US2024285045A1PendingUtilityA1

Terahertz healthy rosary structure

Assignee: SHEN HSIU HUIPriority: Oct 18, 2019Filed: May 7, 2024Published: Aug 29, 2024
Est. expiryOct 18, 2039(~13.2 yrs left)· nominal 20-yr term from priority
Inventors:Hsiu-Hui Shen
A44C 23/00
33
PatentIndex Score
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Claims

Abstract

A terahertz healthy rosary structure includes a plurality of serial-connected rosary bead that include a silicon material and emit a terahertz wave, a through hole, a rope-based fixing structure, and a first rosary bead that includes a silicon material and emits a terahertz wave. The through hole is formed in the serial-connected rosary beads. The first rosary bead is arranged on the rope-based fixing structure and two sides of the first rosary bead are each connected with a respective one of the serial-connected rosary beads, so that the rope-based fixing structure connects each of the serial-connected rosary beads and the first rosary bead in series to form a rosary bead structure having a predetermined shape. The serial-connected rosary beads and the first rosary bead emit a terahertz wave that has a frequency of 0.1-10 THz and a wavelength of 0.03-3 mm to be absorbed by the human body.

Claims

exact text as granted — not AI-modified
I claim: 
     
         1 . A terahertz healthy rosary structure, comprising:
 a plurality of serial-connected rosary beads that comprise a silicon material and emit a terahertz wave, and is formed with at least one through hole;   a rope-based fixing structure that extends through the through hole to have the serial-connected rosary beads arranged tightly close to each other; and   a first rosary bead that comprises a silicon material and emits a terahertz wave, wherein the first rosary bead is arranged on the rope-based fixing structure, and two sides of the first rosary bead are each connected with a respective one of the serial-connected rosary beads, wherein when a human body absorbs the terahertz wave, resonance is induced, so as to improve human body functional system to promote blood circulation, enhance metabolism, and regulate autonomic nerves, and wherein the terahertz wave has a frequency of 0.1 THz to 10 THz and a wavelength of 0.03 mm to 3 mm.   
     
     
         2 . The terahertz healthy rosary structure according to  claim 1 , wherein a plurality of segmenting rosary beads are arranged on the rope-based fixing structure, and two sides of each of the segmenting rosary beads are connected with the serial-connected rosary beads. 
     
     
         3 . The terahertz healthy rosary structure according to  claim 2 , wherein the plurality of serial-connected rosary beads comprise one hundred and eight serial-connected rosary beads, and the plurality of segmenting rosary beads comprise four segmenting rosary beads. 
     
     
         4 . The terahertz healthy rosary structure according to  claim 1 , wherein at least one first extended bead assembly is arranged at one side of the first rosary bead, wherein the at least one first extended bead assembly is arranged on the rope-based fixing structure, and the at least one first extended bead assembly comprises a silicon material and emits a terahertz wave. 
     
     
         5 . The terahertz healthy rosary structure according to  claim 4 , wherein a first connection rosary bead is connected between the first rosary bead and the first extended bead assembly, and the first connection rosary bead is arranged on the rope-based fixing structure. 
     
     
         6 . The terahertz healthy rosary structure according to  claim 4 , wherein the at least one first extended bead assembly comprises a plurality of first balls, a plurality of first extended rosary beads, a first join rosary bead, a plurality of second balls, and a first hanging rosary bead, wherein each of the first balls, each of the first extended rosary beads, the first join rosary bead, each of the second balls, and the first hanging rosary bead are interconnected with each other, a size of the first hanging rosary bead being greater than a size of the first rosary bead, the size of the first rosary bead being greater than a size of the serial-connected rosary beads, the size of the serial-connected rosary beads being greater than a size of the first extended rosary beads, the size of the first extended rosary beads being greater than a size of the first balls and a size of the second balls, the at least one first extended bead assembly comprising three first extended bead assemblies. 
     
