• 제목/요약/키워드: Counter clockwise rotation

검색결과 20건 처리시간 0.018초

전치부 개교합을 가진 골격성 3급 부정교합 환자에서 하악의 반시계 방향 회전 시 술 후 안정성 (Post-operative Stability of Counter Clockwise Rotation of the Mandibular Plane in Skeletal CIII with Anterior Openbite Patients)

  • 유정민;유경선;이백수;권용대;최병준;김여갑;오주영;박성원
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제34권4호
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    • pp.252-259
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    • 2012
  • Purpose: This study evaluated the postoperative stability of counter clockwise rotation of the mandibular plane in anterior openbite patients, who have had one jaw surgery performed. Methods: This study includes patients with skeletal class III malocclusion accompanied by anterior openbite among the patients who have had BSSRO performed, resulting in counter clockwise rotation of the mandibule. We excluded the patients with genioplasty and segmental surgery, and included 23 patients who underwent BSSRO. Results: We found no statistical significance between the amount of counter clockwise rotation in the mandible in the Pearson correlation test. Also, there was no significant difference between Group 1 (< $3^{\circ}$) and Group 2 (> $3^{\circ}$). Conclusion: This study evaluated the amount of horizontal relapse, and the degree of relapse. Stable results were obtained. Although there was no statistical significance between the degree of openbite and the amount of horizontal relapse, the group with a greater amount of openbite had a greater amount of relapse.

회전자화에 의한 무방향성 전기강판의 철손측정 (Energy Loss Measurement of Non-oriented Electrical Steel Sheets Under Rotational Magnetization)

  • 손대락;금채
    • 한국자기학회지
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    • 제10권4호
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    • pp.178-182
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    • 2000
  • 본연구에서는 서로 직교하는 yoke 장치와 4-채널 과도기록장치를 사용하여 회전하는 자기장을 발생시키고, 회전자화에 의한 자기적 손실을 측정할 수 있는 측정시스템을 구성하였다. 개발된 측정장치를 사용하여 무방향규소강의 회전자화에 의한 자기적특성을 측정하였으며, 회전자화에 의한 손실의 측정에서 자기유도성분의 측정방향과 자화력성분의 측정방향이 일치하지 않아, 시계방향 및 반시계방향으로 측정한 값이 차이를 나타내었다. 그러나 시계방향 및 반시계방향으로 측정한 회전자화에 의한 손실값의 평균은 일정함을 알 수 있었으며, 이를 이용할 경우 회전자화의 폭정오차를 줄일 수 있었다.

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안면골의 성장회전에 관한 연구 (VARIATION IN THE GROWTH PATTERN OF THE FACE: A LONGITUDINAL COMPUTERIZED RECTILINEAR CEPHALOMETRIC STUDY)

  • 김일봉;성재현;정규림
    • 대한치과교정학회지
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    • 제15권1호
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    • pp.123-140
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    • 1985
  • Variation in the facial pattern and effect of the rotational jaw growth on the facial proportion were studied in serial cephalometric radiographs of 40 Korean children (25 boys, 15 girls) ranging in age from 6 to 13 years. According to Y-axis (N-S-Gn) growth change during the 7 years of period, the subject who had exhibited 'wave-like' manner of Y-axis growth change within ${\pm}\;2^{\circ}$ was classified to the Parallelwise group and the subject who had exhibited Y-axis increase more than $+2^{\circ}$ was classified to the Clockwise rotation group and the subject who had exhibited Y-axis decrease more than $-2^{\circ}$ was classified to the Counterclockwise rotation group. For the comparison of each group, a total of 22 morphologic variables were employed and the data were analyzed by means of computer morphometrics and statistical methods. On the basis of the finding of this study, the following trends were established. 1. The Parallelwise group was $75\%$, the Clockwise rotation group was $12.5\%$ and the Counter-clockwise rotation group was $12.5\%$. 2. The growth pattern of cranial base was related to the rotation of mandible. 9. Maxillary prognathism was occured in the Counterclockwise rotation group and the rotation of palatal plane was occured in the Clockwise rotation group. 4. Mandibular prognathism was occured in the Parallelwise and the Counterclockwise rotation groups, especially in the Counterclockwise rotation group. 5. The degree of maxillo-mandibular divergency was constant in the Clockwise rotation group but decreased in the Counterclockwise rotation and the Parallelwise groups, especially in the Counterclockwise group. 6. There were no differences in the size of the anterior upper facial height (N-ANS) and the posterior lower facial height ((Go-Me)-PNS) but there were differences in the size of the anterior lower facial height (ANS-Me) and the posterior upper facial height ((S-N)-PNS) between each group. 7. The growth increment and the size of the facial depth was not related to the growth pattern of the face but the growth increment and the size of the facial height was related to the growth pattern of the face. 8. Proportional change due to the facial growth rotation was concentrated in the anterior lower face. 9. The most apparent difference between each group was happened in the size of the posterior cranial base (S-Ba) and the facial length (S-Gn).

