Abstract:
Magnetic nanoparticles are applicable in imaging, diagnosis, therapy, and biomaterial separation. The magnetic nanoparticles are represented as (FewGdx)Zy, wherein w is from 99.9% to 97.5%, x is from 0.1% to 2.5%, Z is an element of the group VIa, and v, y are positive numbers.
Abstract translation:磁性纳米颗粒适用于成像,诊断,治疗和生物材料分离。 磁性纳米颗粒表示为(Fe x Gd x Z z)Z y y,其中w为99.9%至97.5%,x为0.1 %至2.5%,Z为VIa族的元素,v,y为正数。
Abstract:
The invention is related to a noninvasive pulse measurement system with constant pressure for extremities of a human, and the constant pressure is modulated among 30 to 120 mmHg. There are an auto-mode and a manual mode for measurement algorithm. The auto-mode completes measurement and recording processes automatically during 2 minutes and pressurizes the system from low pressure (30 mmHg) to high pressure (120 mmHg) with 10 mmHg gradient every 5 seconds while the manual mode completes measurement and recording processes during a long time under a user's setting. Moreover, by a post-treatment of the system, the system is able to obtain continuous pulse signals, continuous pulse differential signals, and continuous pulse integral signals that are useful for Chinese medicine to evaluate and monitor the user's cardio-physiology and circulatory system.
Abstract:
The present invention relates to offer an apparatus and a method for an integral electrochemical biosensor combining designs of blood sampling, continuous and multiply testing, multi-channel detecting and adjustable working voltage; furthermore several physiologic parameters can be obtained simultaneously in an identical testing. The invention provides convenience for users and improves the practicability. Said integral electrochemical biosensor comprises: at least a sampling device configured to supply a sample carrying room, which is in vacuum or a state of relative negative pressure by an applied force with a pressure difference to make inactive humor at a relative high pressure injecting into said sample carrying room; a plurality of electrode sets comprising a compared electrode, an assisting electrode and an operating electrode, on which chemical and/or physical reactions between said inactive humor and chemicals bring out after said inactive humor injecting into said sample carrying room; a multi-channel electrochemical detector configured to provide several choices of operating voltage for said operating electrodes; a logic and data device configured to grab and calculate data of result from said physical or/and chemical reactions; a signal displaying device configured to explicitly show physiological parameter values of said inactive humor and corresponding concentration of said physiological parameters.
Abstract:
A magnetic nanoparticle applicable in imaging, diagnosis, therapy and biomaterial separation. The magnetic nanoparticle is characterized as comprising at least an inner-transition element, represented as FexMavZy, wherein Ma is an inner-transition element, Z is an element of the group VIa, x is greater or equal to 0, and both v and y are positive numbers. The magnetic nanoparticle may further comprise a shell to form a core-shell structure, wherein the shell is an inner-transition element Mb or the compound thereof.
Abstract:
An electrode pad set comprises a left electrode pad, a right electrode pad, a first indication figure on the left electrode pad, a second indication figure on the right electrode pad. The left electrode pad and the right electrode pad respectively have a first warning sign with a first shape and a second warning sign with a second shape corresponding to the first shape. The perimeter of the first warning sign has a first coating with a first color. The perimeter of the second warning sign has a second coating with a second color. A left electrode pad symbol of the first indication figure has a color identical to the first color. A right electrode pad symbol of the second indication figure has a color identical to the second color. The present invention uses colors, shapes and indication figures to promote the success rate of attaching the electrode pads.
Abstract:
An image-based PWV measurement device and method are provided. The measurement device comprises at least two light emitting units respectively projecting light beams to at least two detected regions on body surface; at least two light transmitting units respectively receiving and transmitting light signals measured at the different detected regions; an image sensing unit converting the light signals measured at the detected regions into image signals; a length measurement unit used to measure the distance between the detected regions; and an image analysis unit analyzing the image signals to obtain PPG signals for the detected regions. According to the PPG signals, the image analysis unit calculates the physiological parameters, including the perfusion index, respiration rate, pulse rate, stiffness index, reflection index, and PWV between the detected regions, which is derived according to the distance and the pulse transit time from the PPG signals of the two detected regions.
Abstract:
A device for measuring an electrocardiogram with a tapeless format and its method is provided with electrodes having a flat shape that are contacted by root portions between two fingers of a user's hands or by two fingers of each of the user's hands. The electrocardiogram can be measured directly by that contact, without adding any conductive liquid or gel material.
Abstract:
An apparatus and method for pulse detection based on blood pressure measuring stage is disclosed. Both monitoring of blood pressure and blood vessel pulse are integrated and applied to an apparatus. With the components of the blood pressure monitor, such as an inflatable cuff an air pump and a variable flow valve, with a unique sequential pressure control of reduction and regulation of pressure, not only can blood pressure parameters but also pulse signals under various pressures be measured to provide a complete analysis of blood artery/vessel conditions.
Abstract:
Magnetic nanoparticles are applicable in imaging, diagnosis, therapy, and biomaterial separation. The magnetic nanoparticles comprise a core represented as FexMavZy and a shell of an inner-transition element Mb or the compound thereof, wherein Ma is an inner-transition element, Z is an element of the group Vla, x is greater or equal to 0, and v, y are positive numbers. The surface of the shell is optionally modified by liposome, polymer, aliphatic compound, aromatic compound or combinations thereof.
Abstract translation:磁性纳米颗粒适用于成像,诊断,治疗和生物材料分离。 磁性纳米颗粒包含一个表示为Fe x Si x Z y的核, 过渡元素M b或其化合物,其中M a是内部过渡元素,Z是基团Vla的元素,x大于或等于0, v,y为正数。 壳的表面任选地被脂质体,聚合物,脂族化合物,芳族化合物或其组合改性。
Abstract:
A portable bio parameter detection/display assembly includes an optical sensor for engagement with an operator to acquire a pulse signal, an A/D converter converting the pulse signal into a digital format, a microprocessor for receiving the digital format pulse signal and proceeding with calculation of a pulse rate and at least one heart rate variability parameter, a display to display and a power module to provide necessary electricity to the assembly.