     
         7 . The terahertz healthy rosary structure according to  claim 1 , wherein a second rosary bead is arranged on the rope-based fixing structure, and two sides of the second rosary bead are each connected with a respective one of the serial-connected rosary beads, the second rosary bead comprising a silicon material and emitting a terahertz wave. 
     
     
         8 . The terahertz healthy rosary structure according to  claim 7 , wherein one side of the second rosary bead is connected with a plurality of second extended rosary beads, the second extended rosary beads being connected with a second connection rosary bead, each of the second extended rosary beads and the second connection rosary bead being arranged on the rope-based fixing structure, the second extended rosary beads comprising a silicon material and emitting a terahertz wave. 
     
     
         9 . The terahertz healthy rosary structure according to  claim 8 , wherein one side of the second connection rosary bead is connected with at least one second extended bead assembly, the second extended bead assembly being arranged on the rope-based fixing structure, each of the at least one second extended bead assembly comprising a silicon material and emitting a terahertz wave. 
     
     
         10 . The terahertz healthy rosary structure according to  claim 8 , wherein the at least one second extended bead assembly comprises a plurality of third extended rosary beads, a second join rosary bead, a plurality of third balls, and a second hanging rosary bead, wherein each of the third extended rosary beads, the second join rosary bead, each of the third balls, and the second hanging rosary bead are interconnected with each other, a size of the second hanging rosary bead being greater than a size of the first rosary bead, the size of the first rosary bead being equal to a size of the second rosary bead, the size of the second rosary bead being greater than a size of the serial-connected rosary beads, the size of the serial-connected rosary beads being greater than a size of the third extended rosary beads, the size of the third extended rosary beads being greater than a size of the third balls, the at least one second extended bead assembly comprising two second extended bead assemblies. 
     
     
         11 . The terahertz healthy rosary structure according to  claim 1 , wherein a plurality of decorative pieces are arranged on the rope-based fixing structure. 
     
     
         12 . A terahertz healthy rosary structure, comprising:
 a plurality of serial-connected rosary beads that comprise a silicon material and emit a terahertz wave, and is formed with at least one through hole;   a rope-based fixing structure that extends through the through hole to have the serial-connected rosary beads arranged tightly close to each other; and   a first rosary bead that comprises a silicon material and emits a terahertz wave, wherein the first rosary bead is arranged on the rope-based fixing structure, and two sides of the first rosary bead are each connected with a respective one of the serial-connected rosary beads, so that the rope-based fixing structure connects, in series, each of the serial-connected rosary beads and the first rosary bead to form a rosary bead structure having a predetermined shape adapted for contact engagement with a portion of a human body to allow the human body to absorb the terahertz wave to induce resonance, so as to improve human body functional system to promote blood circulation, enhance metabolism, and regulate autonomic nerves, and wherein the terahertz wave has a frequency of 0.1 THz to 10 THz and a wavelength of 0.03 mm to 3 mm.   
     
     
         13 . The terahertz healthy rosary structure according to  claim 12 , wherein a plurality of segmenting rosary beads are arranged on the rope-based fixing structure, and two sides of each of the segmenting rosary beads are connected with the serial-connected rosary beads. 
     
     
         14 . The terahertz healthy rosary structure according to  claim 13 , wherein the plurality of serial-connected rosary beads comprise one hundred and eight serial-connected rosary beads, and the plurality of segmenting rosary beads comprise four segmenting rosary beads. 
     
     
         15 . The terahertz healthy rosary structure according to  claim 12 , wherein at least one first extended bead assembly is arranged at one side of the first rosary bead, wherein the at least one first extended bead assembly is arranged on the rope-based fixing structure, and the at least one first extended bead assembly comprises a silicon material and emits a terahertz wave. 
     
     
         16 . The terahertz healthy rosary structure according to  claim 15 , wherein a first connection rosary bead is connected between the first rosary bead and the first extended bead assembly, and the first connection rosary bead is arranged on the rope-based fixing structure. 
     