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원거리에서 근거리 주시 시 난시축 변화에 대한 연구 (A Study for the Change of Astigmatism Axis When the Fixation Point Moved Far Distance to Near Distance)

  • 주석희;심현석
    • 한국안광학회지
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    • 제12권2호
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    • pp.47-59
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    • 2007
  • 이 연구는 원 근거리 상태에서의 난시 성분별, 연령별, 난시축의 분포와 원거리에서 근거리로 주시선이 이동 할 때 난시축의 변화를 비교 분석하기 위하여 안질환이 없고 눈 수술의 경험이 없는 1,598안(남 698안, 여 900안)을 대상으로 양안개방형 자동굴절검사를 실시하였다. 그 결과 원거리에서 근거리 주시 시 난시 성분들의 변화는 전체난시에서 무변화안 1,020안 (63.8%), 변화안은 578안 (36.1%)을 나타냈으며, 직난시는 사난시로, 사난시는 직난시로, 도난시는 사난시로의 변화가 각각 가장 많았다. 각막난시에서는 무변화안 1,164안(72.8%), 변화안은 434안(27.1%)을 나타냈으며, 직난시는 사난시로, 사난시는 직난시로, 도난시는 직난시로의 변화가 각각 가장 많았다. 잔여난시에서는 무변화안 935안(58.5%) 변화안은 663안(41.4%)을 나타냈으며, 직난시는 사난시로, 사난시는 도난시로, 도난시는 사난시로의 변화가 각각 가장 많았다. 원거리에서 근거리 주시 시 난시축의 회전은 전체난시의 경우 무회전이 761안 (48.5%), $10^{\circ}$ 이상 회전이 837안(52.3%)으로 나타났으며, 각막난시의 경우는 무회전이 846안(52.9%), $10^{\circ}$ 이상 회전이 752안(47%)으로, 잔여난시의 경우는 무회전이 614안(38.4%), $10^{\circ}$ 이상 회전이 984안(62.5%)으로 나타났다. 전체난시의 평균 회전 정도는 반시계방향으로 $31^{\circ}$, 시계 방향으로 $20^{\circ}$로 나타났으며, 각막난시의 평균 회전 정도는 반시계 방향으로 $25^{\circ}$, 시계 방향으로 $27^{\circ}$로 나타났다. 잔여난시에서의 평균 회전 정도는 반시계 방향으로 $33^{\circ}$, 시계방향으로 $35^{\circ}$를 나타냈다.

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A Design of SRM Controller using Microprocessor

  • Park, Joon-Hoon;Ahn, Jung-Soo;Han, Wun-Dong;Park, Boo-Chong
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 ITC-CSCC -3
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    • pp.2023-2026
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    • 2002
  • This paper explains the study of controller design applied to SRM(Switched Reluctance Motor) concept. This controller executes controller algorithms via ${\mu}$-processor to increase stability and precise measurement, and VHDL (Very high speed integrated circuit Hardware Description Language) is designed to generate SRM driving signal. During initial period, SRM controller was designed to control .respective target RPM (Revolution per minutes) and PR (Proportional Integral Differential) coming from the PC(Personal Computer) monitor program, and receiving clockwise and counter-clockwise rotation signal and target RPM coming from the front panel, and receiving the location of rotational element and RPM generating from the position censor during activation period.

