IP Library Granted Patent US 12,232,800
Granted Patent B2
US 12,232,800 · App. 18/679,893 · Granted Feb 25, 2025

Electrically based medical treatment device and method

Inventor: Jongju Na (Songpa-Gu, KR)
Assignee: Serendia, LLC
A61B18/1477A61H39/002A61H39/086A61N1/0502A61N1/06A61N1/328A61B2018/00452A61B2018/0047A61B2018/00589A61B2018/00625A61B2018/0072A61B2018/00726A61B2018/00732A61B2018/00738A61B2018/00767A61B2018/126A61B2018/143A61B2018/1475
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,232,800
App. No.
18/679,893
Granted
Feb 25, 2025
Kind
B2
Abstract

Embodiments of medical treatment including skin treatment using electrical energy, especially with the primary purpose for skin treatment for aesthetics are described generally herein. Other embodiments may be described and claimed.

Claims (29)

1. A patient body treatment apparatus, comprising:

a plurality of needles, wherein the needles are bipolar and are configured to be insertable into skin to be treated;

a radio frequency (RF) generator configured to provide an Alternating Current (AC) RF signal to the plurality of needles,

wherein application of the RF signal to the plurality of needles is configured to raise temperature, and

wherein the plurality of needles is configured to treat the skin of the patient by raising temperature, and wherein the temperature rise is concentrated in an area around each needle and not between needles; and

wherein in at least one mode of operation, the body treatment apparatus is configured to achieve coagulation of body tissue and not vaporization or carbonization of body tissue, and

wherein the AC RF signal has a frequency, wherein the plurality of needles are arranged in a plurality of rows, and adjacent needles in each row have opposite polarities, wherein the polarities of the needles change at the frequency of the AC RF signal.

2. The apparatus of claim 1 , wherein the plurality of needles are insulated.

3. The apparatus of claim 1 , further comprising at least one touch screen.

4. The apparatus of claim 3 , wherein the at least one touch screen further includes control of the AC RF signal and of a depth that the needles are inserted into the skin.

5. The apparatus of claim 4 , wherein control of the AC RF signal comprises control of the energy level of the AC RF signal.

6. The apparatus of claim 5 , wherein control of the AC RF signal comprises control of the time that the AC RF signal is applied.

7. The apparatus of claim 6 , wherein control of the AC RF signal comprises control of the number of times that the AC RF signal is applied.

8. The apparatus of claim 1 , further comprising an audio generation device.

9. The apparatus of claim 1 , wherein the AC RF signal has a frequency of 1 to 4 Hz.

10. The apparatus of claim 1 , wherein the plurality of needles comprises at least 9 needles.

11. A method of treating a patient body, comprising:

inserting a plurality of needles into skin to be treated;

providing an Alternating Current (AC) radio frequency (RF) signal to the plurality of needles,

wherein each of the plurality of needles alternates in polarity, and

wherein the AC RF signal provided to the plurality of needles raises temperature, and wherein the temperature rise is concentrated in an area around each needle and not between the needles, and

wherein providing the AC RF signal applies energy primarily to achieve coagulation of body tissue and not vaporization or carbonization of body tissue, and

wherein the AC RF signal has a frequency, wherein the plurality of needles are arranged in a plurality of rows, and adjacent needles in each row have opposite polarities, wherein the polarities of the needles change at the frequency of the RF signal.

12. The method of claim 11 , wherein the temperature rise is concentrated around the tip of each needle.

13. The method of claim 11 , further comprising controlling the AC RF signal and a depth that the needles are inserted into the skin.

14. The method of claim 13 , wherein the controlling of the AC RF signal comprises controlling the energy level of the AC RF signal.

15. The method of claim 14 , wherein the controlling of the AC RF signal comprises controlling the time that the AC RF signal is applied.

16. The method of claim 15 , wherein the controlling of the AC RF signal comprises controlling the cycles of application of the AC RF signal.

