈硬化度的階層亦可。而第33圖呈 示,某被測定者之動脈硬化度為5階中之階層3。 又,不限於如第33圖之長條圖,於循環器官功能顯示部6, 例如第34圖,並列於縱向配置例如5個點亮部(例如LED),將被 測定者之動脈硬化度階層僅點亮對應於該階層之數的點亮部亦 〇 小限於此,例如第35圖,胂傲凋疋有之動脈硬化度,从斜狀 動脈硬化度階層之文字、記號,例如字母A〜E表示,於循 環為g功旎顯示部6將被測定者之動脈硬化度階層以對應於咳 層之字母顯示亦可。 〜、口 又,如第36圖,隨動脈硬化度之階層設置顯示不同顏色之點 党部(例如LED) ’將被測定者之動脈硬化度階層以其顯示色表示亦 =要者為’ _脈硬化度之狀態,變化表示雜態之顯 亦可。 心 ㈣ΐ ’ Ϊ 36圖中係將動脈硬化度分為4階,隨動脈硬化度之進 ΐ白使互不姻之色光發_多數發光部,以例如紅色、黃 =f色及綠色4種LED對應’呈示動脈硬化度進展至4之 日,φϋ而使LED不發光之形態亦用以表示1祕硬化度,則動 脈硬化度之階層數增加,戋階屏數 又則動 於降低成本。 抓層數已决伙減少LED之個數有利 隨該階段資以匕循ί: 段中之何-階段的階段資料輸出, Α ^力_^部6之顯示形態即可。 功能判1官魏狀態㈣—例,循環器官 判定基準值(平均Ϊ年;&quot;Hf!料㈣性奴之魏器官功能 如弟37圖,於循裱器官功能顯示部6設顯 25 •200533317 等之顯示部,及顯示動脈硬化度之顯示部,顯示例 ^功能判定結果,及隨年齡及性別等設定之彳盾俨51 — 功能判定基準值(平均值)的差使之-目了然亦可。第 ’離表示基準值(平均) ί齡:^^^淨離表示基顿平均^=下= 脈二;:s定 硬^^換异為有該動脈硬化度之健康者的年齡(相=動^ •:下目齡及實際年齡使彼等能予比較亦可。例如:當 年齡亦即’糾目當年齡料γ,欺值為x,訂式⑷算出相當 Y-aX + b · · · (4) 料中’Γb係常數,以由得自無疾病之多數健唐· 38°圖^為ΐ射判,X以例如前救之判定值Q代入即佳了而第 表示相當年齡則判定為阳歲, •脈硬化度之主要因子。又,是細::又,力:齡亦係動 度因與生活習慣病因子之保有數具有相關關係子循=巧脈硬化 定部55從動脈硬化度推定生活習慣病因子^ 功能判 保有數顯示於循環器官功能顯示部6 亦即該推定之 有南血廢症狀時,因保有「吸煙」、「年齡45歲2^50歲, 3因子,因子保有數為「3」。 」及兩血壓」 又,如此顯示因子保有數之形態以外,如 慣病之發生可能性(危險性、風險)以例如5階2駐將生活習 |白屬顯不亦可。 26 200533317 • 圖呈示’某被測定者的生活編之發生可能性係5階中 而,如前敘加齡亦係主要的動脈硬化度之因 ^貫病,生時’就去除加齡之影響的動脈 二= irii響從統計導出即可,設置輸人被測定者之年 衣置,去除經该輸入裝置輸入之被測定者的年齡 獻 的影響,並顯示生活習慣病之危險性即佳。 7 、- 口令 前敘於if迫墨力帶取出各特徵量’而如 ^管壁之伸展性取決 _ 迫勤小之狀態)下血管壁之伸展取 决於外膑之特性★作用於血管之塵 徵隱軸靖_各== 盔你H〇圖壬不’基於自高壓側之壓迫壓力帶(血管内外壓力# 出,硬化度,及=二 之動脈硬仆碎吕 L力差為同壓側)區域取出之特徵量導出 示者,第40^’口 -以:Π之階層(階層數愈大動脈硬化愈進展)顯 中膜的頌化3 = 了 ’某被測定者高壓侧之硬化度(主要係内膜及 如第ίι圖取iti顯示高壓側·低壓側之硬化度的形態’改以例 易言之,产π Γ之^卜膜•中膜及内膜的症狀以階層計顯示亦可。 出^皮洌定定部55基於被測定者之動脈硬化度推算 外膜•中膜組織狀態即可。例如第41圖呈示,將 惡化)之形*。第41 以3階之階層顯示(階層數愈大症狀愈 階中之p比二t圖例内膜係3階中之階層3,中膜係3 白运,卜膜係3階中之階層〇,外膜沒有問題,至中膜為 27 •200533317 止已有動脈硬化之進展。 如此將動脈硬化度於高壓側之壓迫壓力帶及低壓側之壓迫壓 力帶各予導出而顯示,將血f之症狀分外膜•中膜及内 判定何-壓迫壓力帶有_,或何―血管組織有財,診斷即變(identificatiQn) The memory has been replaced by the ID function corresponding to the ID function, and the ID has been replaced with the ID ^ body characteristic. In the measurement of the circulatory organs &lt; Embodiment 8 &gt; This is normal, and the Lord only takes low blood or high blood. "I am hanging" and young people are unique to these symptoms. Therefore, the enveloping line of any two-'s, that is, the feature taken out of the area of the forced house force zone, the amount of the boundary, the setting method, and the netting, should be suitable for the symptoms. 14 (Reading exemption, tilting, or area pin: the placement should be able to correct the symptoms, depending on what kind of hibiscus is used to achieve the failure, except for the hibiscus of form 1 above! 出 = In addition, it is equipped with: the blood dust based on the person being measured; 4 alternatives, the ship of the method, Yulin's touch silk money 21 • 200533317 2 special 2 = ::. The other parts are implemented because of the first Such as the block diagram of the structure of the 28th set. 1 The implementation of the following if the second crying the% pirate function measurement device 100 divided by the first display blood pressure: V two:; == each blood pressure value, value, set two with if The blood pressure 57 'calculated by the calculation unit 56 is estimated from the blood pressure calculation unit 56 to 1 夂 ^ 2'. The temple sign extraction method setting unit "low region is normal, only the most is only the highest blood pressure high = state, and the setting is suitable for the estimated blood pressure condition. === Low blood pressure and high 57 'set the characteristic amount method to set the force band. Most of the characteristic amount of compression pressure 29 100 ° f. As shown in Figure 29, step ST4t = 〇 = first example flow chart. ST1 to ST4 are approximately the same, and descriptions thereof are omitted. "In the step of the first embodiment described above and step ST45, the blood pressure calculation unit ^ blood pressure value, in step In step ST46, the characteristic amount is taken to the 7th side, and the estimated blood pressure value of the subject's 56 estimated blood pressure value is appropriately set on the envelope. The