     
         17 . The terahertz healthy rosary structure according to  claim 15 , wherein the at least one first extended bead assembly comprises a plurality of first balls, a plurality of first extended rosary beads, a first join rosary bead, a plurality of second balls, and a first hanging rosary bead, wherein each of the first balls, each of the first extended rosary beads, the first join rosary bead, each of the second balls, and the first hanging rosary bead are interconnected with each other, a size of the first hanging rosary bead being greater than a size of the first rosary bead, the size of the first rosary bead being greater than a size of the serial-connected rosary beads, the size of the serial-connected rosary beads being greater than a size of the first extended rosary beads, the size of the first extended rosary beads being greater than a size of the first balls and a size of the second balls, the at least one first extended bead assembly comprising three first extended bead assemblies. 
     
     
         18 . The terahertz healthy rosary structure according to  claim 12 , wherein a second rosary bead is arranged on the rope-based fixing structure, and two sides of the second rosary bead are each connected with a respective one of the serial-connected rosary beads, the second rosary bead comprising a silicon material and emitting a terahertz wave. 
     
     
         19 . The terahertz healthy rosary structure according to  claim 18 , wherein one side of the second rosary bead is connected with a plurality of second extended rosary beads, the second extended rosary beads being connected with a second connection rosary bead, each of the second extended rosary beads and the second connection rosary bead being arranged on the rope-based fixing structure, the second extended rosary beads comprising a silicon material and emitting a terahertz wave. 
     
     
         20 . The terahertz healthy rosary structure according to  claim 19 , wherein one side of the second connection rosary bead is connected with at least one second extended bead assembly, the second extended bead assembly being arranged on the rope-based fixing structure, each of the at least one second extended bead assembly comprising a silicon material and emitting a terahertz wave. 
     
     
         21 . The terahertz healthy rosary structure according to  claim 19 , wherein the at least one second extended bead assembly comprises a plurality of third extended rosary beads, a second join rosary bead, a plurality of third balls, and a second hanging rosary bead, wherein each of the third extended rosary beads, the second join rosary bead, each of the third balls, and the second hanging rosary bead are interconnected with each other, a size of the second hanging rosary bead being greater than a size of the first rosary bead, the size of the first rosary bead being equal to a size of the second rosary bead, the size of the second rosary bead being greater than a size of the serial-connected rosary beads, the size of the serial-connected rosary beads being greater than a size of the third extended rosary beads, the size of the third extended rosary beads being greater than a size of the third balls, the at least one second extended bead assembly comprising two second extended bead assemblies. 
     
     
         22 . The terahertz healthy rosary structure according to  claim 12 , wherein the predetermined shape comprises one of a mattress, a pillow mat, a chest band, a waist chain, a necklace, and a wrist chain. 
     
     
         23 . The terahertz healthy rosary structure according to  claim 22 , wherein the predetermined shape of the rosary bead structure comprises one of the waist chain, the necklace, and the wrist chain, wherein the rope-based fixing structure comprises a break-to-open portion, and the rope-based fixing structure is provided, at a location close to the break-to-open portion, with a connecting assembly, so that the rope-based fixing structure is connected or disconnected by means of the connecting assembly. 
     
     
         24 . The terahertz healthy rosary structure according to  claim 23 , wherein the connecting assembly comprises one of a hook-and-loop fastener assembly and a magnetic assembly. 
     
     
         25 . The terahertz healthy rosary structure according to  claim 12 , wherein the predetermined shape comprises one of a mattress, a pillow mat, and a chest band, and the rope-based fixing structure comprises a plurality of first ropes and a plurality of second ropes, the first ropes and the second ropes being arranged to extend through the through holes to successively connect the serial-connected rosary beads in series, so as to have the serial-connected rosary beads arranged tightly close to each other to form the predetermined shape of the rosary bead structure. 
     
     
         26 . The terahertz healthy rosary structure according to  claim 12 , wherein a plurality of decorative pieces are arranged on the rope-based fixing structure.

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