| 臺大學術典藏 |
2022-03-22T08:34:38Z |
Anatomical Phase Extraction (APE) Method: A Novel Method to Correct Detrimental Effects of Tissue-Inhomogeneity in Referenceless MR Thermometry - Preliminary Ex Vivo Investigation
|
Huang C.-F.J;Lin W.-L;Hwang S.-C;Yao C;Chang H;Kuo L.-W.; Huang C.-F.J; Lin W.-L; Hwang S.-C; Yao C; Chang H; Kuo L.-W.; WIN-LI LIN |
| 臺大學術典藏 |
2022-03-22T08:34:38Z |
Corrigendum to “Pulsed-wave low-dose ultrasound hyperthermia selectively enhances nanodrug delivery and improves antitumor efficacy for brain metastasis of breast cancer” [Ultrason. Sonochem. 36 (2017) 198–205] (Ultrasonics - Sonochemistry (2017) 36 (198–205), (S1350417716304205), (10.1016/j.ultsonch.2016.11.033))
|
Wu S.-K;Chiang C.-F;Hsu Y.-H;Liou H.-C;Fu W.-M;Lin W.-L.; Wu S.-K; Chiang C.-F; Hsu Y.-H; Liou H.-C; Fu W.-M; Lin W.-L.; WIN-LI LIN |
| 臺大學術典藏 |
2022-03-22T08:34:37Z |
Anatomical Phase Extraction (APE) Method: A Novel Method to Correct Detrimental Effects of Tissue-Inhomogeneity in Referenceless MR Thermometry - Preliminary Ex Vivo Investigation
|
Huang C.-F.J;Lin W.-L;Hwang S.-C;Yao C;Chang H;Kuo L.-W.; Huang C.-F.J; Lin W.-L; Hwang S.-C; Yao C; Chang H; Kuo L.-W.; WIN-LI LIN |
| 臺大學術典藏 |
2022-03-22T08:34:37Z |
Corrigendum to “Pulsed-wave low-dose ultrasound hyperthermia selectively enhances nanodrug delivery and improves antitumor efficacy for brain metastasis of breast cancer” [Ultrason. Sonochem. 36 (2017) 198–205] (Ultrasonics - Sonochemistry (2017) 36 (198–205), (S1350417716304205), (10.1016/j.ultsonch.2016.11.033))
|
Wu S.-K;Chiang C.-F;Hsu Y.-H;Liou H.-C;Fu W.-M;Lin W.-L.; Wu S.-K; Chiang C.-F; Hsu Y.-H; Liou H.-C; Fu W.-M; Lin W.-L.; WIN-LI LIN |
| 臺大學術典藏 |
2022-03-22T08:31:33Z |
Corrigendum to “Pulsed-wave low-dose ultrasound hyperthermia selectively enhances nanodrug delivery and improves antitumor efficacy for brain metastasis of breast cancer” [Ultrason. Sonochem. 36 (2017) 198–205] (Ultrasonics - Sonochemistry (2017) 36 (198–205), (S1350417716304205), (10.1016/j.ultsonch.2016.11.033))
|
Wu S.-K;Chiang C.-F;Hsu Y.-H;Liou H.-C;Fu W.-M;Lin W.-L.; Wu S.-K; Chiang C.-F; Hsu Y.-H; Liou H.-C; Fu W.-M; Lin W.-L.; WIN-LI LIN |
| 臺大學術典藏 |
2022-03-22T08:31:33Z |
Anatomical Phase Extraction (APE) Method: A Novel Method to Correct Detrimental Effects of Tissue-Inhomogeneity in Referenceless MR Thermometry - Preliminary Ex Vivo Investigation
|
Huang C.-F.J;Lin W.-L;Hwang S.-C;Yao C;Chang H;Kuo L.-W.; Huang C.-F.J; Lin W.-L; Hwang S.-C; Yao C; Chang H; Kuo L.-W.; WIN-LI LIN |
| 臺大學術典藏 |
2021-03-29T06:10:22Z |