setting unit 57 'takes out the pressure band derivation unit 53 according to the characteristic of the blood pressure calculation unit. In step ST47, the feature extraction method is set to calculate the method setting section 57. The setting is then performed in steps ST48 to ST50 to perform the majority compression pressure band. The process is performed in step ST5W. ST6 ~ sT8 are approximately the same. The judgment of the circulatory organ function state by the part 55 shows that the circulatory organ function judgment shows the ^ pressure value estimated by the blood pressure calculation part 56 and the blood pressure value display part 7 shows 22 • 200533317 can measure. Method to take out the specific desire, so the circulatory organ function can be performed in more detail (<9th embodiment> Structure of circulatory organ function mapping in this embodiment), and it is equipped with a self-contained iiA and correction of the estimated blood pressure value Features. The first month is the same, and only the differences will be explained. Figure 3G is constructed with m ===== fixed / exhausted structure: blood y-out 56 and blood pressure value display 7 'and push-pull; there are two brothers 4 and the lowest == same as the second embodiment, since The envelope is presumed the most: positive. The school-specific envelope of the blood pressure value estimated by the blood castle calculation unit 56 is corresponding to the envelope of each recorded asset, such as the envelope of high blood ink, and the abnormalities of the intima and media are shown in Figure 5 (a) ~ (e)) ^ Right hanging envelope and healthy person's envelope (one example is ϋΐΠΙΓ, which shows the blood value after correction of the estimated blood-chilling part 58. 31 H # cyclic production function test device The operation of 100. The flow chart of the example of the operation of the i-measurement device 。. ST1 to ST4 are approximately the same and save ^ 6.4. Because of the steps in the first embodiment described above, the step '65 of the characteristic amount extracts the pressure band. The derivation unit 53 repeatedly presses the pressure bands according to 23 200533317 56 which is set in advance. At the same time, the blood pressure calculation unit is second. At step ST66, each of the compression pressure bands set by the feature extraction unit 53 is removed. In particular, the pressure band is induced secondly. In step ST67, the blood pressure correction Qiu 5 correction table is presumed to correct the blood pressure _ reading correction type or forced release. Then, in step ST69 = and ^ determine ^ the upper wrist pressure on the official function Judgment result data round; the data of blood pressure value pushed by Γ L P56 is made The blood pressure value is dry. 』= The blood pressure value estimated by the i-envelope is used. The blood pressure value corresponding to the ^ i dog can be used to correct the blood pressure. There is a kind of (1) ~ ίιT is not limited to the above-mentioned embodiment. The following variations can be used. Presentation of 'Compression zone 1's pressure is higher than the specific pressure to be measured, and then the pressure zone 1 is slightly decompressed. In the process, ίίίΐ form, but is not limited to this. For example, during the process of pressing the pressure of the pressure band 1 from a specific pressure lower than the estimated minimum blood pressure at a slight speed, it is possible to detect the pressure and make it. Figure 32 shows the pressure band 1 An example of the time variation of the pressure of the pulse wave sun guard pressure zone 1 with repeated force micro-speed pressurization. (2) The location of the pulse wave measurement is not limited to the upper wrist, but can also be tied to the wrist and other parts. It can also be used without compression. The pressure signal of the band 1 is not limited to the pulse signal acquisition mechanism, for example, by detecting the same characteristic amount using a