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Theoretical axial wall angulation for rotational resistance form in an experimental-fixed partial denture

  • Bowley, John Francis;Kaye, Elizabeth Krall;Garcia, Raul Isidro
    • The Journal of Advanced Prosthodontics
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    • 제9권4호
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    • pp.278-286
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    • 2017
  • PURPOSE. The aim of this study was to determine the influence of long base lengths of a fixed partial denture (FPD) to rotational resistance with variation of vertical wall angulation. MATERIALS AND METHODS. Trigonometric calculations were done to determine the maximum wall angle needed to resist rotational displacement of an experimental-FPD model in 2-dimensional plane. The maximum wall angle calculation determines the greatest taper that resists rotation. Two different axes of rotation were used to test this model with five vertical abutment heights of 3-, 3.5-, 4-, 4.5-, and 5-mm. The two rotational axes were located on the mesial-side of the anterior abutment and the distal-side of the posterior abutment. Rotation of the FPD around the anterior axis was counter-clockwise, Posterior-Anterior (P-A) and clockwise, Anterior-Posterior (A-P) around the distal axis in the sagittal plane. RESULTS. Low levels of vertical wall taper, ${\leq}10-degrees$, were needed to resist rotational displacement in all wall height categories; 2-to-6-degrees is generally considered ideal, with 7-to-10-degrees as favorable to the long axis of the abutment. Rotation around both axes demonstrated that two axial walls of the FPD resisted rotational displacement in each direction. In addition, uneven abutment height combinations required the lowest wall angulations to achieve resistance in this study. CONCLUSION. The vertical height and angulation of FPD abutments, two rotational axes, and the long base lengths all play a role in FPD resistance form.

상악 전방견인시 악안면골의 초기반응에 관한 Laser Holography연구 (A LASER HOLOGRAPHIC STUDY ON THE INITIAL REACTION OF MAXILLOFACIAL COMPLEX TO MAXILLARY PROTRACTION)

  • 강흥석
    • 대한치과교정학회지
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    • 제18권2호
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    • pp.367-385
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    • 1988
  • In case of skeletal Class III malocclusion with underdeveloped maxilla, the extraoral orthopedic force for the stimulation of maxillary growth or anterior reposition of the maxilla has been used clinically for the improvement of facial skeletal relationship. The purpose of this investigation was to examine the initial reaction of maxillofacial complex to the maxillary protraction by using extraoral orthopedic force. The dried human skull was used and this investigation was done by means of double exposure holographic interferometry. The protraction forces placed on the canine or the first molar were parallel, $10^{\circ}$ downward, $20^{\circ}$ downward to the occlusal plane. Fringe pattern of each protraction condition was compared and analized. The results were as follows: 1. Each maxillofacial bone displaced saparately. 2. More displacement was shown at the area of the teeth and the alveolar bone. 3. A counterclockwise rotation of the maxilla wa decreased by downward protraction and especially 20 degree downward protraction from the canine showed least rotation. 4. On the zygomatic arch, outward bend was observed and this effect was decreased by downward protraction. 5. On the zygomatic bone, the counter clockwise rotation was increased by the downward protraction. 6. When maxillary expansion was applied at the same time, outward and upward displacement with counterclockwise rotation was observed on the maxilla. 7. The lateral pterygoid plate of sphenoid bone was affected by maxillary protraction.