電漿聚合沈積對二甲苯薄膜及固定生長因子BMP-2改善316L不鏽鋼迷你骨釘之生物適應性
|
廖淑娟(Shu-Chuan Liao);莊清硯(Ching-Yen Chuang);章浩宏(Hao-Hueng Chang);林文澧(Win-Li Lin);林俊彬(Chun-Pin Lin); 廖淑娟(Shu-Chuan Liao); 莊清硯(Ching-Yen Chuang); 章浩宏(Hao-Hueng Chang); 林文澧(Win-Li Lin); 林俊彬(Chun-Pin Lin); WIN-LI LIN |
| 臺大學術典藏 |
2021-02-04T02:30:39Z |
Combination Therapy of Pulsed-Wave Ultrasound Hyperthermia and Immunostimulant OK-432 Enhances Systemic Antitumor Immunity for Cancer Treatment
|
Li, T.-C.;Liu, C.-C.;Lee, Y.-Z.;Hsu, Y.-H.;Chiang, C.-F.;Miaw, S.-C.;Lin, W.-L.Win-Li Lin; Li, T.-C.; Liu, C.-C.; Lee, Y.-Z.; Hsu, Y.-H.; Chiang, C.-F.; Miaw, S.-C.; Lin, W.-L.; WIN-LI LIN |
| 臺大學術典藏 |
2021-02-04T02:30:39Z |
Functionalization of pure titanium MAO coatings by surface modifications for biomedical applications
|
Liao, S.-C.;Chang, C.-T.;Chen, C.-Y.;Lee, C.-H.;Lin, W.-L.Win-Li Lin; Liao, S.-C.; Chang, C.-T.; Chen, C.-Y.; Lee, C.-H.; Lin, W.-L.; WIN-LI LIN |
| 臺大學術典藏 |
2020-02-26T09:15:58Z |
Optimization of temperature distributions in scanned, focused ultrasound hyperthermia
|
Win-Li Lin;Roemer R.B.;Moros E.G.;Hynynen K.; Win-Li Lin; Roemer R.B.; Moros E.G.; Hynynen K. |
| 臺大學術典藏 |
2020-02-26T09:15:57Z |
Temperature control of ultrasound hyperthermia with optimal thermocouple location and target temperature
|
Win-Li Lin; Shieh M.J.; Roemer R.B.; Wang C.Y. |
| 臺大學術典藏 |
2020-02-26T09:15:57Z |
Trial of C4.5/ID3 in predicting the presence of rectosigmoid polyps: a preliminary report in National Taiwan University Hospital
|
Chiang I-Jen;Hsu Jane Yung-Jen;Win-Li Lin;Wong Jau-Min;Shieh Ming-Jium;Wang Cheng-Yi; Chiang I-Jen; Hsu Jane Yung-Jen; Win-Li Lin; Wong Jau-Min; Shieh Ming-Jium; Wang Cheng-Yi |
| 臺大學術典藏 |
2020-02-26T09:15:57Z |
Ultrasound heating methods for hyperthermic therapy
|
Win-Li Lin;Shieh M.-J.;Lui L.T.;Liauh C.-T.;Wang C.-Y.; Win-Li Lin; Shieh M.-J.; Lui L.T.; Liauh C.-T.; Wang C.-Y. |
| 臺大學術典藏 |
2020-02-26T09:15:57Z |
Design and evaluation of a control scheme for the biomechanical motion of articulated multibody systems
|
Tsai Der-Liang; Win-Li Lin; Wang Cheng-Yi |
| 臺大學術典藏 |
2020-02-26T09:15:57Z |
Interpolation of arbitrarily located hyperthermia data using B-splines: simulations and in vivo experimental study
|
Win-Li Lin; Shieh Ming-Jium; Clegg S.T.; Roemer R.B.; Wang C.Y. |
| 臺大學術典藏 |
2020-02-26T09:15:57Z |
Control of scanned, focused ultrasound hyperthermia treatments
|
Win-Li Lin;Wang C.Y.;Shieh M.J.; Win-Li Lin; Wang C.Y.; Shieh M.J. |
| 臺大學術典藏 |
2020-02-26T09:15:56Z |
Effects of amplitude on the power intensity distribution of an annular array ultrasound transducer used in intracavitary hyperthermia