pulse wave signal obtained by a photo-inductor installed in the compression band '. (3) The first embodiment described above Department, base The value calculated by equation (1) (the size of ^ indicates the subject's arteriosclerosis degree as the value of M00, and the value is displayed in the cycle 24 • 200533317 Ring organ function display section 6 ', but is not limited to this, it is arteriosclerosis The progress status is clear at a glance 'Divide the 1 ~ 100 into 5 steps of 1 ~ 20, 21 ~ 40, 41 ~ 60, 61 ~ 80, 81 ^ 100, as shown in Figure 33, in the circulatory organ function display section 6, A bar graph showing the degree of arteriosclerosis of the subject may also be displayed in a 5th-division bar graph. Figure 33 shows that the subject's degree of arteriosclerosis is level 3 in level 5. Also, it is not limited to A bar chart of FIG. 33 is displayed on the circulatory organ function display section 6, for example, FIG. 34, and is arranged in a vertical direction, for example, 5 lighting sections (for example, LEDs). The number of levels of the lighted part is also limited to this. For example, in Figure 35, the degree of arteriosclerosis existing in the arrogant arteries. From the oblique arteriosclerosis degree, the letters and symbols of the level, such as the letters A to E, indicate that the cycle is The g function display section 6 maps the subject's arteriosclerosis level to the level of the cough layer. Master display can. ~, Mouth, as shown in FIG. 36, according to the level of the arteriosclerosis level, the point of the party (for example, LED) is displayed. 'The arteriosclerosis level of the subject is indicated by its display color. The state of the degree of pulse sclerosis may be changed to indicate the presence of heterogeneity. Heart ㈣ΐ Ϊ 36 In the figure, the degree of arteriosclerosis is divided into 4 levels. As the degree of arteriosclerosis progresses, white colors are emitted. Most of the light-emitting parts are red, yellow = f color, and green. Corresponding to the day when the degree of arteriosclerosis progressed to 4, φϋ and the LED not emitting light were also used to indicate the degree of myocardial sclerosis, the number of levels of arteriosclerosis increased, and the number of high-order screens moved to reduce costs. The number of layers has been determined to reduce the number of LEDs. It is beneficial to follow this stage: the stage data output in the stage of He-Stage, the display form of Α 力 力 _ ^ 部 6 is sufficient. Functional Judgment 1 Official State of Wei—Example, the reference value of the circulatory organs (average leap year; &quot; Hf! The organ function of the Wei Wei material slaves is shown in Figure 37, and it is set on the organ display function section 25 of the frame 25. 200533317 The display section such as waiting, and the display section showing the degree of arteriosclerosis, display examples ^ function judgment results, and 彳 俨 51 — function judgment reference value (average value) set according to age and sex-it is clear at a glance Yes. The “li” indicates the reference value (average). Age: ^^^ The net li indicates the Keaton average ^ = down = pulse two;: s fixed hard ^^ The difference is the age of healthy people with the degree of arteriosclerosis ( Phase = Dynamic ^ •: The age of the next head and the actual age allow them to be compared. For example: when the age is' corrected when the age is expected γ, the bullying value is x, and the formula ⑷ is calculated to be equivalent to Y-aX + b · · · (4) The 'Γb series constant in the data is judged by the majority of healthy people who have no disease. 