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회전하는 원형실린더를 지나는 균일전단 유동에 관한 수치연구 (Numerical Study on Uniform-Shear new over a Rotating Circular Cylinder)

  • 강상모
    • 대한기계학회논문집B
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    • 제29권5호
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    • pp.577-589
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    • 2005
  • The present study has numerically investigated two-dimensional laminar flow over a steadily rotating circular cylinder with a uniform planar shear, where the free-stream velocity varies linearly across the cylinder. It aims to find the combined effect of rotation and shear on the flow. Numerical simulations using the immersed boundary method are performed for the ranges of $-2.5{\le}\alpha{\le}2.5$ and $0{\le}K{\le}0.2$ at a fixed Reynolds number of Re=100, where a and K are respectively the dimensionless rotational speed and velocity gradient. Results show that the positive shear, with the upper side having the higher free-stream velocity than the lower one, favors the effect of the counter-clockwise rotation $(\alpha<0)$ but countervails that of the clockwise rotation $(\alpha>0)$. Accordingly, the absolute critical rotational speed, below which vortex shedding occurs, decreases with increasing K for $(\alpha>0)$, but increases for $\alpha>0$. The vortex shedding frequency increases with increasing \alpha (including the negative) and the variation becomes steeper with increasing K. The mean lift slightly decreases with increasing K regardless of the rotational direction. However, the mean drag and the amplitudes of the lift- and drag-fluctuations strongly depend on the direction. They all decrease with increasing K for $\alpha>0$, but increase for $\alpha<0$. Flow statistics as well as instantaneous flow folds are presented to identify the characteristics of the flow and then to understand the underlying mechanism.

FDM 3D 프린팅의 경로생성을 위한 옵?루프의 꼬임제거 알고리즘 (An Algorithm for the Removing of Offset Loop Twists during the Tool Path Generation of FDM 3D Printer)

  • 올리올 이슬람;김호찬
    • 한국기계가공학회지
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    • 제16권3호
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    • pp.1-8
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    • 2017
  • Tool path generation is a part of process planning in 3D printing. This is done before actual printing by a computer rather than an AM machine. The mesh geometry of the 3D model is sliced layer-by-layer along the Z-axis and tool paths are generated from the sliced layers. Each 2-dimensional layer can have two types of printing paths: (i) shell and (ii) infill. Shell paths are made of offset loops. During shell generation, twists can be produced in offset loops which will cause twisted tool paths. As a twisted tool path cannot be printed, it is necessary to remove these twists during process planning. In this research, An algorithm is presented to remove twists from the offset loops. To do so the path segments are traversed to identify twisted points. Outer offset loops are represented in the counter-clockwise segment order and clockwise rotation for the inner offset loop to decide which twisted loop should be removed. After testing practical 3D models, the proposed algorithm is verified to use in tool path generation for 3D printing.

Finite element analysis of maxillary incisor displacement during en-masse retraction according to orthodontic mini-implant position

  • Song, Jae-Won;Lim, Joong-Ki;Lee, Kee-Joon;Sung, Sang-Jin;Chun, Youn-Sic;Mo, Sung-Seo
    • 대한치과교정학회지
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    • 제46권4호
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    • pp.242-252
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    • 2016
  • Objective: Orthodontic mini-implants (OMI) generate various horizontal and vertical force vectors and moments according to their insertion positions. This study aimed to help select ideal biomechanics during maxillary incisor retraction by varying the length in the anterior retraction hook (ARH) and OMI position. Methods: Two extraction models were constructed to analyze the three-dimentional finite element: a first premolar extraction model (Model 1, M1) and a residual 1-mm space post-extraction model (Model 2, M2). The OMI position was set at a height of 8 mm from the arch wire between the second maxillary premolar and the first molar (low OMI traction) or at a 12-mm height in the mesial second maxillary premolar (high OMI traction). Retraction force vectors of 200 g from the ARH (-1, +1, +3, and +6 mm) at low or high OMI traction were resolved into X-, Y-, and Z-axis components. Results: In M1 (low and high OMI traction) and M2 (low OMI traction), the maxillary incisor tip was extruded, but the apex was intruded, and the occlusal plane was rotated clockwise. Significant intrusion and counter-clockwise rotation in the occlusal plane were observed under high OMI traction and -1 mm ARH in M2. Conclusions: This study observed orthodontic tooth movement according to the OMI position and ARH height, and M2 under high OMI traction with short ARH showed retraction with maxillary incisor intrusion.