|
Win-Li Lin;Yen Jia-Yush;Chang Chia-Jong;Lin Shu-Yuh;Shieh Ming-Jium; Win-Li Lin; Yen Jia-Yush; Chang Chia-Jong; Lin Shu-Yuh; Shieh Ming-Jium |
| 臺大學術典藏 |
2020-02-26T09:15:56Z |
A three-channel driving system with phase shifters and amplitude controllers for ultrasound hyperthermia
|
Lu B.-Y.;Chen Y.-Y.;Win-Li Lin;Kuo T.-S.;Wang C.-Y.;Jeng J.-H.; Lu B.-Y.; Chen Y.-Y.; Win-Li Lin; Kuo T.-S.; Wang C.-Y.; Jeng J.-H. |
| 臺大學術典藏 |
2020-02-26T09:15:56Z |
Inverse estimation of transducer parameters with artificial neural network for ultrasound hyperthermia
|
Chen Y.-Y.;Win-Li Lin;Lu D.-C.;Yen J.-Y.; Chen Y.-Y.; Win-Li Lin; Lu D.-C.; Yen J.-Y. |
| 臺大學術典藏 |
2020-02-26T09:15:56Z |
Power intensity patterns of an annular array ultrasound transducer used in intracavitary hyperthermia
|
Cehn Y.-Y.; Yen J.-Y.; Shieh M.-J.; Chang C.-J.; Win-Li Lin;Cehn Y.-Y.;Yen J.-Y.;Shieh M.-J.;Chang C.-J.; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:15:56Z |
Neural networks modeling of temperature field distribution in hyperthermia
|
Chen Y.-Y.;Chen C.-H.;Win-Li Lin; Chen Y.-Y.; Chen C.-H.; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:15:56Z |
Blood pressure regulation by means of a neuro-fuzzy control system
|
Win-Li Lin; Kuo Te-Son; Wang Cheng-Yi; Chen Chin-Te; Chen Chin-Te;Win-Li Lin;Kuo Te-Son;Wang Cheng-Yi |
| 臺大學術典藏 |
2020-02-26T09:15:55Z |
Sixteen-channel phased array driving system for ultrasound hyperthermia
|
Lu Bing-Yuh;Win-Li Lin;Chen Yung-Yaw;Kuo Te-Son;Wang Cheng-Yi; Lu Bing-Yuh; Win-Li Lin; Chen Yung-Yaw; Kuo Te-Son; Wang Cheng-Yi |
| 臺大學術典藏 |
2020-02-26T09:15:54Z |
Estimation of ultrasound transducer and tissue parameters with artificial neural network
|
Win-Li Lin; Chen Y.-Y.; Shieh M.-J.; Yen J.-Y.; Chen C.-H. |
| 臺大學術典藏 |
2020-02-26T09:15:54Z |
Control of intensity field for ultrasound hyperthermia
|
Yen J.-Y.;Shieh M.-J.;Jin K.-W.;Chen Y.-Y.;Win-Li Lin; Yen J.-Y.; Shieh M.-J.; Jin K.-W.; Chen Y.-Y.; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:15:54Z |
Modeling of ultrasound temperature distribution with artificial neural network
|
Chen Y.-Y.;Shieh M.-J.;Yen J.-Y.;Chen C.-H.;Win-Li Lin; Chen Y.-Y.; Shieh M.-J.; Yen J.-Y.; Chen C.-H.; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:15:53Z |
SAR and temperature distributions of cylindrical ultrasound transducers for intracavitary hyperthermia
|
Liang Tzu-Chen; Win-Li Lin; Fan Wen-Chang; Yen Jia-Yush; Chen Yung-Yaw |
| 臺大學術典藏 |
2020-02-26T09:15:53Z |
Heating patterns of cylindrical ultrasound transducers for breast tumors