38 ° Figure ^ is the projection judgment. X is replaced by the judgment value Q of the previous rescue. The age is judged to be yang, the main factor of the degree of pulse sclerosis. Also, it is fine :: Again, the force: Age is also the retention of motion factors and lifestyle factors Correlation with sub-circle = Qiaomai sclerosis fixed part 55 Estimated lifestyle factors from the degree of arteriosclerosis ^ The number of functional judgments is displayed on the circulatory organ function display part 6, that is, when the presumed symptoms of blood waste in the south are preserved, "," Age 45 years old, 2 ^ 50 years old, 3 factors, the factor holding number is "3" and "two blood pressures", and in addition to the factors holding factor forms, such as the possibility of occurrence of common diseases (risk, risk) Take, for example, 5 levels and 2 resident life habits | Bai Genxian. 26 200533317 • The picture shows that the probability of occurrence of a certain person ’s life series is in level 5, and as mentioned before, the age is also the main artery The cause of the sclerosis degree is the disease. At the time of birth, the arteries affected by ageing are removed. The irii sound can be derived from the statistics. Set the annual clothing of the person to be measured, and remove the person to be measured through the input device. The influence of the age and the risk of living habits disease is best. 7 、-The password is described in the if before the ink band to take out all the characteristic quantities', and the stretchability of the pipe wall depends on the state of ______ The extension of the inferior vessel wall depends on the Sex ★ The role of the dust on the blood vessels is hidden _ _ = = helmet you H 〇 Tu Ren not based on the pressure from the high-pressure side of the pressure band (internal and external pressure of the blood vessel # hardening degree, and = two of the arterial hard servant broken Lu The L-force difference is the same as the characteristic value extracted from the area). The 40th ^ 'mouth-with: Π level (the more the arteriosclerosis progresses), the mesentery's chantification 3 =' is measured The degree of hardening on the high pressure side (mainly the endometrium and the form showing the degree of hardening on the high pressure side and the low pressure side as shown in the figure below). To change the example, it is easy to say that it produces π Γ. Symptoms may be displayed on a hierarchical basis. The skin determination unit 55 may estimate the state of the adventitia and mediastinum based on the degree of arteriosclerosis of the subject. For example, as shown in Figure 41, it will deteriorate). The 41st level is displayed in 3 levels (the larger the number of levels, the higher the number of p in the symptom, the ratio of p is 2 to t. Legend: level 3 in the endometrial system, level 3 in the middle membrane system, and luck in the level 3 in the membrane system. There is no problem with the adventitia, and the arteriosclerosis has progressed to 27.200533317. In this way, the pressure band on the high-pressure side and the pressure band on the low-pressure side are each derived, showing the symptoms of blood f Divided into adventitia, media, and inner to determine whether the pressure of compressive pressure with _, or Ho-the vascular tissue is rich, the diagnosis changes

曰(8j上述各貫施形態係,將由脈波檢測時壓力算出部μ對應 之壓迫壓力及脈波振幅值於脈波龍記憶部52以表格記了 但尤以心跳數少之制定者,因所得脈波數少,用崎特徵量“之 脈波振幅值有時成為與在脈波資料記憶部52以表格形式記憶之任 -脈波振幅值不-致的中間值。此時,讀取接近用以得特^量之 脈波振^的,6記憶之脈絲幅似對應於該振幅值之壓迫壓 力,從,讀取之振幅值及壓迫壓力,以内插運算導出即可。在此 内插運算中係使用,例如,導出近似於自包絡線讀取之脈波振幅 值周圍部位之形狀(曲線)的式子,從該式及用以得上述特徵量之 脈波振幅值導出對應於該振幅值之壓迫壓力者。 (9),、上^各實施形態中,脈波檢測部4基於輸出自壓力檢測 部3之Μ力信號,生絲示脈波振幅值之壓力信號,但不限於此, 亦可脈波檢測部4基於上述壓力錢生成表示每—心跳之脈波面 積值的脈波錢,取代上述脈波振幅值改用表示該面積值與塵迫 壓力之關係的包絡線如同前敛取出特徵量。 (10)申請專利範圍中脈波之大小不限於脈波振幅值,亦含脈 波面積值。又,使脈波之大小於赠敘之制作循環器官功能判 疋用之特徵量種類時,如例如第6圖、第17〜19圖、第23〜25圖, 含設定作為邊界之壓迫壓力,與對應於包絡線的特定脈波之大 的壓迫壓力之差的至少其-即可(第6圖之寬WbW2,第17圖之 寬W5〜W8,第18圖之寬W9〜W11,第19圖之寬W13、叽4, 圖之寬W17〜W20’第24圖之寬W21〜W24,第25圖之寬W25)。 .(11)必要時,亦可適當組合第卜第10實施形態及上述其它 變化形態(1)〜(10)之功能,構成循環器官功能測定裝置。 28 200533317 【圖式簡單說明】 第1圖本發明有關之循環器官功能測定裝置的第丨實 態之構造方塊圖。 只她形 第2圖壓迫上腕動脈之壓迫帶内的壓力變化圖。 第3圖微速減壓過程中逐次檢測出之脈波隨壓力變 間序列變化圖。 包絡=。壓迫上腕動脈之壓迫帶的·賴過針得之脈波 第5圖第4圖之包絡線形狀圖樣例示圖。 徵量^第1實施雜之循環奸功能取方法中採用之特 徵量Llf細第1實施雜之循環器官功能測定方法中採用之特 徵量第1實施雜之魏料魏啦綠巾採用之特 說明γ目脈波振幅值為最大之壓迫壓力與平均血壓之關係的 第10圖隨壓力差(平均血壓—單 之容積變化圖。 L迫壓力)的血管壓迫部位 第第=之形態圖。 例的流程圖。 自衣g功此冽定裝置的動作之一 出特徵量之其它取出形態圖。 