17. The method of claim 16 , wherein the AC RF signal has a frequency of 1 to 4 Hz.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2024
From: NA, JONGJU
To: SERENDIA, LLC
Reel/Frame 067977/0420 →
Priority Claims (2)
KR 10-2011-0057691 · Jun 14, 2011 · national
KR 10-2011-0057692 · Jun 14, 2011 · national
Continuity (6)
Continuation 17686405 · Mar 3, 2022
Continuation 17061523 · Oct 1, 2020
Continuation 16111616 · Aug 24, 2018
Continuation 15202511 · Jul 5, 2016
Continuation 14006930
Related Publication 20240315762A1 · Sep 26, 2024
References Cited (270)
US 6277116B1 · Utely et al. · 2001 [cited by applicant]
US 6766202B2 · Underwood et al. · 2004 [cited by applicant]
US 6770071B2 · Woloszko et al. · 2004 [cited by applicant]
US 6890319B1 · Crocker · 2005 [cited by applicant]
US 7824394B2 · Manstein · 2010 [cited by applicant]
US 8012153B2 · Woloszko et al. · 2011 [cited by applicant]
US 8142426B2 · Knopp et al. · 2012 [cited by applicant]
US 8540705B2 · Mehta · 2013 [cited by applicant]
US 8608737B2 · Mehta et al. · 2013 [cited by applicant]
US 8900231B2 · Kreindel · 2014 [cited by applicant]
US 9095358B2 · Woloszko et al. · 2015 [cited by applicant]
US 9510899B2 · Manstein · 2016 [cited by applicant]
US 10799285B2 · Mulholland · 2020 [cited by applicant]
US 10869812B2 · Na · 2020 [cited by applicant]
US 20020120260A1 · Morris et al. · 2002 [cited by applicant]
US 20020120261A1 · Morris et al. · 2002 [cited by applicant]
US 20030130711A1 · Pearson et al. · 2003 [cited by applicant]
US 20030195593A1 · Ingle · 2003 [cited by examiner]
US 20040058882A1 · Eriksson et al. · 2004 [cited by applicant]
US 20050222565A1 · Manstein · 2005 [cited by examiner]
US 20060036210A1 · Zhang et al. · 2006 [cited by applicant]
US 20070208340A1 · Ganz et al. · 2007 [cited by applicant]
US 20080082090A1 · Manstein · 2008 [cited by applicant]
US 20080091182A1 · Mehta · 2008 [cited by applicant]
US 20090093749A1 · Shalev · 2009 [cited by examiner]
US 20100204695A1 · Mehta · 2010 [cited by examiner]
US 20110288543A1 · Cheng et al. · 2011 [cited by applicant]
KR 100719395B1 · 2007 [cited by applicant]
KR 100852500B1 · 2008 [cited by applicant]
KR 200441552Y1 · 2008 [cited by applicant]
WO WO2007064718A2 · 2007 [cited by applicant]
WO WO2008005477A2 · 2008 [cited by applicant]
WO WO2010016848A1 · 2010 [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, Declaration of Vincent A. Thomas in Support of Patent Owner's Preliminary Response ( [cited by applicant]
IPR2024-00384, Patent Owner's Preliminary Response, ( [cited by applicant]
IPR2024-00384, Patent Owner Serendia LLC's Motion to Seal, ( [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, Declaration of Peter Crosby in Support Of Patent Owner's Preliminary Response, ( [cited by applicant]
IPR2024-00384, Declaration of Vince Thomas in Support of Patent Owner's Preliminary Response, ( [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00384, [cited by applicant]
IPR2024-00386, Patent Owner's Preliminary Response ( [cited by applicant]
IPR2024-00386, Patent Owner Motion to Seal ( [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, Declaration of Daniel W. Van Der Weide in Support of Patent Owner's Preliminary Response ( [cited by applicant]
IPR2024-00386, Declaration of David J. Goldberg in Support of Patent Owner's Preliminary Response ( [cited by applicant]
IPR2024-00386, Na, Jongju et al., “Electromagnetic Initiation and Propagation of Bipolar Radiofrequency Tissue Reactions via Invasive Non-Insulated Microneedle Electrodes”, published on Nov. 13, 2015, IPR2024-00386, Exh… [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
IPR2024-00386, [cited by applicant]
510k Summary—K082391; Primaeva Medical Inc., RX-0486, 2009, 5 Pages. [cited by applicant]
Berube et al., “A Predictive Model of Minimally Invasive Bipolar Fractional Radiofrequency Skin Treatment”, Lasers in Surgery and Medicine 41:473-478 (2009), RX-1567, 6 Pages. [cited by applicant]
Berube et al., “A Predictive Model of Minimally Invasive Bipolar Fractional Radiofrequency Skin Treatment”, Lasers in Surgery and Medicine 41:473-478 (2009), CX-0752, 6 Pages. [cited by applicant]
Alexiades-Armenakas et al., “Blinded, Randomized, Quantitative Grading Comparison of Minimally Invasive, Fractional Radiofrequency and Surgical Face-lift to Treat Skin Laxity”, Arch Dermatol. 2010; vol. 146(4):396-405, … [cited by applicant]
D & PS, Magazine for Dermatologists & Plastic Surgeons, Nexgen®, 2010, CX-2622, 13 Pages. [cited by applicant]
Primaeva Medical Instructions, Primaeva Medical Inc., Miratone™ System, Exhibit# Berube 9, Jul. 26, 2023, 27 Pages. [cited by applicant]
Primaeva Medical User Manual, Exhibit# Berube 10, CX-0946, Jul. 26, 2023, 39 Pages. [cited by applicant]
Scarlett Website, CX-2612, Jan. 10, 2011, 16 Pages. [cited by applicant]
Shim Dku Thesis, “How Fractional micro-needle RF Works and How it Affects Skin Tissue”, Department of Medical Laser, 2010, 57 Pages. [cited by applicant]
Evidentiary Hearing with excerpts dated Dec. 11, 2023; vol. 5, Case 337-TA-1356, 161 Pages. [cited by applicant]
Evidentiary Hearing with excerpts dated Dec. 12, 2023; vol. 6, Case 337-TA-1356, 144 Pages. [cited by applicant]
Evidentiary Hearing with excerpts dated Nov. 1, 2023; vol. 1, Case 337-TA-1356, 144 Pages. [cited by applicant]
Evidentiary Hearing with excerpts dated Nov. 2, 2023; vol. 2, Case 337-TA-1356, 114 Pages. [cited by applicant]
Evidentiary Hearing with excerpts dated Nov. 6, 2023; vol. 3, Case 337-TA-1356, 76 Pages. [cited by applicant]
Evidentiary Hearing with excerpts dated Nov. 7, 2023; vol. 4, Case 337-TA-1356, 271 Pages. [cited by applicant]
IPR2024-00463, Patent Owner's Preliminary Response ( [cited by applicant]
IPR2024-00463, Patent Owner Motion To Seal ( [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, Declaration of Peter Crosby in Support Of Patent Owner's Preliminary Response, ( [cited by applicant]
IPR2024-00463, Declaration of Vince Thomas in Support Of Patent Owner's Preliminary Response, ( [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00463, [cited by applicant]
IPR2024-00383, Patent Owner's Preliminary Response ( [cited by applicant]
IPR2024-00383, Patent Owner Motion to Seal ( [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, Declaration of Peter Crosby in Support Of Patent Owner's Preliminary Response, ( [cited by applicant]
IPR2024-00383, Declaration of Vince Thomas in Support Of Patent Owner's Preliminary Response, ( [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]
IPR2024-00383, [cited by applicant]