|
Ju Kuen-Cheng; Chen Yung-Yaw; Yen Jia-Yush; Cheng Kung-Shan; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:15:53Z |
A combination of neural network and fuzzy logic algorithms for adaptive control of arterial blood pressure
|
Chen C.-T.; Win-Li Lin; Kuo T.-S.; Chen P.-Q. |
| 臺大學術典藏 |
2020-02-26T09:07:57Z |
Optimal configuration of multiple-focused ultrasound transducers for external hyperthermia
|
Win-Li Lin;Chen Y.-Y.;Lin S.-Y.;Yen J.-Y.;Shieh M.-J.;Kuo T.-S.; Win-Li Lin; Chen Y.-Y.; Lin S.-Y.; Yen J.-Y.; Shieh M.-J.; Kuo T.-S. |
| 臺大學術典藏 |
2020-02-26T09:07:57Z |
Self-tuning fuzzy logic control for ultrasound hyperthermia with reference temperature based on objective functions
|
Chen Y.-Y.;Win-Li Lin;Liou H.-L.;Yen J.-Y.;Shieh M.-J.; Chen Y.-Y.; Win-Li Lin; Liou H.-L.; Yen J.-Y.; Shieh M.-J. |
| 臺大學術典藏 |
2020-02-26T09:07:57Z |
Fast numerical scheme of computing acoustic pressure fields for planar circular ultrasound transducers
|
Liauh C.-T.;Win-Li Lin; Liauh C.-T.; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:07:57Z |
Relationship between acoustic aperture size and tumor conditions for external ultrasound hyperthermia
|
Win-Li Lin;Yen J.-Y.;Chen Y.-Y.;Jin K.-W.;Shieh M.-J.; Win-Li Lin; Yen J.-Y.; Chen Y.-Y.; Jin K.-W.; Shieh M.-J. |
| 臺大學術典藏 |
2020-02-26T09:07:57Z |
Doppler angle and flow velocity estimations using the classic and transverse doppler effects
|
Lee B.-R.;Chiang H.K.;Kuo C.-D.;Win-Li Lin;Lee S.-K.; Lee B.-R.; Chiang H.K.; Kuo C.-D.; Win-Li Lin; Lee S.-K. |
| 臺大學術典藏 |
2020-02-26T09:07:56Z |
Temperature distributions of bone tumor therapy using scanned focused ultrasound system
|
Lu Bing-Yuh;Win-Li Lin;Yang Rong-Sen;Chen Yung-Yaw;Wang Cheng-Yi;Kuo Te-Son; Lu Bing-Yuh; Win-Li Lin; Yang Rong-Sen; Chen Yung-Yaw; Wang Cheng-Yi; Kuo Te-Son |
| 臺大學術典藏 |
2020-02-26T09:07:56Z |
From the editor
|
Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:07:56Z |
Spectral analysis for ultrasonic scatterer size estimation
|
Yang F.-J.;Tsao J.;Win-Li Lin;Shieh M.-J.; Yang F.-J.; Tsao J.; Win-Li Lin; Shieh M.-J. |
| 臺大學術典藏 |
2020-02-26T09:01:14Z |
Treatable domain and optimal frequency for brain tumors during ultrasound hyperthermia
|
Win-Li Lin;Liauh C.-T.;Yen J.-Y.;Chen Y.-Y.;Shieh M.-J.; Win-Li Lin; Liauh C.-T.; Yen J.-Y.; Chen Y.-Y.; Shieh M.-J. |
| 臺大學術典藏 |
2020-02-26T09:01:13Z |
Optimization of power deposition and a heating strategy for external ultrasound thermal therapy
|
Win-Li Lin;Liang T.-C.;Yen J.-Y.;Liu H.-L.;Chen Y.-Y.; Win-Li Lin; Liang T.-C.; Yen J.-Y.; Liu H.-L.; Chen Y.-Y. |
| 臺大學術典藏 |