構造之方塊圖。 小心之循%益官功能測定裝置的 第15圖用以說明第2實施形態 動作之一例的流程圖。 衣的g功能測定裝置的 第16圖用以說明第3實 構造之方塊圖。 小心之循裱為官功能測定裝置的 29 •200533317 及平算出部算出之各血壓值(最高血壓、最低血壓 七8=:^包絡線之邊界值而得特徵量之例示圖。 用作八到勺^夂1壓ί出部异出之各血壓值(最高血壓、平均血壓) 用作巧包絡線之邊界值而得特徵量之例示圖。 弟19圖將血壓异出部算出之各 用作分割包絡線之邊界值轉量之 祕、取低血廢) 值及ϊΠΐΐΓ人同樣測定脈波之振幅時,脈波最大振幅 &lt;及“附近之脈波振幅值不安定之狀態的_例圖。 值及1==:,測定脈波之振幅時,脈波最大振幅 值及,、附近之脈波振幅值不安定之狀態的一例 第22圖第4實施形態之特徵部分的說明 ,23圖自各壓迫壓力帶取出多數特徵量者之一例圖。 第24圖自各壓迫壓力帶取出多數特徵量 第25圖自不同壓迫壓力帶區域取出 = 第26圖_說明第7實施形離之循環哭Γ二圖 構造之方塊圖。 &amp;开〜之循&amp;為吕功能測定裝置的 第27圖用以制第7實施職之循環 動作之一例的流程圖。 刀犯州疋衣置的 第28圖__第8實施職之循環 構造之方塊圖。 “獻衣置的 動作:!9二Γί明川 構造:二用以說明第9實施形態之循環一 第31«第9實施職之彳雜料舰啦 例的流程圖。 Θ7勒作之一 第32«壓迫上腕動脈之壓迫帶内壓力 第33圖被測定者之循環器官功能判一例的圖。 第34 β被測定者之循環器官功能判定:=貞_恶圖。 J&amp;'、、D果的顯示形態圖。 30 •200533317 第35圖被測定者之循環器官功能判定結果的顯示形態圖。 第36圖被測定者之循環器官功能判定結果的顯示形態圖。 第37圖被測定者之循環器官功能判定結果的顯示形態圖。 第38圖被測定者之循環器官功能判定結果的顯示形態圖。 第39圖被測定者之循環器官功能判定結果的顯示形態圖。 第40圖被測定者之循環器官功能判定結果的顯示形態圖。 第41圖被測定者之循環器官功能判定結果的顯示形態圖。 第42圖習知技術說明圖。 第43圖習知技術說明圖。(8j The above-mentioned implementation systems are described in the table of the pulse wave memory 52 by the compression pressure and pulse wave amplitude corresponding to the pressure calculation unit μ during pulse wave detection, but especially for those who have a small number of heartbeats. The number of pulse waves obtained is small, and the pulse wave amplitude value using the "saki feature" may sometimes be an intermediate value that does not match any of the pulse wave amplitude values stored in a table in the pulse wave data storage unit 52. At this time, read Close to the pulse wave vibration that is used to obtain a special amount of pulse, the 6-memory pulse wire width seems to correspond to the compression pressure of the amplitude value, and the amplitude value and compression pressure read from can be derived by interpolation. Here The interpolation operation is used, for example, to derive an expression approximate to the shape (curve) of the surrounding part of the pulse wave amplitude value read from the envelope, and to derive a correspondence from this expression and the pulse wave amplitude value used to obtain the above-mentioned characteristic quantity. (9) In each of the above embodiments, the pulse wave detection unit 4 displays the pressure signal of the pulse wave amplitude value based on the M-force signal output from the pressure detection unit 3, but does not Limited to this, the pulse wave detection unit 4 may generate The pulse wave value representing the pulse wave area value of each heartbeat, instead of the above pulse wave amplitude value, the envelope curve representing the relationship between the area value and the pressure of the dust pressure is taken as the forward convergence to extract the characteristic quantity. (10) Pulse wave in the scope of the patent application The magnitude is not limited to the amplitude of the pulse wave, but also includes the value of the area of the pulse wave. Also, when the size of the pulse wave is a type of feature quantity used for the evaluation of the function of the circulatory organs, such as FIG. 6 and 17 to 19 Figures 23 to 25 include at least one of the difference between the compression pressure set as the boundary and the compression pressure corresponding to the specific pulse wave of the envelope (width WbW2 in FIG. 6 and width in FIG. 17) Width W5 ~ W8, width W9 ~ W11 in Fig. 18, width W13, 叽 4 in Fig. 19, width W17 ~ W20 ', width W21 ~ W24 in Fig. 24, width W25 in Fig. 25). 11) When necessary, the functions of the tenth embodiment and other variations (1) to (10) described above can be appropriately combined to constitute a circulatory organ function measurement device. 28 200533317 [Brief description of the drawings] FIG. 1 The present invention A block diagram of the actual structure of the related circulatory organ function measuring device. Figure 2 The pressure change in the compression zone of the upper carotid artery. Figure 3. The sequence of pulse waves detected during the rapid decompression process as a function of pressure changes. Envelope =. The compression zone of the upper carotid artery. Pulse wave diagrams 5 and 4 are examples of envelope shape diagrams. Quantities ^ The characteristic quantity Llf used in the first method for obtaining the circulatory function is thin. The feature used in the first method for measuring the function of the circulatory organ is described. Fig. 10 shows the relationship between the compression pressure and the average blood pressure with the maximum amplitude of the pulse wave of the γ eye, which is used by the Wei La green towel. The morphological diagram of the vascular compression site at the third position. Example flow chart. One of the actions of the fixed device is the other extracted morphological diagram. Construction block diagram. Fig. 15 of the carefully measured% benefit function measuring device is a flowchart illustrating an example of the operation of the second embodiment. Fig. 16 of the g-function measuring device of the clothes is a block diagram for explaining the structure of the third embodiment. Carefully follow each of the blood pressure values (the highest blood pressure, the lowest blood pressure 7 8 =: ^ envelope line boundary value) calculated as the official function measurement device 29 • 200533317 and the level calculation section to obtain a feature quantity. Used as eight to Spoon ^ 夂 1 shows the blood pressure values (maximum blood pressure, average blood pressure) of the blood pressure abnormalities as the boundary values of the clever envelopes to obtain the characteristic quantities. Separation of the boundary value of the envelope and the secretion of the amount of change, and the low blood waste) value and the measurement of the amplitude of the pulse wave, the maximum amplitude of the pulse wave &lt; Value and 1 ==: An example of a state where the maximum amplitude of the pulse wave and the nearby pulse wave amplitude values are unstable when measuring the amplitude of the pulse wave. FIG. 22 illustrates the characteristic part of the fourth embodiment, FIG. 23 An example of a person who extracts most feature quantities from each compression pressure zone. Figure 24. Extracts most feature quantities from each compression pressure zone. Figure 25. Extracts from different compression pressure zone areas. Block diagram of graph structure. &Amp; 开 〜 之&amp; is a flowchart of an example of the cyclic function of the seventh implementation task in the 27th figure of the Lu function measuring device. The 28th figure of the sword criminal state __ 8th implementation block diagram of the cycle structure. "The action of offering clothes :! 9 2 Γ Mingchuan structure: 2 A flowchart to explain the example of the ninth embodiment of the cycle of the 31st« 9th implementation of the miscellaneous materials ship. One of Θ7's strokes. 32 «Compression in the compression band of the upper carotid artery. Fig. 33: An example of the function of the circulatory organ of the subject. Judgment of the function of the circulatory organs of the 34th subject: = Zhen_evil map. J &amp; ', D fruit display morphology. 30 • 200533317 Figure 35 The display form of the test result of the circulatory organ function of the subject. Fig. 36 is a diagram showing a display result of the circulatory organ function determination result of the subject. Fig. 37 is a diagram showing a display result of the circulatory organ function determination result of the subject. Fig. 38 is a diagram showing a display result of the circulatory organ function determination result of the subject. Fig. 39 is a diagram showing a display result of the circulatory organ function determination result of the subject. Fig. 40 is a diagram showing a display result of the circulatory organ function determination result of the subject. Fig. 41 is a diagram showing a display result of the circulatory organ function determination result of the subject. Fig. 42 is a diagram for explaining a conventional technique. Fig. 43 is a diagram for explaining a conventional technique.