2020-02-26T09:01:13Z |
Theoretical study of convergent ultrasound hyperthermia for treating bone tumors
|
Lu B.-Y.;Yang R.-S.;Win-Li Lin;Cheng K.-S.;Wang C.-Y.;Kuo T.-S.; Lu B.-Y.; Yang R.-S.; Win-Li Lin; Cheng K.-S.; Wang C.-Y.; Kuo T.-S. |
| 臺大學術典藏 |
2020-02-26T09:01:13Z |
A theoretical study of cylindrical ultrasound transducers for intracavitary hyperthermia
|
Win-Li Lin;Fan W.-C.;Yen J.-Y.;Chen Y.-Y.;Shieh M.-J.; Win-Li Lin; Fan W.-C.; Yen J.-Y.; Chen Y.-Y.; Shieh M.-J. |
| 臺大學術典藏 |
2020-02-26T09:01:13Z |
An investigation of power deposition patterns for scanned ultrasound arrays
|
Win-Li Lin;Chen Y.-Y.;Ju K.-C.;Yen J.-Y.;Shieh M.-J.; Win-Li Lin; Chen Y.-Y.; Ju K.-C.; Yen J.-Y.; Shieh M.-J. |
| 臺大學術典藏 |
2020-02-26T09:01:13Z |
Theoretical study of temperature elevation at muscle/bone interface during ultrasound hyperthermia
|
Win-Li Lin; Liauh C.-T.; Chen Y.-Y.; Liu H.-C.; Shieh M.-J.; Win-Li Lin;Liauh C.-T.;Chen Y.-Y.;Liu H.-C.;Shieh M.-J. |
| 臺大學術典藏 |
2020-02-26T09:01:12Z |
Treatment time reduction for large thermal lesions by using a multiple 1D ultrasound phased array system
|
Liu H.-L.;Chen Y.-Y.;Yen J.-Y.;Win-Li Lin; Liu H.-L.; Chen Y.-Y.; Yen J.-Y.; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:01:12Z |
One-dimensional phased array with mechanical motion for conformal ultrasound hyperthermia
|
Ju K.-C.;Chen Y.-Y.;Win-Li Lin;Kuo T.-S.; Ju K.-C.; Chen Y.-Y.; Win-Li Lin; Kuo T.-S. |
| 臺大學術典藏 |
2020-02-26T09:01:12Z |
Effect of effective tissue conductivity on thermal dose distributions of living tissue with directional blood flow during thermal therapy
|
Shih T.-C.;Kou H.-S.;Win-Li Lin; Shih T.-C.; Kou H.-S.; Win-Li Lin |
| 臺大學術典藏 |
2020-02-26T09:01:12Z |
Conformal heating using scanned 1-D phased array for external ultrasound hyperthermia
|
Ju K.-C.;Chen Y.-Y.;Win-Li Lin;Kuo T.-S.; Ju K.-C.; Chen Y.-Y.; Win-Li Lin; Kuo T.-S. |
| 臺大學術典藏 |
2020-02-26T09:01:12Z |
Interrelationship between control parameters and tumor/bone conditions for external ultrasound hyperthermia
|
Win-Li Lin; Chen Y.-Y.; Yen J.-Y.; Liauh C.-T.; Liauh C.-T.;Win-Li Lin;Chen Y.-Y.;Yen J.-Y. |
| 臺大學術典藏 |
2020-02-26T09:01:11Z |
Research and development of ultrasound toothbrush with mechanical vibration
|
Kuo T.-S.; Win-Li Lin; Wang T.-C.;Lu B.-Y.;Chen Y.-Y.;Win-Li Lin;Kuo T.-S.; Wang T.-C.; Lu B.-Y.; Chen Y.-Y. |
| 臺大學術典藏 |
2020-02-26T09:01:11Z |
Pilot point temperature regulation for thermal lesion control during ultrasound thermal therapy
|
Liu H.-L.;Chen Y.-Y.;Yen J.-Y.;Win-Li Lin; Liu H.-L.; Chen Y.-Y.; Yen J.-Y.; Win-Li Lin |