【主要元件符號說明】 1 壓迫帶 2 壓力控制部 3 壓力檢測部 4 脈波檢測部 5 控制部 51 脈波檢測時壓力算出部 52 脈波資料記憶部 53 特徵量取出壓力帶導出部 54 特徵量取出部 55 循環器官功能判定部 56 血壓算出部 57、57’特徵量取出方法設定部 58 推定血壓校正部 6 循環器官功能顯示部 7 血壓值顯示部 8 個人資訊輸入部 31[Description of main component symbols] 1 compression zone 2 pressure control unit 3 pressure detection unit 4 pulse wave detection unit 5 control unit 51 pressure calculation unit during pulse wave detection 52 pulse wave data memory unit 53 feature quantity extraction pressure zone export unit 54 feature quantity Retrieval section 55 Circulatory organ function determination section 56 Blood pressure calculation section 57 and 57 'Feature quantity extraction method setting section 58 Estimated blood pressure correction section 6 Circulatory organ function display section 7 Blood pressure value display section 8 Personal information input section 31

Claims (1)

200533317 十、申請專利範圍: 其特徵為緣 廢力檢測ϋ 體之特定部位; 禮,控制機 構之壓迫壓力; ^力、父化该壓力施加機 脈波資訊纪愔擁姓 / 皮的大小有關之脈波資訊; 壓力有=壓迫=^^=_與該檢_之壓迫 包絡線之特徵的特;^刀域的至少其2區域取出表示該 功能官功能狀機構,基於取出之各特徵量進行循環器官 2、如申請專利範圍第i項之循 ^球徵量包含有至少—個下列兩壓 •:之麵壓力’及該包絡線中之對應於特定脈波的 其 :該3設定 =之範 中/目、如巾請專利棚第1或2項之循彻官功能峡裝置,1 Τ更具有使用該包絡線推定血壓之血壓推定機構。 5、如申請專利範圍第i或2項之循環器官功能測定裝置,苴 甲更具有使用該包絡線推定血壓之血壓推定機構,該設定作為^ 32 .200533317 界之[迫壓力,係由該灰壓推定機構推定之血壓。 具有環綱罐裝置,其中更 壓迫壓力包含:職波推賴構,該設定作為邊界之 定機構推定之血壓。 小麵大之壓迫壓力’及該由血壓推 由血録定力能i則Jf置,其中該 高血述^算出之^及從該最 、▲(取冋血壓—最低血壓)/ 3 +最低血歷 有基於該環器官功能啦裝置,其中具 及取出之特歸,、*蚊賴邊界值之設定 構,·該特徵量取出機構,依里^^第1取出方法設定機 量取出方法取岭^量依韻1㈣方法設定機構奴之特徵 有校正機構官魏卿置,其中具 徵量加以校正。推疋社構推疋之血壓,使用該取出的特 其子 如申請專利範圍第Ϊ或2頊之描严 ;:特:;:::構,自 苴中且士甲喷專利範圍第1或2項之循戸 出之特nl基於輸入之身體特性,設定H真田弟2取出方 取出方特徵量取出方法;該特徵㈡設定及取 :_所設定之特徵量取財第2 13、如申請專利範圍第!或2 取出她政量。 、盾衣為官功能测定裝置, 33 200533317 Ί、有’’、、貞不賴g魏判定機構之欺結果的顯示機構。 兮循利範圍第13項之循環器官功能測定裝置’其中 祕硬姚綠況以數值 再貝不由顧^官魏欺機構輸出之該數值。 领範圍第13項之循環器官功能測定裝置,盆中 収^祕硬储係符合 料,該顯示機槿顧又疋的多階中之何一階的階層資 料。&quot;、、、’、、&quot;、、、不以循墩斋官功能判定機構輸出之該階層資 •該顯i機乾S3之循環器官功能測定裝置,其中 別對應於彳H目t色光的多數之發光機構分 具有輸入循,器官功能測定裝置,其中 記憶機構,該顯示機構该特徵量的基準值之 量判定之循環n官功能判定ς果,===出機構取出之特徵 值。 亥基準值列定之循環器官功能判定基準 該猶====13項之_官功能_置,μ 健康者的動脈硬化度機構’記憶基於統計導出之 特徵量取出機構所取出^ )及換算機構,將導出自該 年齡。 ’&lt;者的年齡 :_示機構顯^該Si機; 19、如申請專利軸13項之循猶功能敎裝置,其中 34 200533317 該循環器官功能判定機構具有將被測定者之動脈硬化度換瞀 活習慣病的因子保有數之換算機構,該顯示機構顯土 構所換算之g子保有數。 ㈣換异機 2〇、如申請專利範圍第13項之循環器官功能測定裝置,复 判Ϊ機構基於彬狀者之動脈硬化度判 判定機構====態該顯示機構顯示由該循環器官功能 「種循環器官功能測定方法,其特徵為: 麼迫被測定者的身體之特定部位; φ 檢測該壓迫壓力; 之壓迫壓力’由該壓力施加機構變化壓迫壓力· U疋雜的脈波大小有關之脈波資訊; 中產 資訊脈波f訊與其檢測時之壓迫壓力有關顏频力 之包於力資訊之對應關係形成 包絡線全體視為1區域時ϋ心d多ί區域,同時自將該 之各特徵量徵的特徵量;以及基於取出 十一 圖式 35200533317 X. Scope of patent application: It is characterized by the detection of specific parts of the carcass by the force of waste; Li, the pressure of the control mechanism; ^ Force, paternalization The pressure of the pulse is applied. Information about the size of the surname / skin Pulse wave information; pressure has the characteristics of the pressure envelope of the pressure = ^ ^ = _ and the test _; at least two areas of the ^ knife field are taken out to indicate the function of the official function-like mechanism, based on each feature amount taken out Circulatory organ 2. If the circulation sphericity of item i in the scope of the patent application contains at least one of the following two pressures: the surface pressure 'and the envelope that corresponds to a specific pulse wave: the 3 setting = of Fan Zhong / Mu, such as towels, please use the patent function shed device 1 or 2 of the circulator function, 1T has a blood pressure estimation mechanism that uses this envelope to estimate blood pressure. 5. If the circulatory organ function measuring device of item i or 2 of the scope of patent application is applied, the armour has a blood pressure estimation mechanism that uses the envelope to estimate blood pressure. The setting is ^ 32 .200533317 [Force pressure, by the gray The blood pressure estimated by the pressure estimation mechanism. Equipped with a ring-shaped tank device, among which more compressive pressure includes: duty wave reliance structure, which is set as the boundary estimated blood pressure by a certain mechanism. The small face has a large compression pressure, and the blood pressure is determined by the blood recording. The energy can be set to Jf, where the high blood pressure is calculated ^, and from the maximum, ▲ (take blood pressure-minimum blood pressure) / 3 + minimum The blood calendar has a device based on the function of the ring organ, which includes special features for taking out, * setting structure of the boundary value of mosquitoes, and the feature quantity taking out mechanism. The characteristics of setting the slaves in the Ling ^ amount according to the rhyme 1 method are the correction mechanism official Wei Qingzhi, which has the corrections for the signs. Push the blood pressure pushed by the social organization, and use the extracted special child as described in the scope of patent application No. Ϊ or 2 顼;: 特:; :::: structure, self-owned and Shijia spray patent scope No. 1 or Based on the physical characteristics of the input, the characteristics of the 2 items are set according to the input physical characteristics of H Sanada 2 and the method of extracting the characteristic amount of the extraction side; the characteristic is set and taken: Range cap! Or 2 take out her politics. The shield clothing is an official function measuring device. 33 200533317 The display mechanism of the bullying result of the judging agency. The device for measuring the function of the circulatory organs in the 13th item of Xi Xunli's range, wherein the value of the sclerosing Yao green condition is a value that can not be output by the Gu Guan Wei Wei mechanism. The circulatory organ function measuring device according to item 13 of the collar scope, which is a material that is collected in the basin, shows which level of hierarchical information among the multi-levels. &quot; ,,, ',, &quot; ,,,, and other materials that are not output by the function judgement mechanism of the Xun Dunzhai official function • The circulatory organ function measuring device of the display machine S3, which does not correspond to 彳 H mesh t color light Most of the light-emitting mechanisms have input cycle, organ function measuring devices, among which the memory mechanism, the display mechanism, the reference value of the characteristic value of the feature value, the cycle of the function judgement, and the characteristic value taken out by the mechanism. The benchmark for determining the function of the circulatory organs based on the Hai reference value should be ==== 13 items of the _official function_set, μ The arteriosclerosis degree of healthy people 'memory is extracted by the feature quantity extraction mechanism derived from statistics ^) and the conversion mechanism Will be exported from that age. '&lt; The age of the person: _ indicates that the device displays the Si machine; 19. The device for follow-through function, such as the patent application for 13 items, of which 34 200533317 The circulatory organ function determination mechanism has the ability to change the degree of arteriosclerosis of the subject换算 The conversion mechanism of the factor holding number of living habitual disease, which shows the g-number holding number converted by the soil structure. ㈣Change machine 20. If the circulatory organ function measuring device of item 13 of the patent application scope, the re-evaluation mechanism is based on the atherosclerosis degree judgment mechanism of the person with a bin shape ==== state. The display mechanism displays the function of the circulatory organ. "A method for measuring the function of circulatory organs, which is characterized by: compressing a specific part of the body of the person being measured; φ detecting the compression pressure; the compression pressure 'is changed by the pressure application mechanism; the compression pressure is related to the size of the pulse wave The pulse wave information of the middle-class information and the pulse pressure of the middle-level information and its detection pressure are related to the frequency of the force. The correspondence relationship between the force information and the force information forms the envelope. Characteristic quantity of the sign; and based on taking out eleven schema 35
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